3-[1-(1H-INDOL-3-YL)-3-METHYL-2-BUTEN-1-YL]-7-(3-METHYL-2-BUTEN-1-YL)-1H-INDOLE

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CAS: 3757-06-0
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Synonyms: 3-[1-(1H-INDOL-3-YL)-3-METHYL-2-BUTEN-1-YL]-7-(3-METHYL-2-BUTEN-1-YL)-1H-INDOLE

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De-Cheng Wu

Institute of Chemistry, Chinese Academy of Sciences
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Co-reporter: Dawei Li, Yazhong Bu, Lining Zhang, Xing Wang, Yanyu Yang, Yaping Zhuang, Fei Yang, Hong Shen, and Decheng Wu
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Publication Date(Web):December 18, 2015
DOI: 10.1021/acs.biomac.5b01394
Here we demonstrate a type of pH and reduction dual-sensitive biodegradable micelles, which were self-assembled by a cationic polymer in an aqueous solution. Due to tumor cells or tissues showing low pH and high reduction concentration, these micelles possessed specific tumor targetability and maximal drug-release controllability inside tumor cells upon changes in physical and chemical environments, but presented good stability at physiological conditions. CCK-8 assay showed that the DOX-loaded micelles had a similar cytotoxicity for MCF-7 tumor cells as free DOX, and blank micelles had a very low cytotoxicity to the cells. Fluorescent microscopy observation revealed that the drug-loaded micelles could be quickly internalized by endosomes to inhibit cancer cell growth. These results indicated these biodegradable micelles, as a novel and effective pH- and redox-responsive nanocarrier, have a potential to improve drug delivery and enhance the antitumor efficacy.

Xiao-Ming Wu

China Pharmaceutical University
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Jian Huang

Shenyang Pharmaceutical University
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Jin Hui Wang

Shenyang Pharmaceutical University
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Bernd Plietker

Universit?t Stuttgart
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Jun Li

Anhui Medical University
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Ruifang Guan

University of Jinan
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Duxia Cao

University of Jinan
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