Delivery of drugs and nanomedicines to tumors is often heterogeneous and insufficient and, thus, of limited efficacy. Microbubbles in combination with ultrasound have been found to improve delivery to tumors, enhancing accumulation and penetration. We used a subcutaneous prostate cancer xenograft model in mice to investigate the effect of free and nanoparticle-encapsulated cabazitaxel in combination with ultrasound and microbubbles with a lipid shell or a shell of nanoparticles. Sonopermeation reduced tumor growth and prolonged survival (26%–100%), whether the free drug was co-injected with lipid-shelled microbubbles or the nanoformulation was co-injected with lipid-shelled or nanoparticle-shelled microbubbles. Coherently with the improved ...
Therapeutic agents can benefit from encapsulation in nanoparticles, due to improved pharmacokinetics...
Xiaozhou Fan,1,* Luofu Wang,2,* Yanli Guo,1 Xingyu Xiong,1 Lianhua Zhu,1 Kejing Fang1 1Department o...
Successful delivery of drugs and nanomedicine to tumors requires a functional vascular network, extr...
Compared with conventional chemotherapy, encapsulation of drugs in nanoparticles can improve efficac...
Drug delivery to tumors is challenging due to biological barriers obstructing effective delivery. So...
Ultrasound (US) in combination with microbubbles (MB) has had promising results in improving deliver...
Despite major progress in the field of cancer research during the last decades, cancer remains a lea...
Encapsulation of anti-cancer drugs in nanoparticles (NPs) can solve many of the problems and side-ef...
Treatment of cancer is an enormous challenge that involves multiple biological barriers and drugs wi...
Drug development for cancer is heading towards increased use of highly-targeted and complex biologic...
Abstract The low delivery efficiency of nanoparticles to solid tumors greatly reduces the therapeuti...
The combined use of ultrasound and intravascular microbubbles, referred to as ultrasound and microbu...
Although chemotherapy is an important treatment for advanced prostate cancer, its efficacy is relati...
Advanced drug delivery systems, such as ultrasound-mediated drug delivery, show great promise for in...
In the last years, research on ultrasound mediated drug delivery using microbubbles is vastly expand...
Therapeutic agents can benefit from encapsulation in nanoparticles, due to improved pharmacokinetics...
Xiaozhou Fan,1,* Luofu Wang,2,* Yanli Guo,1 Xingyu Xiong,1 Lianhua Zhu,1 Kejing Fang1 1Department o...
Successful delivery of drugs and nanomedicine to tumors requires a functional vascular network, extr...
Compared with conventional chemotherapy, encapsulation of drugs in nanoparticles can improve efficac...
Drug delivery to tumors is challenging due to biological barriers obstructing effective delivery. So...
Ultrasound (US) in combination with microbubbles (MB) has had promising results in improving deliver...
Despite major progress in the field of cancer research during the last decades, cancer remains a lea...
Encapsulation of anti-cancer drugs in nanoparticles (NPs) can solve many of the problems and side-ef...
Treatment of cancer is an enormous challenge that involves multiple biological barriers and drugs wi...
Drug development for cancer is heading towards increased use of highly-targeted and complex biologic...
Abstract The low delivery efficiency of nanoparticles to solid tumors greatly reduces the therapeuti...
The combined use of ultrasound and intravascular microbubbles, referred to as ultrasound and microbu...
Although chemotherapy is an important treatment for advanced prostate cancer, its efficacy is relati...
Advanced drug delivery systems, such as ultrasound-mediated drug delivery, show great promise for in...
In the last years, research on ultrasound mediated drug delivery using microbubbles is vastly expand...
Therapeutic agents can benefit from encapsulation in nanoparticles, due to improved pharmacokinetics...
Xiaozhou Fan,1,* Luofu Wang,2,* Yanli Guo,1 Xingyu Xiong,1 Lianhua Zhu,1 Kejing Fang1 1Department o...
Successful delivery of drugs and nanomedicine to tumors requires a functional vascular network, extr...