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https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3747665/
NV are thus quasi-soluble, delivery systems for intracellular delivery as contrasted to microparticulate and other macroscopic vehicles (polymeric scaffolds, etc.) typically used for a slow-release of drugs. The macroscopic vehicles are, as a matter of distinction from NV, not taken up by cells and internalized and sorted into different organelles or cytoplasm where they exert their function.Author: Ales Prokop, Jeffrey M. Davidson
https://www.sciencedirect.com/science/article/pii/S0022354916363250
NV are thus quasi-soluble, delivery systems for intracellular delivery as contrasted to microparticulate and other macroscopic vehicles (polymeric scaffolds, etc.) typically used for a slow-release of drugs. The macroscopic vehicles are, as a matter of distinction from NV, not taken up by cells and internalized and sorted into different organelles or cytoplasm where they exert their function.Author: Ales Prokop, Jeffrey M. Davidson
https://www.ncbi.nlm.nih.gov/pubmed/18200527
This article provides an overview of principles and barriers relevant to intracellular drug and gene transport, accumulation and retention (collectively called as drug delivery) by means of nanovehicles (NV). The aim is to deliver a cargo to a particular intracellular site, if possible, to exert a local action.Author: Ales Prokop, Jeffrey M. Davidson
https://www.sciencedirect.com/science/article/abs/pii/S0022354916363250
NVs are contrasted to micro-delivery and current nanotechnologies which are already in commercial use. Newer developments in NV technologies are outlined and future applications are stressed. We also briefly review the existing modeling tools and approaches to quantitatively describe the behavior of targeted NV within the vascular and tumor compartments, an area of particular importance.Author: Ales Prokop, Jeffrey M. Davidson
https://onlinelibrary.wiley.com/doi/10.1002/jps.21270
This article provides an overview of principles and barriers relevant to intracellular drug and gene transport, accumulation and retention (collectively called as drug delivery) by means of nanovehicles (NV). The aim is to deliver a cargo to a particular intracellular site, if possible, to exert a local action.Author: Ales Prokop, Jeffrey M. Davidson
https://www.researchgate.net/publication/5650091_Nanovehicular_Intracellular_Delivery_Systems
Nanovehicular Intracellular Delivery Systems. This article provides an overview of principles and barriers relevant to intracellular drug and gene transport, accumulation and retention (collectively called as drug delivery) by means of nanovehicles (NV).
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