Targeting of nanoparticles to tumours can potentially improve the specificity of imaging and treatments. We have developed a multicompartmental pharmacokinetic model in order to analyse some of the factors that control efficiency of targeting to intravascular (endothelium) and extravascular (tumour cells and stroma) compartments. We make the assumption that transport across tumour endothelium is an important step for subsequent nanoparticle accumulation in the tumour (area-under-the-curve, AUC) regardless of entry route (interendothelial and transendothelial routes) and study this through a multicompartmental simulation. Our model reveals that increasing endothelial targeting efficiency has a much stronger effect on the AUC than increasing ...
The effectiveness of nanoparticles (NP) in nanomedicine depends on their ability to extravasate from...
A promise of cancer nanomedicine is the “targeted” delivery of therapeutic agents to tumors by the r...
[[abstract]]The distribution and accumulation of nanoparticle dosage in a tumor are important in eva...
Cancer targeting nanoparticles face a variety of biological environments between the site of injecti...
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 blood vessels of cancerous tumours are leaky1–3 and poorly organized4–7. This can increase the i...
The development of nanoparticle-based targeted therapeutics for the treatment of cancer requires a w...
The blood vessels of cancerous tumours are leaky1–3 and poorly organized4–7. This can increase the i...
Vascular targeting of malignant tissues with systemically injected nanoparticles (NPs) holds promise...
Because of the particular characteristics of the tumor microenvironment and tumor angiogenesis, it i...
Inefficient vascularization hinders the optimal transport of cell nutrients, oxygen, and drugs to ca...
Inefficient vascularization hinders the optimal transport of cell nutrients, oxygen, and drugs to ca...
Inefficient vascularization hinders the optimal transport of cell nutrients, oxygen, and drugs to ca...
The goal of nanomedicine is to use nanoparticles to carry drugs to specific target site in the body....
The effectiveness of nanoparticles (NP) in nanomedicine depends on their ability to extravasate from...
A promise of cancer nanomedicine is the “targeted” delivery of therapeutic agents to tumors by the r...
[[abstract]]The distribution and accumulation of nanoparticle dosage in a tumor are important in eva...
Cancer targeting nanoparticles face a variety of biological environments between the site of injecti...
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 blood vessels of cancerous tumours are leaky1–3 and poorly organized4–7. This can increase the i...
The development of nanoparticle-based targeted therapeutics for the treatment of cancer requires a w...
The blood vessels of cancerous tumours are leaky1–3 and poorly organized4–7. This can increase the i...
Vascular targeting of malignant tissues with systemically injected nanoparticles (NPs) holds promise...
Because of the particular characteristics of the tumor microenvironment and tumor angiogenesis, it i...
Inefficient vascularization hinders the optimal transport of cell nutrients, oxygen, and drugs to ca...
Inefficient vascularization hinders the optimal transport of cell nutrients, oxygen, and drugs to ca...
Inefficient vascularization hinders the optimal transport of cell nutrients, oxygen, and drugs to ca...
The goal of nanomedicine is to use nanoparticles to carry drugs to specific target site in the body....
The effectiveness of nanoparticles (NP) in nanomedicine depends on their ability to extravasate from...
A promise of cancer nanomedicine is the “targeted” delivery of therapeutic agents to tumors by the r...
[[abstract]]The distribution and accumulation of nanoparticle dosage in a tumor are important in eva...