Nanomaterials interact with cells and modify their function and biology. Manufacturing this ability can provide tissue-engineering scaffolds with nanostructures able to influence tissue growth and performance. Carbon nanotube compatibility with biomolecules motivated ongoing interest in the development of biosensors and devices including such materials. More recently, carbon nanotubes have been applied in several areas of nerve tissue engineering to study cell behavior or to instruct the growth and organization of neural networks. To gather further knowledge on the true potential of future constructs, in particular to assess their immune-modulatory action, we evaluate carbon nanotubes interactions with human dendritic cells (DCs). DCs are p...
AbstractInteraction between the complement system and carbon nanotubes (CNTs) can modify their inten...
Engineered nanomaterials are increasingly being used for commercial purposes and especially for biom...
The therapeutic application of nanomaterials requires that they are biocompatible and can reach the...
Nanomaterials interact with cells and modify their function and biology. Manufacturing this ability ...
Nanomaterials interact with cells and modify their function and biology. Manufacturing this ability ...
Nanomaterials interact with cells and modify their function and biology. Manufacturing this ability ...
Nanomaterials interact with cells and modify their function and biology. Manufacturing this ability ...
In view of the broad potential biomedical applications of carbon nanotubes (CNTs) different studies ...
Carbon nanotubes (CNTs) are recognized as promising nanomaterials for technological advancement. How...
Nanoparticles are attractive drug delivery vehicles for targeted organ-specific as well as systemic ...
It has been recently proposed that nanomaterials, alone or in concert with their specific biomolecul...
Carbon-based nanomaterials including carbon nanotubes (CNTs) have been shown to trigger inflammation...
AbstractInteraction between the complement system and carbon nanotubes (CNTs) can modify their inten...
Engineered nanomaterials are increasingly being used for commercial purposes and especially for biom...
The therapeutic application of nanomaterials requires that they are biocompatible and can reach the...
Nanomaterials interact with cells and modify their function and biology. Manufacturing this ability ...
Nanomaterials interact with cells and modify their function and biology. Manufacturing this ability ...
Nanomaterials interact with cells and modify their function and biology. Manufacturing this ability ...
Nanomaterials interact with cells and modify their function and biology. Manufacturing this ability ...
In view of the broad potential biomedical applications of carbon nanotubes (CNTs) different studies ...
Carbon nanotubes (CNTs) are recognized as promising nanomaterials for technological advancement. How...
Nanoparticles are attractive drug delivery vehicles for targeted organ-specific as well as systemic ...
It has been recently proposed that nanomaterials, alone or in concert with their specific biomolecul...
Carbon-based nanomaterials including carbon nanotubes (CNTs) have been shown to trigger inflammation...
AbstractInteraction between the complement system and carbon nanotubes (CNTs) can modify their inten...
Engineered nanomaterials are increasingly being used for commercial purposes and especially for biom...
The therapeutic application of nanomaterials requires that they are biocompatible and can reach the...