The transport and accumulation of anticancer nanodrugs in tumor tissues are affected by many factors including particle properties, vascular density and leakiness, and interstitial diffusivity. It is important to understand the effects of these factors on the detailed drug distribution in the entire tumor for an effective treatment. In this study, we developed a small-scale mathematical model to systematically study the spatiotemporal responses and accumulative exposures of macromolecular carriers in localized tumor tissues. We chose various dextrans as model carriers and studied the effects of vascular density, permeability, diffusivity, and half-life of dextrans on their spatiotemporal concentration responses and accumulative exposure dis...
Radio-sensitizing nanoparticles are a potential method to increase the damage caused to cancerous ce...
<p>The effect of vascular permeability of carriers on the spatial distribution of accumulative expos...
Nanoparticles have been investigated as drug carriers and promising agents for cancer therapy. Howev...
[[abstract]]The transport and accumulation of anticancer nanodrugs in tumor tissues are affected by ...
[[abstract]]The transport and accumulation of anticancer nanodrugs in tumor tissues are affected by ...
[[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...
<p>Fitting results of spatiotemporal and spatially averaged concentration responses of macromolecula...
Background: Delivery of anticancer therapeutic agents to solid tumors is problematic. Macromolecular...
Vascular targeting of malignant tissues with systemically injected nanoparticles (NPs) holds promise...
Drug transport and its uptake by tumour cells are strongly dependent on tumour properties, which var...
Drug transport and its uptake by tumour cells are strongly dependent on tumour properties, which var...
A cancer drug's effectiveness is contingent upon on its ability to reach all parts of the tumor. The...
Radio-sensitizing nanoparticles are a potential method to increase the damage caused to cancerous ce...
<p>The effect of vascular permeability of carriers on the spatial distribution of accumulative expos...
Nanoparticles have been investigated as drug carriers and promising agents for cancer therapy. Howev...
[[abstract]]The transport and accumulation of anticancer nanodrugs in tumor tissues are affected by ...
[[abstract]]The transport and accumulation of anticancer nanodrugs in tumor tissues are affected by ...
[[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...
<p>Fitting results of spatiotemporal and spatially averaged concentration responses of macromolecula...
Background: Delivery of anticancer therapeutic agents to solid tumors is problematic. Macromolecular...
Vascular targeting of malignant tissues with systemically injected nanoparticles (NPs) holds promise...
Drug transport and its uptake by tumour cells are strongly dependent on tumour properties, which var...
Drug transport and its uptake by tumour cells are strongly dependent on tumour properties, which var...
A cancer drug's effectiveness is contingent upon on its ability to reach all parts of the tumor. The...
Radio-sensitizing nanoparticles are a potential method to increase the damage caused to cancerous ce...
<p>The effect of vascular permeability of carriers on the spatial distribution of accumulative expos...
Nanoparticles have been investigated as drug carriers and promising agents for cancer therapy. Howev...