Nanoparticle penetration through tumor tissue after extravasation is considered as a key issue for tumor distribution and therapeutic effects. Most tumors possess abundant stroma, a fibrotic tissue composed of cancer-associated fibroblasts (CAFs) and extracellular matrix (ECM), which acts as a barrier for nanoparticle penetration. There is however a lack of suitable in vitro systems to study the tumor stroma penetration of nanoparticles. In the present study, we developed and thoroughly characterized a 3D co-culture spheroidal array to mimic tumor stroma and investigated the penetration of silica and PLGA nanoparticles in these spheroids. First, we examined human breast tumor patient biopsies to characterize the content and organization of ...
The efficient treatment of cancer with chemotherapy is challenged by the limited penetration of drug...
The efficient treatment of cancer with chemotherapy is challenged by the limited penetration of drug...
Here, we report a microfluidic platform to investigate interactions between drug-loaded nanoconstruc...
Nanoparticle penetration through tumor tissue after extravasation is considered as a key issue for t...
Nanoparticle penetration through tumor tissue after extravasation is considered as a key issue for t...
Nanoparticle penetration through tumor tissue after extravasation is considered as a key issue for t...
Nanoparticle penetration through tumor tissue after extravasation is considered as a key issue for t...
Here, we report a breast tumour-on-a-chip platform to evaluate the penetration of nanomedicines in 3...
Here, we report a breast tumour-on-a-chip platform to evaluate the penetration of nanomedicines in 3...
Animal models are effective for assessing tumor localization of nanosystems but difficult to use for...
Animal models are effective for assessing tumour localisation of nanosystems, but difficult to use f...
Many different nanoparticle delivery systems have been reported as potential cancer therapeutics, ho...
We present a flexible and highly reproducible method using three-dimensional (3D) multicellular tumo...
Many different nanoparticle delivery systems have been reported as potential cancer therapeutics, ho...
The efficient treatment of cancer with chemotherapy is challenged by the limited penetration of drug...
The efficient treatment of cancer with chemotherapy is challenged by the limited penetration of drug...
The efficient treatment of cancer with chemotherapy is challenged by the limited penetration of drug...
Here, we report a microfluidic platform to investigate interactions between drug-loaded nanoconstruc...
Nanoparticle penetration through tumor tissue after extravasation is considered as a key issue for t...
Nanoparticle penetration through tumor tissue after extravasation is considered as a key issue for t...
Nanoparticle penetration through tumor tissue after extravasation is considered as a key issue for t...
Nanoparticle penetration through tumor tissue after extravasation is considered as a key issue for t...
Here, we report a breast tumour-on-a-chip platform to evaluate the penetration of nanomedicines in 3...
Here, we report a breast tumour-on-a-chip platform to evaluate the penetration of nanomedicines in 3...
Animal models are effective for assessing tumor localization of nanosystems but difficult to use for...
Animal models are effective for assessing tumour localisation of nanosystems, but difficult to use f...
Many different nanoparticle delivery systems have been reported as potential cancer therapeutics, ho...
We present a flexible and highly reproducible method using three-dimensional (3D) multicellular tumo...
Many different nanoparticle delivery systems have been reported as potential cancer therapeutics, ho...
The efficient treatment of cancer with chemotherapy is challenged by the limited penetration of drug...
The efficient treatment of cancer with chemotherapy is challenged by the limited penetration of drug...
The efficient treatment of cancer with chemotherapy is challenged by the limited penetration of drug...
Here, we report a microfluidic platform to investigate interactions between drug-loaded nanoconstruc...