This study presents both tumor-targeting ligands (cRGD) and pH-activated surface charge-conversional moiety (imidazole) decorated micelles for Dox delivery. cRGD is expected to induce preferential tumor accumulation, while imidazole switches on positive charge in a tumor acid environment, which leads to enhanced micelle uptake by tumor cells
Cancer, also known as a malignant tumor, has developed into a type of disease with the highest fatal...
The influence of surface charge on biodistribution and tumor accumulation remains debatable because ...
The main objective of this study was aimed at tumor microenvironment-responsive vesicle for targetin...
Efficiently and selectively delivering chemotherapeutic agents to tumours still remains a challenge ...
It is highly desirable to design and develop multifunctional nanoparticles for improving specificity...
Mitochondria-targeted and pH-triggered charge-convertible polymeric micelles (GPTD) were developed f...
Although self-assembled polymeric micelles have received significant attention as anticancer drug de...
In the last decades, amphiphilic self-assembling block copolymers have been studied as carriers for ...
Cyclic RGDyK (cRGDyK)-conjugated pH-sensitive polymeric micelles were fabricated for targeted delive...
The combination of a chemotherapeutic drug with a P-glycoprotein (P-gp) inhibitor has emerged as a p...
Thermosensitive and biodegradable polymeric micelles based on mPEG-b-pHPMAmLacn have shown very prom...
A new acid sensitive nanocarrier based on lipid core micelles has been investigated for tumor target...
Ligand-mediated drug delivery systems have enormous potential for improving the efficacy of cancer t...
Engineered stimuli-responsive drug delivery devices hold vast promise in biological applications for...
ABSTRACT − pH-sensitive cross-linked polymeric micelles were synthesized by using block ionomer comp...
Cancer, also known as a malignant tumor, has developed into a type of disease with the highest fatal...
The influence of surface charge on biodistribution and tumor accumulation remains debatable because ...
The main objective of this study was aimed at tumor microenvironment-responsive vesicle for targetin...
Efficiently and selectively delivering chemotherapeutic agents to tumours still remains a challenge ...
It is highly desirable to design and develop multifunctional nanoparticles for improving specificity...
Mitochondria-targeted and pH-triggered charge-convertible polymeric micelles (GPTD) were developed f...
Although self-assembled polymeric micelles have received significant attention as anticancer drug de...
In the last decades, amphiphilic self-assembling block copolymers have been studied as carriers for ...
Cyclic RGDyK (cRGDyK)-conjugated pH-sensitive polymeric micelles were fabricated for targeted delive...
The combination of a chemotherapeutic drug with a P-glycoprotein (P-gp) inhibitor has emerged as a p...
Thermosensitive and biodegradable polymeric micelles based on mPEG-b-pHPMAmLacn have shown very prom...
A new acid sensitive nanocarrier based on lipid core micelles has been investigated for tumor target...
Ligand-mediated drug delivery systems have enormous potential for improving the efficacy of cancer t...
Engineered stimuli-responsive drug delivery devices hold vast promise in biological applications for...
ABSTRACT − pH-sensitive cross-linked polymeric micelles were synthesized by using block ionomer comp...
Cancer, also known as a malignant tumor, has developed into a type of disease with the highest fatal...
The influence of surface charge on biodistribution and tumor accumulation remains debatable because ...
The main objective of this study was aimed at tumor microenvironment-responsive vesicle for targetin...