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2. Engineering conductive protein films through nanoscale self-assembly and gold nanoparticles doping

3. Engineering conductive protein films through nanoscale self-assembly and gold nanoparticles doping

4. Iron oxide nanoparticles as carriers for DOX and magnetic hyperthermia after intratumoral application into breast cancer in mice: impact and future perspectives

5. Iron oxide nanoparticles as carriers for DOX and magnetic hyperthermia after intratumoral application into breast cancer in mice: impact and future perspectives

6. The phenotype of target pancreatic cancer cells influences cell death by magnetic hyperthermia with nanoparticles carrying gemicitabine and the pseudo-peptide NucAnt

7. The phenotype of target pancreatic cancer cells influences cell death by magnetic hyperthermia with nanoparticles carrying gemicitabine and the pseudo-peptide NucAnt

9. Assembly of designed protein scaffolds into monolayers for nanoparticle patterning

15. Multifunctionalized iron oxide nanoparticles for selective drug delivery to CD44-positive cancer cells

17. Engineering Iron Oxide Nanoparticles for Clinical Settings

18. Carbohydrate-Porphyhrin Conjugates with Two-Photon Absorption Properties as Potential Photosensitizing Agents for Photodynamic Therapy

20. Efficient treatment of breast cancer xenografts with multifunctionalized iron oxide nanoparticles combining magnetic hyperthermia and anti-cancer drug delivery

22. Nanoparticules multifonctionnelles pour des applications biomédicales - 6ème journée CLARA

25. Engineering Iron Oxide Nanoparticles for Clinical Settings

30. Multifunctional ultrasmall nanoplatforms for vascular-targeted interstitial photodynamic therapy of brain tumors guided by real-time MRI.

31. Preparation, characterization, and cellular studies of photosensitizer-loaded lipid nanoparticles for photodynamic therapy

32. The phenotype of target pancreatic cancer cells influences cell death by magnetic hyperthermia with nanoparticles carrying gemicitabine and the pseudo-peptide NucAnt.

34. Engineering conductive protein films through nanoscale self-assembly and gold nanoparticles doping.

35. Iron Oxide Nanoparticles as Carriers for DOX and Magnetic Hyperthermia after Intratumoral Application into Breast Cancer in Mice: Impact and Future Perspectives.

36. The phenotype of target pancreatic cancer cells influences cell death by magnetic hyperthermia with nanoparticles carrying gemicitabine and the pseudo-peptide NucAnt.

37. Assembly of designed protein scaffolds into monolayers for nanoparticle patterning.

38. Multifunctionalized iron oxide nanoparticles for selective drug delivery to CD44-positive cancer cells.

39. Designed Repeat Proteins as Building Blocks for Nanofabrication.

40. Biomolecular templating of functional hybrid nanostructures using repeat protein scaffolds.

41. Efficient treatment of breast cancer xenografts with multifunctionalized iron oxide nanoparticles combining magnetic hyperthermia and anti-cancer drug delivery.

42. Multifunctional ultrasmall nanoplatforms for vascular-targeted interstitial photodynamic therapy of brain tumors guided by real-time MRI.

43. Multifunctionalization of magnetic nanoparticles for controlled drug release: a general approach.

44. Engineering Iron Oxide Nanoparticles for Clinical Settings.

45. Functionalized silica-based nanoparticles for photodynamic therapy.

46. Triazinyl porphyrin-based photoactive cotton fabrics: preparation, characterization, and antibacterial activity.

47. Silicalites and Mesoporous Silica Nanoparticles for photodynamic therapy.

48. From public to occupational health: towards an inverse push-pull paradigm in nanotechnologies innovation.

49. Silica-based nanoparticles for photodynamic therapy applications.

50. Mannose-targeted mesoporous silica nanoparticles for photodynamic therapy.

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