首页 / 院系成果 / 成果详情页

Reduction-sensitive CD44 receptor-targeted hyaluronic acid derivative micelles for doxorubicin delivery  期刊论文  

  • 编号:
    f1dc5d1e-5b9a-4108-a9e7-00a55ec41bf0
  • 作者:
  • 语种:
    英文
  • 期刊:
    INTERNATIONAL JOURNAL OF NANOMEDICINE ISSN:1178-2013 2018 年 13 卷 (4361 - 4378)
  • 收录:
  • 关键词:
  • 摘要:

    Introduction: A reduction-sensitive CD44-positive tumor-targetable drug delivery system for doxorubicin (DOX) delivery was developed based on hyaluronic acid (HA)-grafted polymers.
    Materials and methods: HA was conjugated with folic acid (FA) via a reduction-sensitive disulfide linkage to form an amphiphilic polymer (HA-ss-FA). The chemical structure of HA-ss-FA was analyzed by ultraviolet spectroscopy, Fourier transform infrared spectroscopy, and 'H nuclear magnetic resonance (NMR) spectroscopy. The molecular weight of HA-ss-FA was determined by high-performance gel permeation chromatography. Blank HA-ss-FA micelles and DOX-loaded micelles were prepared and characterized. The reduction responsibility, cellular uptake, and in vivo biodistribution of HA-ss-FA micelles were investigated.
    Results: DOX-loaded micelles were of high encapsulation efficiency (88.09%), high drug-loading content (22.70%), appropriate mean diameter (100-120 nm), narrow size distribution, and negative zeta potential (-6.7 to -31.5 mV). The DOX release from the micelles was significantly enhanced in reduction environment compared to normal environment. The result of in vitro cytotoxicity assay indicated that the blank micelles were of low toxicity and good biocompatibility and the cell viabilities were >100% with the concentration of HA-ss-FA from 18.75 to 600.00 mu g/mL. Cellular uptake and in vivo biodistribution studies showed that DOX-loaded micelles were tumor-targetable and could significantly enhance cellular uptake by CD44 receptor-mediated endocytosis, and the cellular uptake of DOX in CD44-positve A549 cells was 1.6-fold more than that in CD44-negative L02 cells. In vivo biodistribution of HA-ss-FA micelles showed that micelles were of good in vivo tumor targetability and the fluorescence of indocyanine green (ICG)-loaded micelles was 4- to 6.6-fold stronger than free ICG within 6h in HCCLM3 tumor-bearing nude mice.
    Conclusion: HA-ss-FA is a promising nanocarrier with excellent biocompatibility, tumor targetability, and controlled drug release capability for delivery of chemotherapy drugs in cancer therapy.

  • 推荐引用方式
    GB/T 7714:
    Yang Yishun,Zhao Yuan,Lan Jinshuai, et al. Reduction-sensitive CD44 receptor-targeted hyaluronic acid derivative micelles for doxorubicin delivery [J].INTERNATIONAL JOURNAL OF NANOMEDICINE,2018,13:4361-4378.
  • APA:
    Yang Yishun,Zhao Yuan,Lan Jinshuai,Kang Yanan,&Lu Lu.(2018).Reduction-sensitive CD44 receptor-targeted hyaluronic acid derivative micelles for doxorubicin delivery .INTERNATIONAL JOURNAL OF NANOMEDICINE,13:4361-4378.
  • MLA:
    Yang Yishun, et al. "Reduction-sensitive CD44 receptor-targeted hyaluronic acid derivative micelles for doxorubicin delivery" .INTERNATIONAL JOURNAL OF NANOMEDICINE 13(2018):4361-4378.
  • 条目包含文件:
    文件类型:PDF,文件大小:
    正在加载全文
浏览次数:79 下载次数:0
浏览次数:79
下载次数:0
打印次数:0
浏览器支持: Google Chrome   火狐   360浏览器极速模式(8.0+极速模式) 
返回顶部