Nanoparticles (NPs), due to their size-dependent physical and chemical properties, have shown remarkable potential for a wide range of applications over the past decades. Particularly, the biological compatibilities and functions of NPs have been extensively studied for expanding their potential in areas of biomedical application such as bioimaging, biosensing, and drug delivery. In doing so, surface functionalization of NPs by introducing synthetic ligands and/or natural biomolecules has become a critical component in regard to the overall performance of the NP system for its intended use. Among known examples of surface functionalization, the construction of an artificial cell membrane structure, based on phospholipids, has proven effecti...
International audienceBeing the base element of cell membranes, lipid bilayers are an essential ingr...
The immobilization of membrane-bound molecules on organic-inorganic cholesteryl-succinyl silane (CSS...
The engineering of future generations of nanodelivery systems aims at the creation of multifunctiona...
Nanoparticles (NPs), due to their size-dependent physical and chemical properties, have shown remark...
Multifunctional polymeric nanoparticles are materials with great potential for a wide range of biome...
Cell membrane coated nanoparticles (NPs) is a biomimetic strategy developed to engineer therapeutic ...
In terms of the extremely small size and large specific surface area, nanomaterials often exhibit un...
The nanodelivery of biomolecules offers several benefits compared with use of the same compounds in ...
Nanoparticle drug delivery has revolutionized the way we think of disease treatment over the last de...
The advent of nanomedicine has had a tremendous impact on patient outcomes in the clinic. At the nan...
Nanomedicine is a speedily growing area of medical research that is focused on developing nanomateri...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
The advent of nanoparticle-based delivery systems has made a significant impact on clinical patient ...
Engineered nanoparticles (NPs) are nanoscale materials with unique physicochemical properties compar...
Nanoparticulate platforms have contributed significantly to the field of biomedical research, demons...
International audienceBeing the base element of cell membranes, lipid bilayers are an essential ingr...
The immobilization of membrane-bound molecules on organic-inorganic cholesteryl-succinyl silane (CSS...
The engineering of future generations of nanodelivery systems aims at the creation of multifunctiona...
Nanoparticles (NPs), due to their size-dependent physical and chemical properties, have shown remark...
Multifunctional polymeric nanoparticles are materials with great potential for a wide range of biome...
Cell membrane coated nanoparticles (NPs) is a biomimetic strategy developed to engineer therapeutic ...
In terms of the extremely small size and large specific surface area, nanomaterials often exhibit un...
The nanodelivery of biomolecules offers several benefits compared with use of the same compounds in ...
Nanoparticle drug delivery has revolutionized the way we think of disease treatment over the last de...
The advent of nanomedicine has had a tremendous impact on patient outcomes in the clinic. At the nan...
Nanomedicine is a speedily growing area of medical research that is focused on developing nanomateri...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
The advent of nanoparticle-based delivery systems has made a significant impact on clinical patient ...
Engineered nanoparticles (NPs) are nanoscale materials with unique physicochemical properties compar...
Nanoparticulate platforms have contributed significantly to the field of biomedical research, demons...
International audienceBeing the base element of cell membranes, lipid bilayers are an essential ingr...
The immobilization of membrane-bound molecules on organic-inorganic cholesteryl-succinyl silane (CSS...
The engineering of future generations of nanodelivery systems aims at the creation of multifunctiona...