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Tumor Microenvironment-Responsive Drug Delivery Based on Polymeric Micelles for Precision Cancer Therapy: Strategies and Prospects
被引:8
|作者:
Jin, Zhu
[1
]
Al Amili, Majdi
[1
]
Guo, Shengrong
[1
]
机构:
[1] Shanghai Jiao Tong Univ, Shanghai Frontiers Sci Ctr Drug Target Identificat, Sch Pharmaceut Sci, Shanghai 200240, Peoples R China
关键词:
tumor microenvironment;
cancer therapy;
stimuli-responsiveness;
drug delivery;
precision;
CONTROLLED-RELEASE;
POLYPLEX MICELLES;
BLOCK-COPOLYMERS;
NANOPARTICLES;
ENZYME;
BIODISTRIBUTION;
PEPTIDE;
TRIGGER;
DNA;
D O I:
10.3390/biomedicines12020417
中图分类号:
Q5 [生物化学];
Q7 [分子生物学];
学科分类号:
071010 ;
081704 ;
摘要:
In clinical practice, drug therapy for cancer is still limited by its inefficiency and high toxicity. For precision therapy, various drug delivery systems, including polymeric micelles self-assembled from amphiphilic polymeric materials, have been developed to achieve tumor-targeting drug delivery. Considering the characteristics of the pathophysiological environment at the drug target site, the design, synthesis, or modification of environmentally responsive polymeric materials has become a crucial strategy for drug-targeted delivery. In comparison to the normal physiological environment, tumors possess a unique microenvironment, characterized by a low pH, high reactive oxygen species concentration, hypoxia, and distinct enzyme systems, providing various stimuli for the environmentally responsive design of polymeric micelles. Polymeric micelles with tumor microenvironment (TME)-responsive characteristics have shown significant improvement in precision therapy for cancer treatment. This review mainly outlines the most promising strategies available for exploiting the tumor microenvironment to construct internal stimulus-responsive drug delivery micelles that target tumors and achieve enhanced antitumor efficacy. In addition, the prospects of TME-responsive polymeric micelles for gene therapy and immunotherapy, the most popular current cancer treatments, are also discussed. TME-responsive drug delivery via polymeric micelles will be an efficient and robust approach for developing clinical cancer therapies in the future.
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