4.7 Article

Redox-sensitive micelles composed of disulfide-linked Pluronic-linoleic acid for enhanced anticancer efficiency of brusatol

期刊

INTERNATIONAL JOURNAL OF NANOMEDICINE
卷 13, 期 -, 页码 939-956

出版社

DOVE MEDICAL PRESS LTD
DOI: 10.2147/IJN.S130696

关键词

poloxamer188; tumor micro-environment; glutathione; Brucea javanica; cancer treatment

资金

  1. Research Fund of the University of Macau [MYRG2016-00130-ICMS-QRCM, MYRG2015-00171-ICMS-QRCM, MYRG2016-00143-ICMS-QRCM]
  2. National Natural Science Foundation of China [81403120]
  3. Macao Science and Technology Development Fund [096/2015/A3]

向作者/读者索取更多资源

Brusatol (Bru) exhibits promising anticancer c fleas, with both proliferation inhibition and chemoresistance amelioration activity. However, the poor solubility and insufficient intracellular delivery of Bru greatly restrict its application. Herein, to simultaneously utilize the advantages of Pluronics as drug carriers and tumor microenvironment-responsive drug release profiles, a flexible amphiphilic copolymer with a polymer skeleton, that is, Pluronic (R) F68 grafting with linoleic acid moieties by redox-reducible disulfide bonds (F68-SS-LA), was synthesized. After characterization by H-1-nuclear magnetic resonance and Fourier transform infrared spectroscopy, the redox-sensitive F68-SS-LA micelles were self-assembled in a much lower critical micelle concentration than that of the unmodified F68 copolymer. Bru was loaded in micelles (Bru/SS-M) with high loading efficiency, narrow size distribution, and excellent storage stability. The redox-sensitive Bru/SS-M exhibited rapid particle dissociation and drug release in response to a redox environment. Based on the enhanced cellular internalisation, Bru/SS-M achieved higher cytotoxicity in both Bel-7402 and MCF-7 cells compared with free Bru and nonreducible micelles. The improved anticancer effect was attributed to the remarkably decreased mitochondrial membrane potential and increased reactive oxygen species level as well as apoptotic rate. These results demonstrated that F68-SS-LA micelles possess great potential as an efficient delivery vehicle for Bru to promote its anticancer efficiency via an oxidation pathway.

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