The most challenging phase in the clinical translation of drugs is the complex process of screening various drugs and evaluating their therapeutic effects in vitro and in vivo. Microfluidic models have been recognized as an interesting alternative to animal models for drug screening. Enhanced permeation and retention (EPR) effect is one of the most widely used standard for drug delivery in solid tumors with high vascular density and active angiogenesis. The nascent blood vessels in the tumor vicinity have large gaps between the endothelial junctions which allow nanoparticles to pass through them, resulting in selective extravasation and passive accumulation in the tumor regions. In this study, an attempt has been made to mimic some of the p...
Traditional chemotherapy for cancer treatment often elicits dangerous side-effects and limits the do...
Metastatic dissemination of cancer cells is a very complex process. It includes the intravasation of...
Delivery of therapeutic agents selectively to tumor tissue, which is referred as "targeted delivery,...
The Enhanced Permeation and Retention (EPR) Effect is one of the mechanisms widely utilized for the ...
We performed a computational fluid dynamics simulation to study the flow of nanoparticles in a micro...
The development of nanoparticle-based targeted therapeutics for the treatment of cancer requires a w...
The development of nanoparticle-based targeted therapeutics for the treatment of cancer requires a w...
The development of nanoparticle-based targeted therapeutics for the treatment of cancer requires a w...
Advances in nanotechnology have enabled numerous types of nanoparticles (NPs) to improve drug delive...
Nanocarriers for drug delivery have great potential to revolutionize cancer treatment, due to their ...
Nanoparticle tumor accumulation relies on a key mechanism, the enhanced permeability and retention (...
Nanoparticle tumor accumulation relies on a key mechanism, the enhanced permeability and retention (...
Microfluidic technology has led to the development of advanced in vitro tumor platforms that overcom...
The effectiveness of nanoparticles (NP) in nanomedicine depends on their ability to extravasate from...
In this thesis, microfluidic systems which mimic blood vessels and tumour areas are developed to bri...
Traditional chemotherapy for cancer treatment often elicits dangerous side-effects and limits the do...
Metastatic dissemination of cancer cells is a very complex process. It includes the intravasation of...
Delivery of therapeutic agents selectively to tumor tissue, which is referred as "targeted delivery,...
The Enhanced Permeation and Retention (EPR) Effect is one of the mechanisms widely utilized for the ...
We performed a computational fluid dynamics simulation to study the flow of nanoparticles in a micro...
The development of nanoparticle-based targeted therapeutics for the treatment of cancer requires a w...
The development of nanoparticle-based targeted therapeutics for the treatment of cancer requires a w...
The development of nanoparticle-based targeted therapeutics for the treatment of cancer requires a w...
Advances in nanotechnology have enabled numerous types of nanoparticles (NPs) to improve drug delive...
Nanocarriers for drug delivery have great potential to revolutionize cancer treatment, due to their ...
Nanoparticle tumor accumulation relies on a key mechanism, the enhanced permeability and retention (...
Nanoparticle tumor accumulation relies on a key mechanism, the enhanced permeability and retention (...
Microfluidic technology has led to the development of advanced in vitro tumor platforms that overcom...
The effectiveness of nanoparticles (NP) in nanomedicine depends on their ability to extravasate from...
In this thesis, microfluidic systems which mimic blood vessels and tumour areas are developed to bri...
Traditional chemotherapy for cancer treatment often elicits dangerous side-effects and limits the do...
Metastatic dissemination of cancer cells is a very complex process. It includes the intravasation of...
Delivery of therapeutic agents selectively to tumor tissue, which is referred as "targeted delivery,...