Abstract Recently, ultrasound (US)-based drug delivery strategies have received attention to improve enhanced permeation and retention (EPR) effect-based passive targeting efficiency of nanoparticles in vitro and in vivo conditions. Among the US treatment techniques, pulsed-high intensity focused ultrasound (pHIFU) have specialized for improving tissue penetration of various macromolecules and nanoparticles without irreversible tissue damages. In this study, we have demonstrated that pHIFU could be utilized to improve tissue penetration of fluorescent dye-labeled glycol chitosan nanoparticles (FCNPs) in femoral tissue of mice. pHIFU could improve blood flow of the targeted-blood vessel in femoral tissue. In addition, tissue penetration of F...
Purpose: The distribution of targeted nanoparticles in tumor tissue is affected by a combination of ...
Ultrasound and microbubbles have been found to improve the delivery of drugs and nanoparticles to tu...
Encapsulation of anti-cancer drugs in nanoparticles (NPs) can solve many of the problems and side-ef...
The treatment of brain diseases is hindered by the blood-brain barrier (BBB) preventing most drugs f...
Ultrasound for the delivery of a nanocarrier across biological barriers in tumors: impact of cavitat...
[[abstract]]Ultrasound sonication with microbubbles (MBs) was evaluated for enhancement of the relea...
High Intensity Focused Ultrasound (HIFU) is an emerging noninvasive, nonionizing physical energy bas...
The treatment of brain diseases is hindered by the blood-brain barrier (BBB) preventing most drugs f...
Compared with conventional chemotherapy, encapsulation of drugs in nanoparticles can improve efficac...
Copyright © 2014 Qiu-Lan Zhou et al. This is an open access article distributed under the Creative C...
[[abstract]]Ultrasound-mediated microbubble destruction may enhance the release of nanoparticles fro...
Despite major progress in the field of cancer research during the last decades, cancer remains a lea...
Successful delivery of drugs and nanomedicine to tumors requires a functional vascular network, extr...
This study concerns the enhanced delivery of three types of fluorescently labelled liposomal nanopar...
The development of new methods for drug and vaccine delivery is of paramount importance in the field...
Purpose: The distribution of targeted nanoparticles in tumor tissue is affected by a combination of ...
Ultrasound and microbubbles have been found to improve the delivery of drugs and nanoparticles to tu...
Encapsulation of anti-cancer drugs in nanoparticles (NPs) can solve many of the problems and side-ef...
The treatment of brain diseases is hindered by the blood-brain barrier (BBB) preventing most drugs f...
Ultrasound for the delivery of a nanocarrier across biological barriers in tumors: impact of cavitat...
[[abstract]]Ultrasound sonication with microbubbles (MBs) was evaluated for enhancement of the relea...
High Intensity Focused Ultrasound (HIFU) is an emerging noninvasive, nonionizing physical energy bas...
The treatment of brain diseases is hindered by the blood-brain barrier (BBB) preventing most drugs f...
Compared with conventional chemotherapy, encapsulation of drugs in nanoparticles can improve efficac...
Copyright © 2014 Qiu-Lan Zhou et al. This is an open access article distributed under the Creative C...
[[abstract]]Ultrasound-mediated microbubble destruction may enhance the release of nanoparticles fro...
Despite major progress in the field of cancer research during the last decades, cancer remains a lea...
Successful delivery of drugs and nanomedicine to tumors requires a functional vascular network, extr...
This study concerns the enhanced delivery of three types of fluorescently labelled liposomal nanopar...
The development of new methods for drug and vaccine delivery is of paramount importance in the field...
Purpose: The distribution of targeted nanoparticles in tumor tissue is affected by a combination of ...
Ultrasound and microbubbles have been found to improve the delivery of drugs and nanoparticles to tu...
Encapsulation of anti-cancer drugs in nanoparticles (NPs) can solve many of the problems and side-ef...