Mitochondria-targeted and pH-triggered charge-convertible polymeric micelles (GPTD) were developed for doxorubicin (DOX) delivery and targeted anticancer therapy. GPTD surface was negatively charged under physiological pH (7.4), while it converted to positive charge under tumor pH (6.8). Sustained release of DOX from the drug loaded polymeric micelles was observed and the drug release was accelerated by decreasing the medium pH from 7.4 to 6.8. Cellular uptake by U251 glioma cells showed that GPTD can enhance the accumulation of polymeric micelles inside the mitochondria after charge-mediated cellular internalization and release DOX into the cellular interior. In vivo anticancer activity performed on glioma Balb/c nude mice demonstrated tha...
For achieving successful chemotherapy against cancer, designing biocompatible drug delivery systems ...
Although self-assembled polymeric micelles have received significant attention as anticancer drug de...
The development of an intelligent biomaterial system that can efficiently accumulate at the tumor si...
Efficiently and selectively delivering chemotherapeutic agents to tumours still remains a challenge ...
Mitochondrial DNA and nuclear DNA are essential genetic material which play an important role in mai...
The combination of a chemotherapeutic drug with a P-glycoprotein (P-gp) inhibitor has emerged as a p...
In this study, a graft copolymer, poly(N-(2-hydroxypropyl) methacrylamide dilactate)-co-(N-(2-hydrox...
ABSTRACT − pH-sensitive cross-linked polymeric micelles were synthesized by using block ionomer comp...
pH-sensitive cross-linked polymeric micelles were synthesized by using block ionomer complexes of po...
Chen Xu,1,* Ri-jin Song,2,* Pei Lu,2,* Jian-chun Chen,1 Yong-qiang Zhou,1 Gang Shen,1 Min-jun Jiang,...
This study presents both tumor-targeting ligands (cRGD) and pH-activated surface charge-conversional...
In recent years, intelligent polymeric micelles with multifunctions are in urgent demand for cancer ...
Thermosensitive and biodegradable polymeric micelles based on mPEG-b-pHPMAmLacn have shown very prom...
Stimuli-responsive drug delivery systems (DDSs) are expected to realize site-specific drug release a...
Redox and pH dual-responsive biodegradable micelles were developed based on poly(ethylene glycol)-SS...
For achieving successful chemotherapy against cancer, designing biocompatible drug delivery systems ...
Although self-assembled polymeric micelles have received significant attention as anticancer drug de...
The development of an intelligent biomaterial system that can efficiently accumulate at the tumor si...
Efficiently and selectively delivering chemotherapeutic agents to tumours still remains a challenge ...
Mitochondrial DNA and nuclear DNA are essential genetic material which play an important role in mai...
The combination of a chemotherapeutic drug with a P-glycoprotein (P-gp) inhibitor has emerged as a p...
In this study, a graft copolymer, poly(N-(2-hydroxypropyl) methacrylamide dilactate)-co-(N-(2-hydrox...
ABSTRACT − pH-sensitive cross-linked polymeric micelles were synthesized by using block ionomer comp...
pH-sensitive cross-linked polymeric micelles were synthesized by using block ionomer complexes of po...
Chen Xu,1,* Ri-jin Song,2,* Pei Lu,2,* Jian-chun Chen,1 Yong-qiang Zhou,1 Gang Shen,1 Min-jun Jiang,...
This study presents both tumor-targeting ligands (cRGD) and pH-activated surface charge-conversional...
In recent years, intelligent polymeric micelles with multifunctions are in urgent demand for cancer ...
Thermosensitive and biodegradable polymeric micelles based on mPEG-b-pHPMAmLacn have shown very prom...
Stimuli-responsive drug delivery systems (DDSs) are expected to realize site-specific drug release a...
Redox and pH dual-responsive biodegradable micelles were developed based on poly(ethylene glycol)-SS...
For achieving successful chemotherapy against cancer, designing biocompatible drug delivery systems ...
Although self-assembled polymeric micelles have received significant attention as anticancer drug de...
The development of an intelligent biomaterial system that can efficiently accumulate at the tumor si...