Inefficient vascularization hinders the optimal transport of cell nutrients, oxygen, and drugs to cancer cells in solid tumors. Gradients of these substances maintain a heterogeneous cell-scale microenvironment through which drugs and their carriers must travel, significantly limiting optimal drug exposure. In this study, we integrate intravital microscopy with a mathematical model of cancer to evaluate the behavior of nanoparticle-based drug delivery systems designed to circumvent biophysical barriers. We simulate the effect of doxorubicin delivered via porous 1000 x 400 nm plateloid silicon particles to a solid tumor characterized by a realistic vasculature, and vary the parameters to determine how much drug per particle and how many part...
Restoration of dysfunctional tumor vasculature can reestablish the pressure gradient between intrava...
Traditionally, the goal of nanoparticle-based chemotherapy has been to decrease normal tissue toxici...
Thesis (Ph. D. in Biomedical Engineering)--Harvard-MIT Division of Health Sciences and Technology, 2...
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...
Delivery of therapeutic agents selectively to tumor tissue, which is referred as "targeted delivery,...
[[abstract]]The distribution and accumulation of nanoparticle dosage in a tumor are important in eva...
[[abstract]]The distribution and accumulation of nanoparticle dosage in a tumor are important in eva...
The distribution and accumulation of nanoparticle dosage in a tumor are important in evaluating the ...
[[abstract]]The distribution and accumulation of nanoparticle dosage in a tumor are important in eva...
The role of tumour–host mechano-biology and the mechanisms involved in the delivery of anti-cancer d...
Targeting of nanoparticles to tumours can potentially improve the specificity of imaging and treatme...
Advances in nanotechnology have enabled numerous types of nanoparticles (NPs) to improve drug delive...
The role of tumour–host mechano-biology and the mechanisms involved in the delivery of anti-cancer d...
Cancer targeting nanoparticles face a variety of biological environments between the site of injecti...
Restoration of dysfunctional tumor vasculature can reestablish the pressure gradient between intrava...
Traditionally, the goal of nanoparticle-based chemotherapy has been to decrease normal tissue toxici...
Thesis (Ph. D. in Biomedical Engineering)--Harvard-MIT Division of Health Sciences and Technology, 2...
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...
Delivery of therapeutic agents selectively to tumor tissue, which is referred as "targeted delivery,...
[[abstract]]The distribution and accumulation of nanoparticle dosage in a tumor are important in eva...
[[abstract]]The distribution and accumulation of nanoparticle dosage in a tumor are important in eva...
The distribution and accumulation of nanoparticle dosage in a tumor are important in evaluating the ...
[[abstract]]The distribution and accumulation of nanoparticle dosage in a tumor are important in eva...
The role of tumour–host mechano-biology and the mechanisms involved in the delivery of anti-cancer d...
Targeting of nanoparticles to tumours can potentially improve the specificity of imaging and treatme...
Advances in nanotechnology have enabled numerous types of nanoparticles (NPs) to improve drug delive...
The role of tumour–host mechano-biology and the mechanisms involved in the delivery of anti-cancer d...
Cancer targeting nanoparticles face a variety of biological environments between the site of injecti...
Restoration of dysfunctional tumor vasculature can reestablish the pressure gradient between intrava...
Traditionally, the goal of nanoparticle-based chemotherapy has been to decrease normal tissue toxici...
Thesis (Ph. D. in Biomedical Engineering)--Harvard-MIT Division of Health Sciences and Technology, 2...