The utilization of nanomaterials in the biological and medical field is quickly progressing, particularly in areas where traditional diagnostics and treatment approaches have limited success. The success of nanomaterials in medical products such as biomedical implants, wound dressings and drug delivery systems rely upon their effective interaction between the extracellular matrix, cells, and intracellular components. Upon contact with mammalian cells, nanoparticles (NPs) begin to interact with the extracellular matrix, cell membrane, cytoplasmic proteins, nucleus, and other cellular organelles, which result in nanoparticle internalization and subsequent cellular responses. Such responses elicited by the mammalian cells as a result of the ce...
The use of nanoparticles (NP) in diagnosis and treatment of many human diseases, including cancer, i...
The use of nanoparticles (NP) in diagnosis and treatment of many human diseases, including cancer, i...
Nano-sized materials have great potential as drug carriers for nanomedicine applications. Thanks to ...
The application of nanobiomaterials in biomedical field is rapidly processing, especially in the are...
Nanoparticles (NPs) are used extensively in drug delivery. They are administered through various rou...
Progress in the field of nanoparticles has enabled the rapid development of multiple products and t...
Colloidal nanoparticles designed for the interactions with cells are very small, nanoscale objects u...
The explosion of study of nanomaterials in biological applications (the nano–bio interface) can be a...
The explosion of study of nanomaterials in biological applications (the nano–bio interface) can be a...
Nanoparticles have great potential for drug delivery (nanomedicine), because of their size (few to h...
Nanoparticles have great potential for drug delivery (nanomedicine), because of their size (few to h...
Nanoparticles have great potential for drug delivery (nanomedicine), because of their size (few to h...
Nanoparticles have great potential for drug delivery (nanomedicine), because of their size (few to h...
Abstract Nanomaterials (NMs) have abundant applications in areas such as electronics, energy, enviro...
The use of nanoparticles (NP) in diagnosis and treatment of many human diseases, including cancer, i...
The use of nanoparticles (NP) in diagnosis and treatment of many human diseases, including cancer, i...
The use of nanoparticles (NP) in diagnosis and treatment of many human diseases, including cancer, i...
Nano-sized materials have great potential as drug carriers for nanomedicine applications. Thanks to ...
The application of nanobiomaterials in biomedical field is rapidly processing, especially in the are...
Nanoparticles (NPs) are used extensively in drug delivery. They are administered through various rou...
Progress in the field of nanoparticles has enabled the rapid development of multiple products and t...
Colloidal nanoparticles designed for the interactions with cells are very small, nanoscale objects u...
The explosion of study of nanomaterials in biological applications (the nano–bio interface) can be a...
The explosion of study of nanomaterials in biological applications (the nano–bio interface) can be a...
Nanoparticles have great potential for drug delivery (nanomedicine), because of their size (few to h...
Nanoparticles have great potential for drug delivery (nanomedicine), because of their size (few to h...
Nanoparticles have great potential for drug delivery (nanomedicine), because of their size (few to h...
Nanoparticles have great potential for drug delivery (nanomedicine), because of their size (few to h...
Abstract Nanomaterials (NMs) have abundant applications in areas such as electronics, energy, enviro...
The use of nanoparticles (NP) in diagnosis and treatment of many human diseases, including cancer, i...
The use of nanoparticles (NP) in diagnosis and treatment of many human diseases, including cancer, i...
The use of nanoparticles (NP) in diagnosis and treatment of many human diseases, including cancer, i...
Nano-sized materials have great potential as drug carriers for nanomedicine applications. Thanks to ...