A Hydrodynamic Bioreactor for High-Yield Production of Extracellular Vesicles from Stem Cell Spheroids with Defined Cargo Profiling. Lenoir S, Thouvenot E, Gropplero G, Dec L, Loew D, Théry C, Perez JE, Wilhelm C. Advanced Science13, e10607 (2025)
Magnetite nanoparticle photothermal therapy in a pancreatic Tumor-on-Chip: A Dual-Action approach targeting Cancer cells and their microenvironment. A Dubrova, C Cavaniol, A Van de Walle, P Mathieu, Z Fusilier, N Yaacoub, Y Lalatonne, S Descroix, C Wilhelm. ACS nano, 19, 19790 (2025)
Magnetic Bioprinting and Actuation of Stretchable Muscle Tissue. N Demri, L Morizur, S Dumas, G Gropplero, C Martinat, S Descroix, C Wilhelm. Advanced Healthcare Materials, 15, e03035 (2025)
A Label‐Free Machine Learning Prediction of Chemotherapy on Tumor Spheroids Using a Microfluidics Droplet Platform. C Parent, H Honari, T Tocci, F Simon, S Zaidi, A Jan, V Aubert, O Delattre, H Isambert, C Wilhelm*, J‐L Viovy. Small Science, 5, 2500173 (2025)
A polysaccharide-based hydrogel platform for tumor spheroid production and anticancer drug screening. E Lopez-Vince, T Simon-Yarza, C Wilhelm. Scientific Reports, 15, 4213 (2025)
Best-Practice Guidelines for Reporting the Photothermal Effects of Plasmonic Nanoheaters. M Henriksen-Lacey, C de la Encarnación, C Renero-Lecuna, C Cavaniol, C Wilhelm, M Quintanilla, D Jimenez de Aberasturi, LM Liz-Marzán. ACS nano, 19, 41923-41936 (2025)
Hybrid Polysaccharide/Magnetite Microgels for Drug‐Free Magnetically Targeted Photothermal Thrombolysis. P Sarfati, T de La Taille, R Aid, G Djavid, A Dos Santos, S Mohammed, B Amouroux, M Clément, C Wilhelm, Y Lalatonne, C Chauvierre. Advanced Healthcare Materials, e04603 (2025)
Tri‐Modal Anticancer Strategies with Doxorubicin‐Loaded Iron Oxide Nanoparticles Integrating Chemo and Magneto‐Photothermal Therapeutic Effects. R López‐Méndez, N Lafuente‐Gómez, E Céspedes, M Dhanjani, M París‐Ogáyar, FJ Terán, A Serrano, J Camarero, G Salas, C Wilhelm, A Somoza, A Espinosa. Advanced NanoBiomed Research, 2500098 (2025)
Tailoring the optoelectronic properties of MoOX nanoparticles: a novel microwave-assisted synthesis for near-infrared absorbing polyoxometallic clusters. D Truchan, AH Annušová, G Curé, M Mičušík, V Nádaždy, M Kotlár, GC Fadda, P Nádaždy, M Jergel, C Wilhelm, A Van de Walle, P Šiffalovič, Y Lalatonne. Discover Nano, 20, 1-23 (2025)
Shaping 3D minimal model tissues with mechanical constraints to orchestrate muscle differentiation. I Nagle, L van der Spek, P Gesenhues, T Savy, L Réa, A Richert, M Receveur, F Delort, S Batonnet-Pichon, C Wilhelm, N Luciani, M Reffay. Communications Biology, s42003-025-09252-9 (2025)
High-yield bioproduction of extracellular vesicles from stem cell spheroids via millifluidic vortex transport. Thouvenot E, Charnay L, Burshtein N, Guigner J-M, Dec L, Loew D, Silva AKA, Lindner A, Wilhelm C. Advanced Materials, 2412498 (2025)
Elucidating the Dynamics of Biodegradation and Biosynthesis of Magnetic Nanoparticles in Human Stem Cells. Curcio A, Curé G, Espinosa A, Menguy N, Galarreta‐Rodriguez I, Abou‐Hassan A, Piquet B, Motte L, Lalatonne Y, Wilhelm C, Van de Walle A. Small20, 2407034 (2024)
Biodegradation by Cancer Cells of Magnetite Nanoflowers with and without Encapsulation in PS-b-PAA Block Copolymer Micelles. at the nanoscale induces ferroptosis via nanoparticle degradation. Benassai E, Daffé N, Aygun E, Geeverding A, Saritas EU, Wilhelm C, Abou-Hassan A. ACS Applied Materials & Interfaces16, 34772-34782 (2024)
Vascularized tumor models for the evaluation of drug delivery systems: a paradigm shift. Lopez-Vince E, Wilhelm C, Simon-Yarza T. Drug Delivery and Translational Research14, 2216-2241 (2024)
Multiscale Thermal Analysis of Gold Nanostars in 3D Tumor Spheroids: Integrating Cellular‐Level Photothermal Effects and Nanothermometry via X‐Ray Spectroscopy. López‐Méndez R, Dubrova A, Reguera J, Magro R, Esteban F, Parente A, García M,Camarero J, Fonda E, Wilhelm C, Muñoz‐Noval A, Espinosa A. Advanced HealthCare Materials 7, 2403799 (2024)
Thermoresponsive gel embedding extracellular vesicles from adipose stromal cells improves the healing of colonic anastomoses following irradiation in rats. Alric H, Mathieu N, Sebbagh A, Peré G, Demarquay C, Cronemberger A, Berger A, Marcel B, Wilhelm C, Gazeau F, Mariani A, Karoui M, Clément O, Araujo-Filho I, Silva A, Rahmi G. Communications Biology 7, 1673 (2024)
PROM2 overexpression induces metastatic potential through epithelial‐to‐mesenchymal transition and ferroptosis resistance in human cancers. Paris J, Wilhelm C, Lebbé C, Elmallah M, Pamoukdjian F, Héraud A, Gapihan G, Van De Walle A, Tran VN, Hamdan D, Allayous C, Battistella M, Van Glabeke E, Lim KW, Leboeuf C, Roger S, Falgarone G, Phan AT, Bousquet G. Clinical and Translational Medicine 14, e1632 (2024)
Chemo–Phototherapeutic Effect of Polyoxometalate-Stabilized Gold Nanostars for Cancer Treatment. Henao R, Boujday S, Wilhelm C, Bouvet B, Tomane S, Christodoulou I, Sun D, Cure G, Ben Romdhane F, Miche A, Dolbecq A, Mialane P, Vallée A. ACS Applied Nanomaterials17, 21094–21103 (2024)
Studying the impact of geometrical and cellular cues on myogenesis with a skeletal muscle-on-chip. Nguyen M-L, Demri N, Lapin B, Di Federico F, Gropplero G, Cayrac F, Hennig K, Gomes ER, Wilhelm C, Roman W, Descroix S. Lab on Chip24, 4147-4160 (2024)
Finite element modeling of plasmonic resonances in photothermal gold nanoparticles embedded in cells. Ogáyar MP, López-Méndez R, Figueruelo-Campanero I, Muñoz T, Wilhelm C, Jaque Garcia D, Espinosa A, Serrano A. Nanoscale Advances6, 4635-4646 (2024)
High-throughput large scale microfluidic assembly of iron oxide nanoflowers@ PS-b-PAA polymeric micelles as multimodal nanoplatforms for photothermia and magnetic imaging. Benassai E, Hortelao AC, Aygun E, Alpman A, Wilhelm C, Saritas EU, Abou-Hassan A. Nanoscale Advances6, 126-137 (2024)
Photothermia at the nanoscale induces ferroptosis via nanoparticle degradation. Fromain A, Perez JE, Van de Walle A, Lalatonne Y, Wilhelm C. Nature Comm14, 4637 (2023)
Surface Tension and Neuronal Sorting in Magnetically Engineered Brain‐Like Tissue. Perez JE, Jan A, Villard C, Wilhelm C. Advanced Science 2302411 (2023)
Biomineralization of magnetic nanoparticles in stem cells. Fromain A, Van de Walle A, Curé G, Péchoux C, Serrano A, Lalatonne Y, Espinosa A, Wilhelm C. Nanoscale15, 10097-10109 (2023)
Simple droplet microfluidics platform for drug screening on cancer spheroids. Parent C, Zhou Y, Aubert V, Surdez D, Delattre O, Wilhelm C, Viovy J-L. Lab on a chip23, 5139-5150 (2023)
Emergence of magnetic nanoparticles in photothermal and ferroptotic therapies. Van de Walle A, Figuerola A, Espinosa A, Abou-Hassan A, Estrader M, Wilhelm C. Materials Horizons10, 4757-4775 (2023)
Design and evaluation of multi-core raspberry-like platinum nanoparticles for enhanced photothermal treatment. Guénin E, Fromain A, Serrano A, Gropplero G, Lalatonne Y, Espinosa A, Wilhelm C. Communication Materials4, 84 (2023)
Magnetic bioprinting of stem cell-based tissues. Van de Walle A, Perez JE, Wilhelm C. Bioprinting e00265 (2023)
X‐Ray Nanothermometry of Nanoparticles in Tumor‐Mimicking Tissues under Photothermia. López‐Méndez R, Reguera J, Fromain A, Abu Serea ES, Céspedes E, Teran FJ, Zheng F, Parente A, García MA, Fonda E, Camarero J, Wilhelm C, Muñoz‐Noval A, Espinosa A . Advanced Healthcare Materials 2301863 (2023)
Bridging the gap between tumor-on-chip and clinics: a systematic review of 15 years of studies. Bouquerel C, Dubrova A, Hofer I, Phan D, Bernheim M, Ladaigue S, Cavaniol C, Maddalo D, Cabel L, Mechta-Grigoriou F, Wilhelm C, Zalcman G, Parrini MC, Descroix S. Lab on a chip23, 3906-3935 (2023)
Hybrid core–shell nanoparticles for cell-specific magnetic separation and photothermal heating. C de la Encarnación, F Jungwirth, D Vila-Liarte, C Renero-Lecuna, S Kavak, I Orue, C Wilhelm, S Bals, M Henriksen-Lacey, D Jimenez de Aberasturi, LM Liz-Marzán. J Mater Chem B11, 5574-5585 (2023)
Optimization of magnetic nanoparticles for engineering erythrocytes as theranostic agents. LM Slavu, A Antonelli, ES Scarpa, P Abdalla, C Wilhelm, N Silvestri, T Pellegrino, K Scheffler, M Magnani, R Rinaldi, R Di Corato. Biomaterials Science11, 3252-3268 (2023)
The role of tumor model in magnetic targeting of magnetosomes and ultramagnetic liposomes. Curcio A, Perez JE, Prévéral S, Fromain A, Genevois C, Michel A, Van de Walle A, Lalatonne Y, Faivre D, Ménager C, Wilhelm C. Scientific Reports13, 2278 (2023)
Zn doped iron oxide nanoparticles with high magnetization and photothermal efficiency for cancer treatment. Kasparis G, Plan Sangnier A, Wang L, Efstathiou C, LaGrow AP, Sergides A, Wilhelm C, Thanh NTK. J Mater Chem B11, 781-801 (2023)
In Vivo Assimilation of CuS, Iron Oxide and Iron Oxide@ CuS Nanoparticles in Mice: A 6-Month Follow-Up Study. A Curcio, A Van de Walle, C Péchoux, A Abou-Hassan, C Wilhelm, Pharmaceutics14, 179 (2022)
Remote Magnetic Microengineering and Alignment of Spheroids into 3D Cellular Fibers. Demri N, Dumas S, Nguyen M, Groppero G, Abou-Hassan A, Descroix S, Wilhelm C. Advanced Functional Materials, 32, 2204850 (2022)
Magnetic Compression of Tumor Spheroids Increases Cell Proliferation In Vitro and Cancer Progression In Vivo. G Mary, B Malgras, JE Perez, I Nagle, N Luciani, C Pimpie, A Asnacios, M Pocard, M Reffay, C Wilhelm. Cancers14, 366 (2022)
Surface tension of model tissues during malignant transformation and epithelial–mesenchymal transition. I Nagle, I Nagle, A Richert, M Quinteros, S Janel, E Buysschaert, N Luciani, H Debost, V Thevenet, C Wilhelm, C Prunier, F Lafont, T Padilla-Benavides, M Boissan, M Reffay. Front. Cell Dev. Biol. 14, 1548 (2022)
Angular orientation between the cores of iron oxide nanoclusters controls their magneto–optical properties and magnetic heating functions, E Bertuit E, Menguy N, Wilhelm C, Rollet AL, Abou-Hassan A. Communication Chemistry5, 164 (2022)
All-in-one rheometry and nonlinear rheology of multicellular aggregates. Gaëtan Mary G, Mazuel F, Nier V, Fage F, Nagle I, Devaud L, Bacri J-C, Asnacios S, Asnacios A, Gay C, Marcq P, Wilhelm C, Reffay M. Physical Review E105, 054407 (2022)
Structure–Property–Function Relationships of Iron Oxide Multicore Nanoflowers in Magnetic Hyperthermia and Photothermia E Bertuit, E Benassai, G Mériguet, JM Greneche, B Baptiste, S Neveu, C Wilhelm, A Abou-Hassan, ACS nano16, 271–284 (2022)
The importance of intermediate filaments in the shape maintenance of myoblast model tissues I Nagle, F Delort, S Hénon, C Wilhelm, S Batonnet-Pichon, M Reffay. ELife11,e76409 (2022)
Anastomotic leak after colorectal surgery: management by combined use of an over-the-scope-clip and a thermoresponsive gel. H Alric, E Caudron, A Berger, J Daupin, G Perrod, C Wilhelm, F Gazeau, AKA Silva, G Rahmi, Clinics and Research Hepat Gastroent, 101990 (2022)
Massive Intracellular Remodeling of CuS Nanomaterials Produces Nontoxic Bioengineered Structures with Preserved Photothermal Potential. A Curcio, A Van de Walle, E Benassai, A Serrano, N Luciani, BB Manshian, A Sargsian, S Soenen, A Espinosa, A Abou-Hassan, C Wilhelm. ACS nano15, 9783-9795 (2021)
Transient cell stiffening triggered by magnetic nanoparticle exposure. JE Perez, F Fage, D Pereira, A Abou-Hassan, S Asnacios, A Asnacios, C Wilhelm. Journal of Nanobiotechnology19, 1-13 (2021)
Tuning the load of gold and magnetic nanoparticles in nanogels through their design for enhanced dual magneto-photo-thermia. E Cazares-Cortes, C Wilhelm, JE Perez, A Espinosa, S Casale, A Michel, A Abou-Hassan, C Ménager. Chem Comm57, 5945-5948 (2021)
Local administration of stem cell-derived extracellular vesicles in a thermoresponsive hydrogel promotes a pro-healing effect in a rat model of colo-cutaneous post-surgical fistula. A Berger, I Araújo-Filho, M Piffoux, A Nicolás-Boluda, A Grangier, I Boucenna, CC Real, FL Navarro Marques, D de Paula Faria, AC Meneses do Rego, C Broudin, F Gazeau, C Wilhelm, O Clément, C Cellier, CA Buchpiguel, G Rahmi, AKA Silva. Nanoscale13, 218-232 (2021)
Effect of stroma on the behavior of temoporfin-loaded lipid nanovesicles inside the stroma-rich head and neck carcinoma spheroids. I Yakavets, A Francois, L Lamy, M Piffoux, F Gazeau, C Wilhelm, V Zorin, AKA Silva, L Bezdetnaya. Journal of Nanobiotechnology19, 1-18 (2021)
Engineering and loading therapeutic extracellular vesicles for clinical translation: a data reporting frame for comparability. M Piffoux, J Volatron, K Cherukula, K Aubertin, C Wilhelm, AKA Silva, F Gazeau. Advanced Drug Delivery Reviews, 113972 (2021)
Enhancing digestive fistula healing by the off-label use of a thermoresponsive vessel occluder polymer associated with esophageal stent placement: A case report. A Berger, E Caudron, G Perrod, I Boucenna, F Gazeau, C Wilhelm, A Berger, O Clément, C Cellier, AKA Silva, G Rahmi. Clinics and Research in Hepatology and Gastroenterology45, 101474 (2021)
Regenerative medicine for digestive fistulae therapy: benefits, challenges and promises of stem/stromal cells and emergent perspectives via their extracellular vesicles. AC Sebbagh, B Rosenbaum, G Péré, H Alric, A Berger, C Wilhelm, F Gazeau, N Mathieu, G Rahmi, AKA Silva. Advanced Drug Delivery Reviews, 113841 (2021)
Technological advances towards extracellular vesicles mass production. A Grangier, J Branchu, J Volatron, M Piffoux, F Gazeau, C Wilhelm, AKA Silva. Advanced Drug Delivery Reviews, 113843 (2021)
Using Magnetometry to Monitor Cellular Incorporation and Subsequent Biodegradation of Chemically Synthetized Iron Oxide Nanoparticles. A Van de Walle, A Fromain, C Wilhelm, Y Lalatonne. Jove (2021)
Immune Reprogramming Precision Photodynamic Therapy of Peritoneal Metastasis by Scalable Stem-Cell-Derived Extracellular Vesicles. A Pinto, I Marangon, J Méreaux, A Nicolás-Boluda, G Lavieu, C Wilhelm, L Sarda-Mantel, AKA Silva, M Pocard, F Gazeau. ACS nano15, 3251-3263 (2021)
Extracellular vesicles from adipose stromal cells combined with a thermoresponsive hydrogel prevent esophageal stricture after extensive endoscopic submucosal dissection in a porcine model. E Coffin, A Grangier, G Perrod, M Piffoux, I Marangon, I Boucenna, A Berger, L M’Harzi, J Assouline, T Lecomte, A Chipont, C Guérin, F Gazeau, C Wilhelm, C Cellier, O Clément, AKA Silva, G Rahmi. Nanoscale13, 14866-14878 (2021)
Whither magnetic hyperthermia? A tentative roadmap. I Rubia-Rodríguez, A Santana-Otero, S Spassov, E Tombácz, C Johansson, P De La Presa, F J Teran, M del Puerto Morales, S Veintemillas-Verdaguer, NTK Thanh, MO Besenhard, C Wilhelm, F Gazeau, Q Harmer, E Mayes, BB Manshian, SJ Soenen, Y Gu, Á Millán, EK Efthimiadou, J Gaudet, P Goodwill, J Mansfield, U Steinhoff, J Wells, F Wiekhorst, D Ortega. Materials14, 706 (2021)
Gold/Polyoxometalate Core/Shell Nanoparticles for Combined Chemotherapy–Photothermal Cancer Therapy. Tomane S, Wilhelm C, Boujday S, Fromain A, Miche A, Bourdreux F, Dolbecq A, Mialane P, Vallée A. ACS Applied Nano Materials, 4, 2339-2344. (2021)
Magnetic molding of tumor spheroids: Emerging model for cancer screening. Perez JE, Nagle, I, Wilhelm C. Biofabrication13, 015018 (2020)
High‐Throughput Differentiation of Embryonic Stem Cells into Cardiomyocytes with a Microfabricated Magnetic Pattern and Cyclic Stimulation. Mary G, Van de Walle A, Perez JE, Ukai T, Maekawa T, Luciani N, Wilhelm C. Advanced Functional Materials 12002541 (2020)
Transformation Cycle of Magnetosomes in Human Stem Cells: From Degradation to Biosynthesis of Magnetic Nanoparticles Anew. Curcio A, Van de Walle A, Serrano A, Preveral S, Péchoux C, Pignol D, Menguy N, Lefèvre CT, Espinosa A, Wilhelm C. ACS nano14, 1406-1417 (2020)
Janus magnetic-plasmonic nanoparticles for magnetically guided and thermally activated cancer therapy. Espinosa A, Reguera J, Curcio A, Muñoz A, Van de Walle A, Liz-Marzán L, Wilhelm C. Small16 1904960 (2020)
Ever-Evolving Identity of Magnetic Nanoparticles within Human Cells, the Interplay of Endosomal Confinement, Degradation, Storage, and Neo-Crystallization. Van de Walle A, Kolosnjaj-Tabi J, Lalatonne Y, Wilhelm C. Accounts of chemical research53, 2212-2224 (2020)
3D Magnetic Alignment of Cardiac Cells in Hydrogels. Richard S, Silva A, Mary G, Ragot H, Perez JE, Menager C, Gazeau F, Boucenna I, Agbulut O, Wilhelm C. ACS Applied Bio Materials, 3, 6802-6810 (2020)
Versatile iron cobalt nanoparticles Van de Walle A, Perez JE, Wilhelm C. Nature Biomed Eng4, 252 (2020)
Endosomal confinement of gold nanospheres, nanorods and nanoraspberries governs their photothermal identity and is beneficial for cancer cells therapy. Plan Sangnier A, Van de Walle A, Motte L, Guenin E, Lalatonne Y, Wilhelm C. Advanced Biosystems4, 1900284 (2020)
Magnetic nanoparticles in regenerative medicine: what of their fate and impact in stem cells? Van de Walle A, Perez JE, Abou-Hassan A, Hemadi M, Luciani N, Wilhelm C. Materials Today Nano 100084 (2020)
Real-time in situ magnetic measurement of the intracellular biodegradation of iron oxide nanoparticles in a stem cell-spheroid tissue model. Van de Walle A, Fromain A, Plan Sangnier A, Curcio A, Lenglet L, Motte L, Lalatonne Y, Wilhelm C. Nano Research13, 467-476 (2020)
Iron Oxide Mediated Photothermal Therapy in the Second Biological Window: A Comparative Study between Magnetite/Maghemite Nanospheres and Nanoflowers. Cabana S, Curcio A, Michel A, Wilhelm C, Abou-Hassan A. Equal contribution. Nanomaterials* 10, 1548 (2020)
Controlled Drug Delivery for Cancer Cells Treatment via Magnetic Doxorubicin Imprinted Silica Nanoparticles Nerantzaki M, Michel A, Briot E, Siaugue J-M, Menager C, Wilhelm C, Griffete N. Chemical Communicationdoi, 10.1039/D0CC01325K (2020)
mTHPC-Loaded Extracellular Vesicles Significantly Improve mTHPC Diffusion and Photodynamic Activity in Preclinical Models. Millard M, Posty S, Piffoux M, Jasniewski J, Lassalle HP, Yakavets I, Gazeau F, Wilhelm C, Silva AKA, Bezdetnaya L Pharmaceutics12, 676 (2020)
Impact of magnetic nanoparticle surface coating on their long-term intracellular biodegradation in stem cells. Plan Sangnier A, Van de Walle A, Le Borgne R, Motte L, Lalatonne Y, Wilhelm C. Nanoscale, 11, 16488 (2019)
The biological fate of magnetic protein-specific molecularly imprinted polymers: toxicity and degradation. Boitard C, Curcio A, Rollet A-L, Wilhelm C, Ménager C, Griffete N. ACS Applied Materials & Interfaces, 11, 35556-35565 (2019)
Esterase Cleavable 2D Assemblies of Magnetic Iron Oxide Nanocubes: Exploiting Enzymatic Polymer Disassembling to Improve Magnetic Hyperthermia Heat Losses. Avugadda SK, Materia ME, Nigmatullin R, Cabrera D, Marotta R, Fernandez Cabada T, Nitti S, Artés-Ibañez EJ, Basnett P, Wilhelm C, Teran FJ, Roy I, Pellegrino T. Chemistry of Materials, 31, 5450-5463 (2019)
Magnetic Silica-Coated Iron Oxide Nanochains as Photothermal Agents, Disrupting the Extracellular Matrix, and Eradicating Cancer Cells. Kolosnjaj-Tabi J, Kralj S, Griseti E, Nemec S, Wilhelm C, Plan Sangnier A, Bellard E, Fourquaux I, Golzio M, Rols M-P. Cancers, 11, 2040 (2019)
TRAIL acts synergistically with iron oxide nanoclusters-mediated magneto- and photothermia therapy. Belkahla H, Mazarío E, Plan Sangnier A, Lomas JS, Gharbi T, Ammar S, Micheau O, Wilhelm C, Hémadi M. Theranostics*, 9, 5924-5936 (2019)
Raspberry-like small multicore gold nanostructures for efficient photothermal conversion in the first and second near-infrared windows. Plan Sangnier A, Aufaure R, Cheong S, Motte L, Palpant B, Tilley RD, Guenin E, Wilhelm C, Lalatonne Y. Chemical Communications, 55, 4055-4058 (2019)
Carbon dots, a powerful non-toxic support for bioimaging by fluorescence nanoscopy and eradication of bacteria by photothermia. Belkahl H, Boudjema R, Caorsi V, Pineau D, Curcio A, Decorse P, Chevillot-Biraud A, Wilhelm C, Randriamahazaka H, Hémadi M. Nanoscale Advances, 1, 2571-2579 (2019)
Iron Oxide Nanoflowers @ CuS Hybrids for Cancer Tri-Therapy: Interplay of Photothermal Therapy, Magnetic Hyperthermia and Photodynamic Therapy. Curcio A, Silva AKA, Cabano S, Espinosa A, Baptiste B, Menguy N, Wilhelm C, Abou-Hassan A. Theranostics, 9, 1288-1302 (2019)
Extracellular vesicles for personalized medicine: The input of physically triggered production, loading and theranostic properties. Piffoux M, Nicolás-Boluda A, Mulens-Arias V, Richard S, Rahmi G, Gazeau F, Wilhelm C, Silva AKA. Advanced drug delivery reviews138, 247-258 (2019)
Recent insights in magnetic hyperthermia: From the « hot-spot » effect for local delivery to combined magneto-photo-thermia using magneto-plasmonic hybrids Cazares-Cortes E, Cabana S, Boitard C, Nehling E, Griffete E, Fresnais J, Wilhelm C, Abou-Hassan A, Ménager C. Advanced drug delivery reviews138, 233-246 (2019)
Hybrid Au@alendronate nanoparticles as dual chemo-photothermal agent for combined cancer treatment. Plan Sangnier A, Aufaure R, Motte L, Wilhelm C, Guenin E, Lalatonne Y. Beilstein J. Nanotechnol.* 9, 2947–2952 (2018)
mTHPC-loaded extracellular vesicles outperform liposomal and free mTHPC formulations by an increased stability, drug delivery efficiency and cytotoxic effect in tridimensional model of tumors. Millard M, Yakavets I, Piffoux M, Brun A, Gazeau F, Guigner J-M, Jasniewski J, Lassalle H-P, Wilhelm C, Bezdetnaya L. Drug Delivery25, 1790-1801 (2018)
Magnetic Nanoparticles Create Hot Spots in Polymer Matrix for Controlled Drug Release. Cazares-Cortes E, Nerantzaki M, Fresnais J, Wilhelm C, Griffete N, Ménager C. Nanomaterials8, 850 (2018)
Role of growth factors and oxygen to limit hypertrophy and impact of high magnetic nanoparticles dose during stem cells chondrogenesis. Van de Walle A, Faissal W, Wilhelm C, Luciani N. Computational and Structural Biotechnology Journal 16, 532-542 (2018)
Magnetic (hyper)thermia or photo-thermia? Progressive comparison of iron oxide and gold nanoparticles heating in water, in cells, and in vivo. Espinosa A, Kolosnjaj-Tabi J, Abou-Hassan A, Plan Sangnier A, Curcio A, Silva AKA, Di Corato R, Neveu S, Pellegrino T, Liz-Marzán LM, Wilhelm C. Advanced Functional Materials 1803660 (2018)
Intracellular Biodegradation of Ag Nanoparticles, Storage in Ferritin, and Protection by Au Shell for Enhanced Photothermal Therapy. Espinosa A, Curcio A, Cabana S, Radtke G, Bugnet M, Kolosnjaj-Tabi J, Péchoux C, Alvarez-Lorenzo C, Botton GA, Silva AKA, Abou-Hassan A, Wilhelm C. ACS nano12, 6523–6535 (2018)
Targeted thermal therapy with genetically engineered magnetite magnetosomes@RGD: Photothermia is far more efficient than magnetic hyperthermia. Plan A, Preveral S, Curcio A, Silva A, Lefèvre CT, Pignol D, Lalatonne Y, Wilhelm C. Journal of Controlled Release279, 271-281 (2018)
Thermoresponsive Gel Embedding Adipose Stem Cell-Derived Extracellular Vesicles Promotes Esophageal Fistula Healing in a Thermo-Actuated Delivery Strategy. Silva AKA, Perretta S, Perrod G, Pidial L, Lindner V, Carn F, Lemieux S, Alloyeau D, Boucenna I, Menasché P, Dallemagne B, Gazeau F, Wilhelm C, Cellier C, Clément O, Rahmi G. ACS nano12, 9800–9814 (2018)
Thermal Polymerization on the Surface of Iron Oxide Nanoparticles Mediated by Magnetic Hyperthermia: Implications for Multi-Shell Grafting and Environmental Applications. Griffete N, Fresnais J, Espinosa A, Taverna D, Wilhelm C, Ménager C. ACS Applied Nano Materials 1, 547-555 (2018)
Modification of Extracellular Vesicles by Fusion with Liposomes for the Design of Personalized Biogenic Drug Delivery Systems. Piffoux M, Silva AKA, Wilhelm C, Gazeau F, Tareste D. ACS nano12, 6830-6842 (2018)
Monitoring the dynamics of cell-derived extracellular vesicles at the nanoscale by liquid-cell transmission electron microscopy. Piffoux M, Ahmad N, Nelayah J, Wilhelm C, Silva A, Gazeau F, Alloyeau D. Nanoscale10, 1234-1244 (2018)
Magneto-Thermal Metrics Can Mirror the Long-Term Intracellular Fate of Magneto-Plasmonic Nanohybrids and Reveal the Remarkable Shielding Effect of Gold. Mazuel F, Espinosa A, Radtke G, Bugnet M, Neveu S, Lalatonne Y, Botton GA, Abou-Hassan A, Wilhelm C. Advanced Functional Materials, 27, 1605997 (2017)
Forced and Self Rotation of Magnetic Nanorods Assembly at the Cell Membrane: a Bio-Magnetic Torsion Pendulum. Mazuel F, Mathieu S, Di Corato R, Bacri J-C, Meylheuc T, Pellegrino T, Reffay M, Wilhelm C. Small, 13, 1701274 (2017)
Doxorubicin Intracellular Remote Release from Biocompatible OEGMA-based Magnetic Nanogels Triggered by Magnetic Hyperthermia. Cazares-Cortes E, Espinosa A, Guigner J-M, Michel A, Griffete N, Wilhelm C, Menager C. ACS Applied Materials & Interfaces 9, 25775 (2017)
3D magnetic stem cell aggregation and bioreactor maturation for cartilage regeneration. Van de Walle A, Wilhelm C, Luciani N. JoVE, 122, e55221 (2017)
Janus plasmonic–magnetic gold–iron oxide nanoparticles as contrast agents for multimodal imaging. Reguera J, de Aberasturi DJ, Henriksen-Lacey M, Langer J, Espinosa A, Szczupak B, Wilhelm C, Liz-Marzán LM. Nanoscale, 9, 9467 (2017)
Impact of a mechanical shear stress on intracellular trafficking. Aubertin K, Tailleur J, Wilhelm C, Gallet F. Soft Matter, 13, 5298-5306 (2017)
Maghemite Nanoparticles Coated with Human Serum Albumin: Combining Targeting by the Iron-Acquisition Pathway and Potential in Photothermal Therapies. Hai J, Piraux H, Mazarío E, Volatron J, Ha-Duong NT, Decorse P, Verbeke P, Ammar S, Wilhelm C, El Hage J-M, Hémadi M. Journal of Materials Chemistry, 5, 3154-3162 (2017)
Extracellular Vesicle Production Loaded with Nanoparticles and Drugs in a Trade‐off between Loading, Yield and Purity: Towards a Personalized Drug Delivery System. Piffoux M, Silva AKA, Lugagne JB, Hersen P, Wilhelm C, Gazeau F. Advanced Biosystems, 1, 1700044 (2017)
Bone marrow-derived mesenchymal stem cell-loaded fibrin patches act as a reservoir of paracrine factors in chronic myocardial infarction. Blondiaux E, Pidial L, Autret G, Rahmi G, Balvay D, Audureau E, Wilhelm C, Guerin CL, Bruneval P, Silvestre J-S, Menasché P, Clément O. J Tiss Eng & Reg Med11, 3417-3427 (2017)
Massive Intracellular Biodegradation of Iron Oxide Nanoparticles Evidenced Magnetically at Single Endosome and Tissue Levels. Mazuel F, Espinosa A, Luciani N, Reffay M, Le Borgne R, Motte L, Desboeufs K, Michel A, Pellegrino T, Lalatonne Y, Wilhelm C. ACS Nano, 10, 7627- 38 (2016)
Massive release of extracellular vesicles from cancer cells after photodynamic treatment or chemotherapy. Aubertin K, Silva AKA, Luciani N, Espinosa A, Djemat A, Charue D, Gallet F, Blanc-Brude O, Wilhelm C. Scientific Reports, 6, 35376 (2016)
Duality of Iron Oxide Nanoparticles in Cancer Therapy: Amplification of Heating Efficiency by Magnetic Hyperthermia and Photothermal Bimodal Treatment Espinosa A, Di Corato R, Kolosnjaj-Tabi J, Flaud P, Pellegrino T, Wilhelm C. ACS Nano, 10, 2436-46 (2016)
Successful chondrogenesis within scaffolds, using magnetic stem cell confinement and bioreactor maturation. Luciani N, Du V, Gazeau F, Richert A, Letourneur D, Le Visage C, Wilhelm C. Acta Biomaterialia, 37, 101-110 (2016)
Cancer cell internalisation of gold nanostars impacts their photothermal efficiency in vitro and in vivo: towards a plasmonic thermal fingerprint in tumoral environment Espinosa A, Silva AKA, Sánchez-Iglesias A, Grzelczak M, Péchoux C, Desboeufs K, Liz-Marzán LM, Wilhelm C. Advanced HealthCare Materials, 5, 1040- 48 (2016) Cover.
Multifunctional core-shell hybrid nano-composites made using Pickering emulsions: A new design for therapeutic vectors. Fontecave T, Bourbousson M, Chanéac C, Wilhelm C, Espinosa A, Fortin M-A, Sanchez C, Boissiere C. New Journal of Chemistry, 40, 4436-4446 (2016)
Zinc substituted ferrite nanoparticles with Zn~0.9~Fe~2.1~O~4~ formula used as heating agents for in vitro hyperthermia assay on glioma cells. Hanini A, Lartigue L, Gavard J, Kacem K, Wilhelm C, Gazeau F, Chau F, Merah S. J Mag Mag Mat, 416, 315-20 (2016)
Biotransformations of magnetic nanoparticles in the body Kolosnjaj-Tabi J, Lartigue L, Javed Y, Luciani N, Pellegrino T, Wilhelm C, Alloyeau D, Gazeau F, Nano Today, 11, 280-84 (2016)
Designing 3D Mesenchymal Stem Cell Sheets Merging Magnetic and Fluorescent Features: When Cell Sheet Technology Meets Image-Guided Cell Therapy Rahmi G, Pidial L, Silva AKA, Blondiaux E, Meresse B, Gazeau F, Autret G, Balvay D,Cuenod CA, Perretta S, Tavitian B, Wilhelm C, Cellier C, Clément O. Theranostics, 6, 739-51 (2016)
Thermosensitivity profile of malign glioma U87-MG cells and human endothelial cells following γ-Fe2O3 NPs internalisation and magnetic field application. Hanini A, Lartigue L, Gavard J, Schmitt A, Kacem K, Wilhelm C, Gazeau F, Chau F, Merah S. RSC Advances, 6, 15415 (2016)
Can magneto-plasmonic nanohybrids efficiently combine photothermia with magnetic hyperthermia?Espinosa A, Bugnet M, Radtke G, Neveu S, Botton GA, Wilhelm C, Abou-Hassan A. Equal contribution. Nanoscale*, 7, 18872-18877 (2015) Cover.
Magnetic flattening of stem-cell spheroids indicates a size-dependent elastocapillary transition. Mazuel F, Reffay M, Du V, Bacri J-C, Rieu J-P, Wilhelm C. Phys Rev Lett, 114, 098105 (2015). Featured in Physicshttp://physics.aps.org/synopsis-for/10.1103/PhysRevLett.114.098105. Editors’ Suggestion.
Combining magnetic hyperthermia and photodynamic therapy for tumor ablation with photoresponsive magnetic liposomes. Di Corato R, Béalle G, Kolosnjaj-Tabi J, Espinosa A, Clément O, Silva AKA, Ménager C, Wilhelm C.ACS Nano, 9, 2904-2916 (2015) Communiqué de Pressehttp://www2.cnrs.fr/presse/communique/3969.htm
Magnetic engineering of stable rod-shaped stem cell aggregates: circumventing the pitfall of self-bending. Fayol D, Du V, Reffay M, Luciani N, Bacri J-C, Gay C, Wilhelm C. Integrative Biology, 7, 170-177 (2015) Journal cover. « Hot article » http://blogs.rsc.org/ib/category/hot-articles/
Combining magnetic nanoparticles with cell derived microvesicles for drug loading and targeting.Silva AKA, Luciani N, Gazeau F, Aubertin K, Bonneau S, Chauvierre C, Letourneur D, Wilhelm C. Nanomedicine NBM, 11, 645–655 (2015)
Design of magnetic molecularly imprinted polymer nanoparticles for controlled release of doxorubicin under an alternative magnetic field in athermal conditions. Griffete N, Fresnais J, Espinosa A, Wilhelm C, Bée A, Ménager C. Nanoscale, 7, 18891-18896 (2015)
Hollow iron oxide nanoparticles in polymer nanobeads as MRI contrast agents. Bigall N, Dilena E, Dorfs D, Beoutis M-L, Pugliese G, Wilhelm C, Gazeau F, Khan AA, Bittner A, Garcia MA, Garcia-Hernandez M, Manna L, Pellegrino T. J Phys Chem C, 119, 6246–6253 (2015)
Antitumoral effect of mural cells assessed with high-resolution MRI and fluorescence microscopy.Faye N, Fournier L, Balvay D, Wilhelm C, Broqueres-You D, Bruneval P, Clément O. American J Roent, 205, W11-W18 (2015)
Magnetic hyperthermia efficiency in the cellular environment for different nanoparticle designs Di Corato R, Espinosa A, Lartigue L, Tharaud M, Chat S, Pellegrino T, Ménager C, Gazeau F, Wilhelm C.Biomaterials24, 6400–6411 (2014)
Magnetically shaped cell aggregates: from granular to contractile materials. Frasca G, Du V, Bacri J-C, Gazeau F, Gay C, Wilhelm C.Soft Matter, 10, 5045-54 (2014) Journal cover.
Heat-Generating Iron Oxide Nanocubes: Subtle « Destructurators » of the Tumoral Microenvironment. Kolosnjaj-Tabi J, Di Corato R, Lartigue L, Marangon I, Guardia P, Silva A, Luciani N, Clément O, Flaud P, Singh JV, Decuzzi P , Pellegrino T, Wilhelm C, Gazeau F. ACS Nano, 8, 4268–4283 (2014)
Design of Covalently Functionalized Carbon Nanotubes Filled with Metal Oxide Nanoparticles for Imaging, Therapy, and Magnetic Manipulation. Liu X, Marangon I, Melinte G, Wilhelm C, Ménard-Moyon C, Pichon B, Ersen O, Aubertin K, Baaziz W, Cuong Pham-Huu C, Bégin-Colin S, Bianco A, Gazeau F, Bégin D. ACS Nano, 8, 11290–11304 (2014)
Biodegradation mechanisms of iron oxide monocrystalline nanoflowers and tunable shield effect of gold coating. Javed Y, Lartigue L, Hugounenq P, Vuong QL, Gossuin Y, Bazzi R, Wilhelm C, Ricolleau C, Gazeau, F, Alloyeau D. Small 10, 3325-3337 (2014)
Surface Decoration of Catanionic Vesicles by Superparamagnetic Iron Oxide Nanoparticles: a Model System for Triggered Release with Moderate Temperature Conditions. Béalle G, Lartigue L, Wilhelm C, Ravaux J, Gazeau F, Podor R, Ménager C, Carrière D. Phys Chem Chem Phys, 16, 4077-4081 (2014)
Strong and specific interaction of ultra small superparamagnetic iron oxide nanoparticles and human activated platelets mediated by fucoidan coating. Bachelet-Violette L, Silva AK, Maire M, Michel A, Brinza O, Ou P, Nicoletti A, Wilhelm C, Letourneur D, Ménager C, Chaubet F. RSC Advances, 4, 4864-4871 (2014)
Cell-derived Vesicles as a Bioplatform for the Encapsulation of Theranostic Nanomaterials. Silva AKA, Di Corato R, Luciani N, Chat S, Gazeau F, Pellegrino T, Wilhelm C. Nanoscale. 7, 11374-84 (2013) Journal cover.
Impact of photosensitizers on intracellular trafficking and viscosity. Aubertin K, Bonneau S, Andriola A, Gallet F, Wilhelm C. Plos One. 8, e84850 (2013)
High resolution multiplex MRI: gadolinium and iron oxides nanoparticles for in depth imaging of multi-cellular engineered tissue constructs. Di Corato R, Gazeau F, Le Visage C, Fayol D, Levitz P, Lux F, Letourneur D, Luciani N, Tillement O, Wilhelm C. ACS nano, 7, 7500–7512 (2013)
Magnetic and photoresponsive theranosomes: translating cell-released vesicles into smart nanovectors for cancer therapy. Andriola A, Kolosnjaj J, Bonneau S, Marangon I , Bogetto N, Aubertin K, Clément O, Bureau MF, Luciani N, Gazeau F, Wilhelm C. ACS nano 7, 4954–4966 (2013)
Magnetic forces promote stem cell differentiation, aggregates fusion and tissue building. Fayol D, Frasca G, Le Visage C, Gazeau F, Luciani N, Wilhelm C. Advanced Materials.25, 2611-2616 (2013)
Design of biomimetic vascular grafts with magnetic endothelial patterning. Fayol D, Le Visage C, Ino J, Gazeau F, Letourneur D, Wilhelm C. Cell Transplantation, 22, 2105-18 (2013) Journal cover.
Managing magnetic nanoparticle aggregation and cellular uptake: a precondition for efficient stem–cell differentiation and MRI tracking. Fayol D, Luciani N, Lartigue L, Gazeau F, Wilhelm C. Advanced Healthcare Materials, 2: 313-25 (2013)
Colloidal Assemblies in a Polymer Shell – A Novel Type of Magnetic Nanobeads for Theranostic Applications. Bigal NC, Wilhelm C, Beoutis M-L, Kahn AA, Manna L, Giannini C, Garcia MA, Gazeau F, Bittner AM, Pellegrino T. Chem. Mater.25, 1055–1062 (2013)
Revisiting MRI contrast properties of nanoparticles: beyond the superparamagnetic regime.Lévy M, Gazeau F, Wilhelm C, Neveu S, Devaud M, Levitz P. J Phys Chem C 117, 15369-74 (2013)
Biodegradation of Iron Oxide Nanocubes: High Resolution In Situ Monitoring. Lartigue L, Alloyeau D, Kolosnjaj-Tabi J, Javed Y, Guardia P, Pellegrino T, Wilhelm C, Gazeau F. ACS nano 7 : 3939-52 (2013)
Endowing carbon nanotubes with superparamagnetic properties: applications for cell labeling, MRI cell tracking and magnetic manipulations. Lamanna G, Garofalo A, Popa G, Wilhelm C, Begin-Colin S, Felder-Flesch D, Bianco A, Gazeau F, Ménard-Moyon C. Nanoscale. 5: 4412-21 (2013)
Magnetic properties of iron oxide nanoparticles prepared by seeded-growth route. Espinosa A, Munoz A, Garcia-Hernandez M, Serrano A, Jimenez J, Figuerola A, Quarta A, Pellegrino T, Wilhelm C, Garcia MA. J Nanoparticle Research, 15: 1514 (2013)
Considerations for the clinical use of contrast agents for cellular MRI in regenerative medicine. Modo M, Kolosnjaj-Tabi J, Nicholls F, Ling W, Wilhelm C, Debarge O, Gazeau F, Clement O. Contrast Media and Molecular Imaging 8, 439-455 (2013)
Localization and relative quantification of carbon nanotubes in cells with multispectral imaging flow cytometry. Marangon I, Boggetto N, Ménard-Moyon C, Luciani N, Wilhelm C, Bianco A, Gazeau F. J Vis Exp. 82 (2013)
Cell labeling with magnetic nanoparticles: Opportunity for magnetic cell imaging and cell manipulation. Kolosnjaj-Tabi J, Wilhelm C, Clément O, Gazeau F. J Nanobiotech 11, S7 (2013)
Magnetophoresis at the nanoscale: tracking magnetic targeting efficiency of nanovectors. Andriola Silva A, Di Corato R, Gazeau F, Pellegrino T, Wilhelm C. Nanomedicine, 7, 1713-27 (2012)
Ultra magnetic liposomes for MR imaging, targeting, and hyperthermia. Béalle G, Di Corato R, Kolosnjaj–Tabi J, Dupuis V, Clément O, Gazeau F, Wilhelm C, Ménager C. Langmuir, 28, 11834–42 (2012)
Magnetic electrospun fibers for heating cancer cells. Huang C, Soenen SJ, Trekker J, Chengxun L, Ceelen W, Wilhelm C, Demeester J, De Smedt SC. Advanced Funct Mat .22, 2479-86 (2012)
Al Faraj A, Gazeau F, Wilhelm C, Devue C, Guerin C, Pechoux C, Paradis V, Clément O, Boulanger C, Rautou PE. Endothelial cell-derived microparticles loaded with iron oxide nanoparticles: feasibility of MR imaging monitoring in mice. Radiology . 263, 169–178 (2012)
TI-VAMP/VAMP7 is the snare of secretory lysosomes contributing to ATP secretion from astrocytes. Verderio C, Bergami M, Cagnoli C, Schenk U, Riganti L, Frassoni C, Zuccaro E, Danglot L, Wilhelm C, Galli T, Canossa M, Matteoli M. Biology of the cell . 104, 213-28 (2012)
Cooperative organization in iron oxide multi-core nanoparticles potentiates their efficiency as heating mediators and MRI contrast agents. Lartigue L, Hugounenq P, Alloyeau D, Clarke SP, Levy M, Bacri J-C, Bazzi R, Brougham DF, Wilhelm C, Gazeau F. ACS Nano, 6, 10935–10949 (2012)
Cellular transfer of magnetic nanoparticles via cell microvesicles: Impact on cell tracking by Magnetic Resonance Imaging. Silva AKA, Wilhelm C, Kolosnjaj-Tabi J, Luciani N, Gazeau F. Pharm. Res. 29, 1392–1403 (2012) Journal cover.
Iron oxide monocrystalline nanoflowers for highly efficient magnetic hyperthermia. Hugounenq P, Levy M, Alloyeau D, Lartigue L, Dubois E, Cabuil V, Ricolleau C, Roux S, Wilhelm C, Gazeau F, Bazzi R. Journal of Physical Chemistry C116, 15702–15712 (2012)
Nanomagnetic Sensing of Blood Plasma Protein Interactions with Iron Oxide Nanoparticles: Impact on Macrophage Uptake. Lartigue L, Wilhelm C, Servais J, Factor C, Dencausse A, Bacri J-C, Luciani N, Gazeau F. ACS Nano, 6, 2665-78 (2012)
Intercellular carbon nanotube translocation assessed by flow cytometry imaging. Marangon I, Boggetto N, Ménard–Moyon C, Venturelli E, Béoutis ML, Péchoux C, Luciani N, Wilhelm C, Bianco A, Gazeau F. NanoLett, 12, 4830–7 (2012)
Real–time high resolution magnetic resonance tracking of macrophage subpopulations in a murine inflammation model: a pilot study with a commercially available cryogenic probe. Al Faraj A, Luciani N, Kolosnjaj–Tabi J, Mattar E, Clement O, Wilhelm C, Gazeau F. Contrast Media Molecular Imaging, 8, 193-203 (2012)
Water soluble iron oxide nanocubes with high values of specific absorption rate for cancer cell hyperthermia treatment. Guardia P, Di Corato R, Lartigue L, Wilhelm C, Espinosa A, Garcia–Hernandez MA, Gazeau F, Manna L, Pellegrino T. ACS Nano, 6, 3080–91 (2012)
How cellular processing of superparamagnetic nanoparticles affects their magnetic behavior and NMR relaxivity? Lévy M, Wilhelm C, Devaud M, Levitz P, Gazeau F. Contrast Media & Molecular Imaging .7, 373–383 (2012)
Adipose tissue macrophages: MR tracking to monitor obesity-associated inflammation. Luciani A, Dechoux S, Deveaux V, Poirier-Quinot M, Luciani N, Levy M, Ballet S, Manin S, Pechoux C, Autret G, Clément O, Rahmouni A, Mallat A, Wilhelm C, Lotersztajn S, Gazeau F. Radiology.63, 786–793 (2012)
Endothelial cell-derived microparticles loaded with iron oxide nanoparticles: feasibility of MR imaging monitoring in mice. Al Faraj A, Gazeau F, Wilhelm C, Devue C, Guerin C, Pechoux C, Paradis V, Clément O, Boulanger C, Rautou PE. Radiology . 263, 169–178 (2012)
Can Magnetic Targeting of Magnetically Labeled Endothelial Progenitor Circulating Cells Optimize Intramyocardial Cell Engraftment? Chaudeurge A, Wilhelm C, Chen-Tournoux A, Farahmand P, Bellamy V, Autret G, Larghéro J, Thiam R, Desnos M, Hagège A, Gazeau F, Clément O, Menasché P. Cell Transplantation.21, 679–691 (2012)
Magnetic nano-manipulations inside living cells to get consensus for intracellular mechanics. Robert D, Aubertin K, Bacri JC, Wilhelm C. Phys Rev E .85, 011905 (2012)
Cell sorting by endocytotic capacity in a microfluidic magnetophoresis device. Robert D, Pamme N, Conjeaud H, Gazeau F, Alexander Iles A, Wilhelm C. Lab on Chip.11, 1902-1910 (2011) Journal cover.
Multifunctional nanovectors based on magnetic nanoparticles coupled with biological vesicles or synthetic liposomes. Lesieur S, Gazeau F, Menager C, Wilhelm C. J. Mat. Chem.21, 14387-14393 (2011)
Magnetic targeting of steroidal anti-estrogen RU-58668 via magnetic-fluid loaded liposomes significantly enhances the drug antitumor activity against MCF-7 human breast cancer cell line. Plassat V, Wilhelm C, Marsaud V, Ménager C, Gazeau F, Renoir J-M, Lesieur S. Advanced Functional Materials.21, 83-92 (2011)
Brulé S, Lévy M, Wilhelm C, Letourneur D, Gazeau F, Ménager C, Le Visage C. Doxorubicin release triggered by alginate embedded magnetic nanoheaters: a combined therapy. Advanced Materials.23, 787-790 (2011)
Long term in vivo biotransformation of iron oxide nanoparticles. Levy M, Luciani N, Alloyeau D, Elgrabli D, Deveaux V, Pechoux C, Chat S, Wang G, Vats N, Gendron F, Factor C, Lotersztajn S, Luciani A, Wilhelm C, Gazeau F. Biomaterials. 32, 3988-99 (2011)
Modelling magnetic nanoparticle dipole-dipole interactions inside living cells. Levy M, Gazeau F, Bacri J-C, Wilhelm C, Devaud M. Phys. Rev B.84, 075480 (2011)
Correlating Magneto-Structural Properties to Hyperthermia Performance of Highly Monodisperse Iron Oxide Nanoparticles Prepared by a Seeded-Growth Route. Lévy M, Quarta A, Espinosa A, Figuerola A, Wilhelm C, García-Hernández M, Genovese A, Falqui A, Alloyeau D, Buonsanti R, Cozzoli PD, García MA, Gazeau F, Pellegrino T. Chem. Mater.23, 4170–4180 (2011)
Nanomagnetism reveals the intracellular fate of nanoparticles in the organism. Levy M, Wilhelm C, Luciani N, Deveaux V, Elgrabli D, Pechoux C, Gendron F, Luciani A, Devaud M, Gazeau F. Nanoscale . 3, 4402-4410 (2011)
Different localizations of hydrophobic magnetic nanoparticles within vesicles trigger their efficiency as magnetic nano-heaters. Beaune G, Levy M, Neveu S, Gazeau F, Wilhelm C, Ménager C. Soft Matter . 7, 6248-6254 (2011)
In vivo determination of fluctuating forces during endosome trafficking. Robert D, Nguyen TH, Gallet F, Wilhelm C. PLoS one.5, e10046. (2010)
Magnetic micro-manipulations inside porous scaffolds to probe the local physical properties and to confine stem cells. Robert D, Fayol D, Le Visage C, Frasca G, Brulé S, Ménager C, Gazeau F, Letourneur D, Wilhelm C. Biomaterials.31, 1586-1595 (2010)
Local control of magnetic objects in microfluidic channels. Derec C, Wilhelm C, Servais J, Bacri J-C. Microfluidics and Nanofluidics.8, 123-130 (2010)
High resolution magnetic resonance imaging for tissue engineering construct: a non invasive tool to assess 3D scaffold architecture and cell seeding. Poirier-Quinot M, Frasca G, Wilhelm C, Luciani N, Ginefri J-C, Darrasse L, Letourneur D, Le Visage C, Gazeau F. Tissue Engineering.16, 185-200 (2010)
Magnetic labelling, imaging and manipulation of Endothelial Progenitor Cells using iron oxide nanoparticles. Gazeau F, Wilhelm C. Future Medicinal Chemistry.2, 397-408 (2010)
Magnetic tagging of cell-derived microparticles : new prospects for imaging and manipulation of these mediators of biological information. Vats N, Wilhelm C, Rautou P-E, Poirier-Quinot M, Péchoux C, Devue C, Boulanger CM, Gazeau F. Nanomedicine.5, 727-738 (2010)
Degradability of superparamagnetic nanoparticles in a model of intracellular environment: follow-up of magnetic, structural and chemical properties. Lévy M, Lagarde F, Maraloiu V-A, Blanchin M-G, Gendron F, Wilhelm C, Gazeau F. Nanotechnology. 21, 395103 (2010)
Cell-released microvesicles are vectors for intercellular transfer of magnetic nanoparticles in the monocyte/macrophage system. Luciani N, Wilhelm C, Gazeau F. Biomaterials. 27, 7061-7069 (2010)
Formation of three-dimensional multicellular assembly using magnetic patterning. Frasca G, Gazeau F, Wilhelm C. Langmuir.25, 2348-2354 (2009)
Reactivity of the monocyte/macrophage system to superparamagnetic anionic nanoparticles. Luciani N, Gazeau F, Wilhelm C. J. Mat. Chem.19, 6373 – 6380 (2009)
Magnetic targeting of murine hepatocytes dually labelled with magnetic and fluorescent markers in a liver cell transplant model. Luciani A, Wilhelm C, Autret G, Bruneval P, Rahmouni A, Clément O, Gazeau F. European Radiology.19, 1087-1096 (2009)
Magnetic nanoparticles: internal probes and heaters within living cells. Wilhelm C, Gazeau F. J Mag Mag Mat321, 671-674 (2009).
Monitoring of muscle explants autograft in urethral sphincter by non invasive MRI combined with magnetic labelling. Rivière C, Lecoeur C, Wilhelm C, Roger J, Yiou R, Gazeau F. Biomaterials.30, 6920-6928 (2009)
The importance of particle type selection and temperature control for on-chip free-flow magnetophoresis Tarn MD, Peyman SA, Robert D, Iles A, Wilhelm C, Pamme N. J Mag Mag Mat.321, 4115-4122 (2009)
Out-of-equilibrium microrheology inside living cells. Wilhelm C. Phys. Rev. Lett. 101, 028101 (2008)
Universal cell labelling with anionic magnetic nanoparticles. Wilhelm C, Gazeau F. Biomaterials. 29 : 3161-3174 (2008)
Intracellular trafficking of magnetic nanoparticles to design multifunctional biovesicles. Wilhelm C, Lavialle F, Péchoux C, Tatischeff I, Gazeau F. Small.4 : 577-82 (2008)
Different microtubule motors move early and late endocytic compartments. Loubéry S, Wilhelm C, Hurbain I, Neveu S, Louvard D, Coudrier E. Traffic. 9 : 492-509 (2008)
The effect of magnetic targeting on the uptake of magnetic-fluid-loaded liposomes by human prostatic adenocarcinoma cells. Martina MS, Wilhelm C, Lesieur S. Biomaterials.29, 4137-4145 (2008)
Linear patterning of magnetically labeled Dictyostelium cells for modelling confined development. Frasca G, Raynaud F, Bacri JC, Gazeau F, Wilhelm C. J Phys Cond Matt 20, 204149 (2008)
In vivo imaging of transplanted hepatocytes with a 1.5-T clinical MRI system-initial experience in mice. Luciani A, Parouchev A, Smirnov P, Braga G, Wilhelm C, Gazeau F, Boudechiche L, L’hermine-Coulomb A, Dagher I, Franco D, Rahmouni A, Hadchouel M, Weber A, Clement O. Eur Radiol.18, 59-69 (2008)
In vivo detection of tumour-infiltrating lymphocytes at the single-cell level using 1.5T clinical MRI. Smirnov P, Poirier-Quinot M, Wilhelm C, Lavergne E, Combadière B, Clément O, Darrasse L, Gazeau F. Magn. Res. Med.60, 1292-1297 (2008)
Intracellular heating of living cells through Néel relaxation of magnetic nanoparticles. Fortin JP, Gazeau F, Wilhelm C. Eur. Biophys. J.37 : 223-8 (2008)
Magnetically induced hyperthermia: Size-dependent heating power of Fe~2~O~3~ nanoparticles. Lévy M, Wilhelm C, Siaugue JM, Horner O, Bacri JC, Gazeau F. J Phys Cond Matt.20, 204133 (2008)
Optimizing magnetic nanoparticles design for nanothermotherapy. Gazeau F, Lévy M, Wilhelm C. Nanomedicine.3, 831-844 (2008)
Magnetic control of Dictyostelium aggregation. Wilhelm C, Rivière C, Biais N. Phys Rev E. 75: 041906 (2007)
Magnetic control of vascular network formation with magnetically labeled Endothelial Progenitor Cells. Wilhelm C, Bal L, Smirnov P, Galy-Fauroux I, Clément O, Gazeau F, Emmerich J. Biomaterials. 28 : 3797–3806 (2007)
Pi3-kinase signaling at the rear pole of Entamoeba histolytica regulates magnetically induced mechanotaxis. Rivière C, Marion S, Guillén N, Bacri JC, Gazeau F, Wilhelm C. J. Biomechanics. 40: 64-77 (2007)
Size sorted anionic iron oxide nanomagnets as colloidal mediators for magnetic hyperthermia. Fortin JP, Wilhelm C, Servais J, Ménager C, Bacri JC, Gazeau F. JACS. 129: 2628-2635 (2007)
Magnetic targeting of nanometric magnetic-fluid-loaded liposomes to a specific brain intra-vascular area: a dynamic imaging study in the mouse. Riviere C, Martina MS, Tomita Y, Wilhelm C, Tran Dinh A, Menager C, Pinard E, Lesieur S, Gazeau F, Seylaz J. Radiology. 244: 439-448 (2007)
The influence of PEG-coating of magnetic-fluid-loaded liposomes on their interactions with the macrophage cell-line J774: an in-vitro kinetic study. Martina MS, Nicolas V, Wilhelm C, Ménager C, Barratt G, Lesieur S. Biomaterials. 28 : 4143-4153 (2007)
Internal structure of magnetic endosomes. Rivière C, Wilhelm C, Cousin F, Dupuis V, Gazeau F, Perzynski R. EPJE. 22: 1-10 (2007)
Tumour cell toxicity of intracellular hyperthermia mediated by magnetic nanoparticles. Wilhelm C, Fortin JP, Gazeau F. J. Nanoscience & Nanotechnology. 7 : 2933–2937 (2007)
Continuous sorting of magnetic cells via on-chip free-flow magnetophoresis. Pamme N, Wilhelm C. Lab on a Chip.6: 974-980 (2006)
Magnetic targeting of magnetoliposomes in solid tumors with MRI monitoring in mice-feasibility. Fortin JP, Martina MS, Gazeau F, Ménager C, Wilhelm C, Bacri JC, Lesieur S, Clément O. Radiology. 239: 415-24 (2006)
Single cell detection by gradient echo 9.4 T MRI: a parametric study. Smirnov P, Gazeau F, Beloeil JC, Doan BT, Wilhelm C, Gillet B. Contrast Media & Molecular Imaging. 1: 165-174 (2006)
Fluorescent-Modified Superparamagnetic Nanoparticles : Intracellular Uptake and Use For Cellular Imaging. Bertorelle F, Wilhelm C, Roger J, Gazeau F, Ménager C, Cabuil V. Langmuir. 22: 5385-5391 (2006)
Acto-myosin cytoskeleton dependent viscosity and shear-thinning behavior of the amoeba cytoplasm. Marion S, Guillen N, Bacri JC, Wilhelm C. Eur Biophys J.34 : 262-72 (2005)
Myosin Ib modulates the morphology and the protein transport within multi-vesicular sorting endosomes. Salas Cortes L, Ye F, Tenza D, Wilhelm C, Theos A, Louvard, Raposo G, Coudrier E. J Cell Science.118: 4823-4832. (2005)
Rab8 regulates the actin-based movement of melanosomes. Chabrillat ML, Wilhelm C, Wasmeier C, Sviderskaya EV, Louvard D, Coudrier E. Mol Biol Cell.16, 1640-50 (2005)
Passive versus active local microrheology in mammalian cells and amoebae. Rivière C, Gazeau F, Marion S, Bacri JC, Wilhelm C.Magnetohyd.40, 321–335 (2004).
Overexpression of myosin IB in living Entamoeba histolytica enhances cytoplasm viscosity and reduces phagocytosis. Marion S, Wilhelm C, Voigt H, Bacri JC, Guillen N. J Cell Science. 117, 3271-9 (2004)
Intracellular uptake of anionic superparamagnetic nanoparticles as a function of surface modifications. Wilhelm C, Billotey C, Roger J, Pons JN, Bacri JC, Gazeau F.Biomaterials. 24, 1001-1011 (2003)
Cell internalization of anionic magnetic nanoparticles: quantitative effect on Magnetic Resonance Imaging. Billotey C, Wilhelm C, Bacri JC. Bittoun J, Gazeau F. Magnetic Resonance in Medicine.49, 646-54 (2003)
Rotational magnetic endosomes microrheology: viscoelasticity of the living cell. Wilhelm C, Gazeau F, Bacri JC. Physical Review E.67, 061908 (2003)
Intracellular endosome deformation under magnetic field. Wilhelm C, Cebers A, Bacri JC, Gazeau F. Eur Biophys J32, 655-660 (2003)
Rotational magnetic particles microrheology: the Maxwellian case. Wilhelm C, Browaeys J, Ponton A, Bacri JC. Physical Review E. 67, 011504 (2003)
Magnetophoresis and ferromagnetic resonance of magnetically labeled cells. Wilhelm C, F. Gazeau F, Bacri JC. Eur. Biophys. J.31, 118-125 (2002)
Binding of biological effectors on magnetic nanoparticles measured by a magnetically induced transient birefringence experiment. Wilhelm C, Gazeau F, Roger J, Pons JN, Salis MF, Perzynski R, Bacri JC.[ ]{.smallcaps}Physical Review E. 65, 031404 (2002)
Interaction of anionic superparamagnetic nanoparticles with cells: kinetic analysis of membrane adsorption and subsequent internalization. Wilhelm C, Gazeau F, Roger J, Pons JN, Bacri JC. Langmuir. 18, 8148 (2002)
Local rheological probes for complex fluids: Application to laponite suspensions. Wilhelm C, Elias F, Browaeys J, Ponton A, Bacri JC. Physical Review E. 66, 021502 (2002)
Bacterial extracellular vesicle production in the presence of a cytotoxic chemotherapeutic agent. European Patent Application number EP 26305181.5, filed February 11th, 2026. Wilhelm C , Hainaut T, Honari, H (2026).
Magnetic formation of cell aggregates on-chip. European Patent Application number EP 25305500.8 2025, filed April 04th, 2025. A Van de Walle, A Curcio, S Descroix, Claire Wilhelm (2025)
Method for efficient production of biological particles comprising a viral or virus-like component in baffled rotating vessel. European Patent Application number EP24306529.9, filed sept 17th 2024. B Lapin, ZL Gouveia, F Perez, Wilhelm C (2024).
High-yield extracellular vesicle production from microorganism producer cells under rotating motion in baffled vessel. European Patent Application number EP 24306343.5, filed August 8th 2024. S Lenoir, JE Perez, G Gropplero, Wilhelm C (2024)
High throughput production of extracellular vesicles in a fluidic chip. European Patent Application number EP24305327.9, filed March 4th 2024. E Thouvenot, A Lindner, Wilhelm C (2024)
Method for high throughput production of extracellular vesicles in baffled rotating vessel. European Patent Application number EP 2330543131.1, filed March 28th 2023. WO‑2024‑200570‑A2. JE Perez, Thouvenot E, Gropplero G, Wilhelm C (2023)
Mesenchymal stem cell derived extracellular vesicles loaded with at least one photosensitizer and uses thereof for the treatment of peritoneal carcinomatosis Pocard M, Gazeau F, Marangon I, Pinto A, Silva A, Piffoux M, Wilhelm C. Patent Number: EP4061388A1, Publication Date: 2022-09-28, Application Number: EP20807775.0 (2022)
Extracellular compositions useful for mucosal healing. Rahmi G, Silva AK, Gazeau F, Wilhelm C, Cellier C, Clément O. Patent Number: EP3484485A1, Publication Date: 2019-05-22, Application: EP17748650.3 (2022)
Fluidic system for producing extracellular vesicles comprising a therapeutic or imaging agent and associated method. Marangon I, Millard M, Bolotine L Silva AKA, Grangier A, Gazeau F, Wilhelm C, Piffoux M. Patent Number: EP3902903A1, Publication Date: 2021-11-03, Application Number: EP19850768.3, Publication Date: 2021-11-03 (2021)
Fluidic system for producing extracellular vesicles from cells in suspension and associated method. Grangier A, Silva AKA, Gazeau F, Wilhelm C, Piffoux M, Heslot F. Patent Number: EP3902904A1, Publication Date: 2021-11-03, Application Number: EP19850769.1 (2021)
Fluid system for producing extracellular vesicles and associated method. Silva AKA, Gazeau F, Merten OW, Wilhelm C, Piffoux M. Patent Number: EP3645700A1, Publication Date: 2020-05-06, Application Number: EP18737565.4 (2020)
An in vitro method for obtaining a biohybrid vector. Piffoux M, Wilhelm C, Silva AK, Gazeau F, Tareste D. EP16306163.3 (2016)
Methods for aggregation and differentiation of magnetized stem cells Fayol D, Luciani N, Le Visage C, Gazeau F, Wilhelm C. FR2979634-A1; WO/2013/030393 (2013)
Hybrid Inorganic Magnetic-based Nanostructures: Towards Multitasking Nanoplatforms Figuerola A, Van de Walle A, Pellicer E, Serrà A, Lin M, Wilhelm C, Estrader M. https://doi.org/10.1039/9781837672967-00298; Special Collection: 2024 eBook Collection, Series: Nanoscience & Nanotechnology, p.298 – 329 (2024)
Imaging and therapeutic potential of extracellular vesicles, in Design and Applications of Nanoparticles in Biomedical Imaging Piffoux M, Gazeau F, Wilhelm C, Silva, AKA. Design and Applications of Nanoparticles in Biomedical Imaging, 43-68. (2017)
Medical Applications of Iron Oxide Nanoparticles, in Iron Oxides: From Nature to Applications Silva, AKA, Espinosa A, Kolosnjaj-Tabi J, Wilhelm C, Gazeau F. Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim, Germany. doi: 10.1002/9783527691395.ch18 (2016)
Imaging and manipulating magnetically-labelled cells. In Magnetic Nanoparticles, from fabrication to clinical applications. Gazeau F, Wilhelm C. Nguyen TK Thanh, editor. CRC Press, Taylor and Francis Group (2012)
Technological and translational challenges for extracellular vesicle in therapy and diagnosis. G Van Niel G, Gazeau F, Wilhelm C, Silva AKA, Advanced Drug Delivery Reviews 114025 (2021) Editorial
Magnetic drug carriers: Bright insights from light-responsive magnetic liposomes.Silva AKA, Ménager C, Wilhelm C.Nanomedicine. 10, 2797-2799 (2015) Editorial
Nanoparticules magnétiques au coeur des cellules : des outils pour les thérapies cellulaires. Wilhelm C, Gazeau F. Biologie aujourd’hui, 206, 273-284 (2012)
Nanoparticules et stimuli magnétiques pour l’imagerie médicale et la thérapie. Wilhelm C, Gazeau F. JS’12 Cnam, 103-110 (2012)
De la cellule au tissu, le magnétisme auxiliaire de la biomédecine. Frasca G, Gazeau F, Wilhelm C. Reflets de la Physique. 23, 6-10 (2011)
Magnetic micromanipulation in the living cell. Wilhelm C, Gazeau F, Bacri JC. Europhysics News. 3, 89-92 (2005)
Nanoparticules magnétiques, agents de contraste pour l’Imagerie par Résonance Magnétique. Gazeau F, Wilhelm C, Bacri JC, Clement O. Bulletin de la Société Française de Physique, 145, 7-13 (2004)
Micromanipulations magnétiques dans la cellule vivante. Wilhelm C, Gazeau F, Bacri JC. Bulletin de la Société Française de Physique, 145, 13-17 (2004)
P045 Local administration of extracellular vesicles from adipose-derived stromal cells promote healing in a rat model of radiation colitis–a pilot study. A Sebbagh, N Mathieu, C Demarquay, M Geiger, A Sémont, C Simon, J Branchu, F Milliat, F Gazeau, C Wilhelm, A Silva Brun, G Rahmi. Journal of Crohn’s and Colitis17, i212-i213 (2023)
X-ray nanothermometry to improve anticancer thermal therapies. A Espinosa, GR Castro, J Reguera, C Castellano, J Castillo … APS March Meeting Abstracts 2022, N10. 002.
Magnetic muscular cells to develop an engineering tool at tissue scale: the magnetic stretcher. I Nagle, C Wilhelm, M Reffay Eur Biophysics J Biophys Lett 50, 176 (2021)
High yield and scalable EV production from suspension cells triggered by turbulence in a bioreactor. A Grangier, C Wilhelm, F Gazeau, A Silva. Cytotherapy22, S50 (2020)
Towards extracellular vesicles as versatile biogenic drug delivery system. Piffoux M, Pinto A, Wilhelm C, Pocard M, Gazeau F, Silva AKA, Tareste D. Journal of Extracellular Vesicles7, 193 (2018)
High yield mechanically induced extracellular vesicles display as efficient regenerative effect as their parental mesenchymal stem cells or starvation-induced EVs in vitro and in vivo in a model of chronic heart failure. Marangon I, Piffoux M, Mougenot N, Wilhelm C, Gazeau F, Agbulut O, Silva AKA. Journal of Extracellular Vesicles7, 69 (2018)
Mesenchymal stem cell-derived extracellular vesicles delivered in a thermosensitive gel are effective healing mediators in porcine and murine models of digestive fistula. Rahmi G, Piffoux M, Volatron J, Perrod G, Pidial L, Wilhelm C, Gazeau F, Silva AKA. Journal of Extracellular Vesicles7, 194 (2018)
Functionalization of iron oxide nanoparticles with HSA Protein for Thermal Therapy. Mazario E, Forget A, Belkahla H, Lomas J, Decorse P, Chevillot-Biraud A, Verbeke P, Wilhelm C, Ammar S, El Hage Chahine J-M, Hemadi M. IEEE Transactions on Magnetics, 53, 1-5 (2017)
Magnetic Stem Cell Confinement for Articular Cartilage Repair. Van de Walle A, Faissal W, Du V, Richert A, Gazeau F, Le Visage C, Wilhelm C. Tissue Engineering Part A, 22, S117-S118 (2016)
Biodegradation of Magnetic Nanoparticles During Stem Cells Chondrogenesis: Implications for Regenerative Medicine Applications. Mazuel F, Van de Walle A, Espinosa A, Lalatonne Y, Luciani N, Wilhelm C. Tissue Engineering Part A, 22, S107 (2016)
Magnetic vesicles as MRI–trackable biogenic nanovectors. Silva AKA, Luciani N, Gazeau F, Wilhelm C. Proc. SPIE. Colloidal Nanocrystals for Biomedical Applications VII, 8232, 82320Y1–7 (2012)
Transfer of intracellular magnetic label via cell microvesicles: impact on tracking transplanted labelled cells. Silva Andriola AK, Luciani N, Wilhelm C, Gazeau F. Investigative Radiology, 46, 741 (2012)
Photosensitizer–loaded biogenic magnetic vesicles: an autologous hybrid vector for targeted cancer phototherapy. Silva Andriola AK, Bonneau S, Kolosnjaj–Tabi J, Luciani N, Gazeau F, Wilhelm C. Investigative Radiology, 46, 730 (2012)
Autologous magnetic biogenic vesicles for multimodal anti-tumoral therapy. Silva AKA, Bonneau S, Luciani N, Gazeau F, Wilhelm C. Proceedings of the XIX Conference on Bioencapsulation 78-79, (2011)
Intracellular confinement of magnetic nanoparticles by living cells: Impact for imaging and therapeutic applications. Gazeau F, Levy M, Wilhelm C. AIP Conference Proceedings.1330, 19-22 (2011)
Numerical simulations of vesicular driving forces inside living cells. Robert D, Wilhelm C. IFMBE Proceedings,31, 1083-1086 (2010)
Effective temperature inside living cells. Wilhelm C. Mater. Res. Soc. Symp. Proc.1227, JJ05-03 (2010)
Temperature-based tuning of magnetic particle separations. Tarn MD, Robert D, Peyman SA, Iles A, Wilhelm C, Pamme N. Tae Song Kim et al. (eds), Chemical and Biological Microsystems Society, 1449 (2010)
Cell-derived magnetic microvesicles as multifunctional vectors. Gazeau F, Smirnov P, Wilhelm C. Contrast Media & Molecular Imaging, 2, 298 (2007).
Non-invasive contrast-enhanced three-dimensional high-resolution MRI of cell seeding in biomaterial scaffolds designed for tissue engineering. Poirier-Quinot M, Frasca G, Wilhelm C, Dubuisson R-M, Le Visage C, Letourneur D, Darrasse L, Gazeau F. Contrast Media & Molecular Imaging, 2, 299 (2007).
Use of magnetic nanoparticles as intracellular agents for hyperthermia. Fortin JP, Wilhelm C, Gazeau F, Servais J, Talbot D, Ménager C, Bacri JC. Contrast Media & Molecular Imaging, 1, 56 (2006).
PEGylated and fluorescent superparamagnetic liposomes provide a promising tool for combining in vivo imaging and therapy. Lesieur S, Martina MS, Plassat V, Fortin JP, Rivière C, Barratt G, Ménager C, Clément O, Wilhelm C, Gazeau F, Tomita Y, Seylaz J. Contrast Media & Molecular Imaging, 1, 59 (2006).
Detection of single cells by high-field MRI. Gazeau F, Smirnov P, Fortin JP, Wilhelm C, Gillet B. Contrast Media & Molecular Imaging, 1, 76 (2006).
Continuous Sorting of magnetic cells via on-chip free-flow magnetophoresis. Pamme N, Wilhelm C. Proceedings of the 9th µTAS Boston, USA, ISBN 0-9743611-1-9, 1389 (2005)
NanoTech France. Paris, June 25-27 (2025). Remote Cellular Manipulation Using Magnetic Nanoparticles for Tissue Engineering and Stimulation. Keynote
11th International Conference on Multiscale Materials Modeling (MMM-11). Prague, Czech Republic, Sept 22-27 (2024). Magnetic Instructive Tools to Engineer and Stimulate Model Tissues. Plenary
Conf plenieres ISCR. Rennes, Dec 05 (2024). Magnetic-Based Tools for the Engineering and Stimulation of Model Tissues, and their Therapeutic Evaluation.
Scientific and clinical application of magnetic carriers – 14th. Barcelona, Spain, June 17-21 (2024). Magnetic Nanoparticles as Instructive Tools for Engineering, Stimulation, and Treatment of Model Tissues. Keynote
Séminaire Institut Galien, groupe de travail « Développement de modèles prédictifs pour simuler le comportement des vecteurs dans les milieux biologiques (tissulaires, cellulaires et sous-cellulaires). 22/05/2024
Conférence plénière à l’Institut des sciences chimiques de Rennes, 05 décembre (2024).
3rd edition Symposium tribute to Maxime Dahan. Paris, France, Dec 14-15 (2023). Magnetic Tissue Engineering.
33rd Annual Conference of the European Society for Biomaterials (ESB). Davos, Switzerland, Sept 4-8 (2023). Magnetic approaches to engineer and stimulate model tissues. Keynote
NanoTech Poland. Poznań, Poland, June 14-16 (2023). Nanoparticles-based magnetic approaches for medical applications: biodegradation follow-up, tissue engineering, and cancer therapy. Plenary
12ième congrés annuel de l’AMPS. Institut Imagine, Paris, July 7-9 (2023). Magnetic tools in oncology and regenerative medicine. Plenary
PSL Soft and Living Matter days. Paris, July 3-6 (2023). Magnetic tissue engineering. Keynote
Kick-off meeting of the INSTITUT PITOR (Paris Institute for Transplantation & Organ Regeneration). Paris, May 31st (2023). Organ model and organ-on-a-chip. Keynote
13° Meeting on Nanoscience Advances. Porquerolles, Sept 26-29 (2022). Magnetic nanoparticles as instructive and therapeutic tools in cancer and regenerative medicine. Plenary
Biointerfaces International Conference, Zurich, Switzerland, Sept 12-15 (2022). Magnetic spheroids and tissue engineering. Invited
Microphysio conference. Cargese, April 11-15 (2022). Nano-magnetic-instructive tools to engineer and stimulate model tissues?
Joint European Magnetism Symposia Conference JEMS. Warsaw, Poland, July 24-29 (2022). Magnetic Nanoparticles – Mediated Cancer Therapies and Magnetic Tissue Engineering. Keynote
MagnetismMeet2022. Virtual, April 18-20 (2022). The Use of Magnetic Nanoparticles in Tissue Engineering: An Alternate Magnetic Bioprinting Strategy? Magnetic Nanoparticles – Mediated Cancer Therapies and Magnetic Tissue Engineering. Keynote
Séminaire ICFP. Paris, le 5 novembre (2022).
Séminaire Recherche « L’ingénieur et la recherche en santé ». Mines Paris, le 22 novembre (2022).
NanoTech 2021. Virtual, June 23-25 (2021). The interplay of efficiency and biodegradation for inorganic nanohybrids in cancer or regenerative therapies. Invited
GSEMMM 2021. Virtual, Sept 20-22 (2021). Recent Insights in Magnetic Nanoparticles-based Biomedical Applications: Combined Cancer Therapy, Regenerative Approaches, and Long-Term Biological Fate. Keynote
Conférence Nanomatériaux ESCOM – UTC, Compiègne, Sept 22 (2021). Internalisation de nanoparticules au coeur des cellules : vers des traitements non invasifs et à distance pour la médecine régénérative et l’oncologie.
iSiM 2021 Sorbonne University, July 06 (2021). Efficiency and/or biodegradation of inorganic nanoparticles in combined cancer therapy and tissue engineering. Keynote
NALS (Nanomaterials Applied to Life Science) 2020. Madrid, Spain, Jan 29-31 (2020). Thermal therapies with magnetic and plasmonic nanoparticles and long-term fate in the intracellular environment. Plenary
IMPC, FR 2482, 30 novembre (2020). Nanoparticles-mediated magnetic and plasmonic tools for cancer therapy and tissue engineering, and the underlying corollary of the nanoparticles long-term biological fate.
IPGG, 14 novembre (2020). Inorganic nanoparticles as remote tools for cancer therapy or tissue engineering, and the issue of their long-term intracellular fate.
Institut Curie, UMR 168, 17 juin (2020). The use and intracellular fate of magnetic nanoparticles in combined cancer therapy and tissue engineering.
NanoBioTech. Montreux, Switzerland, Nov 16-18 (2019). The use and intracellular fate of magnetic nanoparticles in combined cancer therapy and tissue engineering. Keynote
Biomechanics from cells to tissues. CentraleSupélec, Nov 8 (2019). Magnetic nanoparticles in biomedical research: from nano-heaters to force mediators.
EACR conference. Nanotechnology in Cancer: Engineering for Oncology. Cambridge, UK, Sept 12-14 (2019). Optimal application windows for magnetic hyperthermia, photothermia, and magneto-photo-thermia with magnetic and plasmonic nanoparticles, in cancer treatment.
ICMF 2019. Paris, July 8-12 (2019). Magneto- and photo-responsive nanoparticles in cell therapy, for tissue regeneration or for cancer treatment.
SEBBM 2018. Santander, Spain, Sept 10-13 (2018). Potential of inorganic magnetic and/or plasmonic nanohybrids for magneto-photo-thermal cancer therapy and for magnetically-guided tissue engineering.
Gold 2018. Paris, July 15-19 (2018). Magnetic hyperthermia or photothermia? Progressive comparison between magnetic and plasmonic nanoparticles heating, and role of the (intra)cellular environment. Keynote
Séminaire général du Service de Physique de l’Etat Condensé, CEA-Saclay, 28 novembre (2018). Contribution of magnetic and plasmonic nanoparticles to medicine.
Séminaire LLR (Ecole Polytechnique), Palaiseau, 4 juin (2018). Magnetic and plasmonic nanoparticles applications in medicine.
Commission DAS Médecine Régénératrice et Biomatériaux, Paris, 7 juin (2018). Ingénierie tissulaire magnétique: une alternative au bioprinting.
NanoSpain, San Sebastian, Spain, March 7-9 (2017) (Intra)cellular therapies using magnetic and/or plasmonic nanoparticles: from thermal cancer treatments to tissue engineering and biotransformations. Keynote
CFCL2017: Colloque sur les Systèmes Anisotropes Auto-organisés, Lyon, France, Sept 15-18 (2017) Inorganic magnetic and/or plasmonic nanohybrids in cell therapies: from physical oncology to magnetically-guided tissue engineering.
Bioprinting workshop. Centre Hepato-Biliaire – Hôpital Paul-Brousse, Villejuif, France, May 18 (2017) Tissue engineering with magnetic nanoparticles-loaded cells: an alternative to bio-printing?
Tissue engineering and regenerative medicine: repair, maintain or enhance. Ecole de l’INSERM Liliane Bettencourt, Sèvres, France, March 17-19 (2017) Magnetic tissue engineering
SFnano annual meeting, Paris, Dec 12-14 (2016) Magnetic and plasmonic thermal approaches for cancer therapy
PhysBio2016, 3rd International Conference on Physics & Biological Systems, Ecole Polytechnique, Oct 24-26 (2016). How can physics contribute to nanomedicine? Focus on thermal cancer nano-therapies and magnetic tissue engineering
Lipids, Nanotechnology & Cancer, Tours, Oct 10-12 (2016). Magnetic and plasmonic thermal approaches for cancer therapy
ICONAN, International Conference in Nanomedicine and Nanobiotechnology, Paris, Sept 28-30 (2016). Magnetic nanoparticles in cell therapies: from combined approaches in cancer treatment to magnetic tissue engineering. Keynote.
JMC15, Bordeaux, 24-26 aout (2016) Keynote. Magnetic (and plasmonic) approaches to nanomedicine: from thermal cancer therapies to tissue engineering
Colloque du Collège de France : Interfaces chimie des matériaux-biologie-médecine. Paris, 18 février (2016) Nanoparticules et thérapies multiples : efficacité des traitements et devenir en environnement biologique
Séminaire « Matière molle : organisation et dynamique » de l’INSP, Paris, 1er juin (2016). Nanothérapies magnétiques: de l’hyperthermie anticancéreuse à l’ingénierie tissulaire.
Séminaire de Chimie Autour des Nanosciences (SCAN), Paris, 27 mai (2016). Nanoparticules magnétique et plasmoniques pour les thérapies cellulaires.
Les Conférences de l’Institut de Physique de Rennes. Rennes – France, Sept 23 (2014) Nanoparticules magnétiques pour l’étude du vivant et les thérapies cellulaires
SOFT-FIRE Cargese – FRANCE, July 29- Aug 4 (2014) Bionanomagnetism.
ERMR Grenada – SPAIN, July 7-11 (2014) Building and imaging tissues with magnetic cells. Keynote.
Workshop on Biophysical Approaches to the Study of Pathogens Collège de France, June 24-25 (2014) Magnetic nanoparticles for cellular and intracellular manipulations
Regards de physiciens Paris-FRANCE, 7 février (2014) Exploration et manipulation du vivant avec des nano-aimants.
Séminaire de la fondation Nanosciences, Grenoble, 17 juillet (2014). Magnetic nanoparticles for cell imaging, tissue engineering, cell therapies and to engineer biogenic therapeutic nanovectors.
Séminaire du laboratoire Gulliver, Paris, 12 mai (2014). Magnetic nanoparticles as cellular labels: cell imaging, tissue engineering, fate and intercellular transfer.
Lecture series on « Drug Discovery and Development », Zurich – SWITZERLAND, March 19 (2014). Magnetism for tissue engineering and drug delivery applications
Séminaire du LVTS U1148, Paris, 14 février (2014). Des techniques magnétiques pour l’imagerie, la thérapie cellulaire, et l’ingénierie tissulaire.
Imagine Nano Bilbao – SPAIN, April 23-26 (2013) Biomedical applications of magnetic nanoparticles : from cell imaging to tissue engineering.
Symposium on nanoparticle-based technologies for cell tracking Liverpool – UK, July 1-2 (2013) Fate and intercellular transfer of magnetic nanolabels.
Physics-Biology interface seminar, Orsay, May 31 (2013). Magnetic living cells: New tools for cell imaging, tissue engineering and cell therapies.
Séminaire du LPEM Paris – FRANCE, 27 mai (2013) Magnetic cell labelling: Managing magnetic nanoparticle aggregation and cellular uptake.
Stage COLLOIDES SANOFI Paris – FRANCE, 15-16 mai (2013) Nanoparticules magnétiques: Pénétration dans des cellules – Propriétés physiques : guidage par des champs magnétiques, hyperthermie en champ alternatif, agents de contrastes IRM.
Joint European Magnetic Symposia JEMS Parma – ITALY, Sept 10-14 (2012). Magnetic living cells: new tools in biomedicine.
Special day for Catherine Murphy Bobigny-FRANCE, July 3 (2012). Magnetic cell labeling for theranostics and tissue engineering.
Cell Model Systems (CMS) Rome – ITALY, June 11-15 (2012). Intracellular uptake of magnetic nanoparticles for applications in biomedicine.
EMCMRE-1. Marrakech – MOROCCO, Nov 21-25 (2011). Keynote. Magnetic nanomaterials as multifunctional vectors with promising potential for diagnosis and therapy.
2ème Journée Interface Physique-Chimie-Biologie de Paris 7 Paris – FRANCE, Dec 12 (2011). Nanoparticules magnétiques pour l’hyperthermie, les thérapies ciblées et l’ingénierie tissulaire.
6émes Journées Scientifiques du Pole Lorrain d’Ingénierie du Cartilage. Nancy – FRANCE, Oct 12-13 (2011). Magnetic nanoparticles for cell imaging and manipulation, with new prospects in tissue engineering.
IFSMB. Nanotechnologies : Applications biomédicales. Villejuif – FRANCE, May 25 (2011). Des nano-aimants au cœur des cellules pour les imager, les manipuler ou les chauffer
Conférence universitaire de science pharmaceutique. Geneva University. Geneva- SWITZERLAND, Sept 7 (2011). Imaging and manipulating magnetically labelled cells: impact for diagnosis and therapies.
Séminaire duLaboratoire d’Optique et Biosciences, Ecole Polytechnique, Palaiseau, 18 février (2010). Applications biomédicales des nanoparticules magnétiques : micromanipulations intracellulaires, imagerie, vectorisation et hyperthermie thérapeutiques.
Seminar of the department of biochemistry, Geneva – SWITZERLAND, January 14 (2009). Intracellular magnetic nanoparticles for biophysical and biomedical strategies.
Séminaire du PMMH, Paris, 9 janvier (2009). Des aimants au coeur de la cellule : mécanique intracellulaire, migration sous force, hyperthermie thérapeutique.
Séminaire du laboratoire Mécanique Physique, Bordeaux, 6 juin (2008). Microrhéologie de l’intérieur de la cellule vivante.
Workshop «Biomaterial, Biomimetism, Material for medical applications». Strasbourg – FRANCE, Oct 5 (2010). Iron oxide nanoparticles as multifunctional biomaterials
International School of Nanosciences. Domaine du Tremblay – FRANCE, June 20-25 (2010). Internalisation of magnetic nanoparticles inside living cells for biomedical strategies
Hot Topics in Molecular Imaging – TOPIM2010. Bardennochia – ITALY. Feb 7 – 12 (2010). Intracellular magnetic nanoparticles to image and manipulate the cell.
MRS. Symposium JJ : Multiscale Dynamics in Confining Systems. Boston – USA. Nov 30 – Dec 3 (2009). Non equilibrium force fluctuations on magnetic probes inside living cells.
Nano-objets pour l’imagerie du vivant. Cachan – FRANCE. 24-25 septembre (2009). Nanoparticules magnétiques intracellulaires : traceurs pour l’imagerie, vecteurs manipulables à distance ou nanosources de chaleur.
Journée scientifique de l’axe Electronique de Spin (EdS) – C’Nano IdF. Versailles – FRANCE. 26 mai (2009). Des nanoparticules magnétiques au coeur des cellules vivantes : sondes intracellulaires, activateurs pour manipuler à distance les cellules, sources de chaleur intracellulaires, traceurs pour l’imagerie cellulaire IRM.
Workshop on magnetic nanostructures. Augustów – POLAND. June 27 – July 2 (2008). Magnetic labeling of living cells for cellular magnetic manipulations, MRI cell imaging and therapeutic hyperthermia.
Moscow International Symposium on Magnetism (MISM 2008). Moscow – RUSSIA. June 21-25 (2008). Magnetic nanoparticles for biomedical strategies.
4th conference Edmond de Rothschild. IBPC, Paris – FRANCE. June 20 (2008). Magnetic endosomes and phagosomes.
Workshop on magnetic Nanosystems for Biotechnology and Medicine. Madrid – SPAIN. June 25-26 (2007). Biomedical strategies using intracellular magnetic nanoparticles.
Conférences expérimentales grand public. ESPCI – Espace des sciences de Paris. 19 mars (2007). Des nano-aimants au coeur du vivant.
Séminaire du Magistère Interuniversitaire de Physique de l’ENS. 19 février (2008). Des aimants au coeur du vivant.
Séminaire du laboratoire PMCN, Lyon, 14 sept (2007). Des nano-aimants au coeur de la cellule : guidage magnétique et micro-manipulations intracellulaires.
Séminaire du laboratoire U2R2M. Orsay, 16 mai (2007). Des nano-aimants au cœur du vivant.
Séminaire de physique statistique de l’ENS. Paris, 16 février (2005). Contrôle magnétique de la migration cellulaire.
2nd International Symposium on Bioscience and Nanotechnology. Tokyo – JAPAN. November 14-15 (2004). Magnetic micromanipulations of the living.
Workshop on magnetic forces in NANO and BIOTECHNOLOGIES. Riga – LATVIA. September 16-18 (2004). Movement and magnetic micromanipulations inside living cell.
Journée du comité d’interface INSERM Imagerie moléculaire, HEGP, Paris – FRANCE, 25 avril (2004). Marquage magnétique cellulaire et micromanipulations magnétiques.
Journée inter–IFR Imagerie, Université Paris 5, Paris – FRANCE, 12 avril (2004). Marquage cellulaire magnétique.
Développement d’une nouvelle sonde intracellulaire: l’endosome magnétique. Congrès de la Société Française de Physique, Lyon, 7-10 juillet (2003).