Reduction-responsive Crosslinked Micellar Nanoassemblies for Tumor-targeted Drug Delivery

被引:19
|
作者
Fan, Wei [1 ]
Wang, Yingzhe [1 ]
Dai, Xin [1 ]
Shi, Lei [1 ]
Mckinley, DeAngelo [1 ]
Tan, Chalet [1 ]
机构
[1] Mercer Univ, Coll Pharm, Dept Pharmaceut Sci, Canc Nanomed Lab, Atlanta, GA 30341 USA
基金
美国国家卫生研究院;
关键词
crosslinked micelles; disulfide crosslinks; nanocarriers; paclitaxel; pharmacokinetics; BLOCK-COPOLYMER MICELLES; IN-VIVO; VITAMIN-E; TOXICITY; DOXORUBICIN; PACLITAXEL; RELEASE; NANOSTRUCTURES; DITHIOTHREITOL; NANOCARRIERS;
D O I
10.1007/s11095-014-1537-6
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Purpose The purpose of the study was to devise and evaluate crosslinked nanoassemblies to achieve enhanced drug delivery to tumors. Methods A novel copolymer comprised of polyethylene glycol 5000 (PEG(114)), Vitamin E (VE) and thioctic acid (TA) with a molar ratio of PEG114:VE:TA at 1:4:4 was synthesized. The resulting PEG(114)-VE4-TA(4) copolymer self-assembled into micelles, which formed polydisulfide crosslinks catalyzed by dithiothreitol. Employing paclitaxel as a model drug, the crosslinked PEG(114)-VE4-TA(4) micelles were characterized for the physicochemical and biological properties. The pharmacokinetics and anticancer efficacy of paclitaxel-loaded crosslinked PEG(114)-VE4-TA(4) micelles were assessed in a human ovarian cancer xenograft murine model. Results The crosslinked PEG(114)-VE4-TA(4) micelles demonstrated markedly improved thermodynamic and kinetic stability. The disulfide crosslinks were responsive to the intracellular level of glutathione, which caused rapid disassembly of the micelles and accelerated drug release. Intravenous administration of paclitaxel-loaded crosslinked PEG(114)-VE4-TA(4) micelles yielded approximately 3-fold and 5-fold higher plasma concentration than the non-crosslinked micelles and Taxol (R), respectively, leading to increased drug accumulation in the tumor. Importantly, paclitaxel-loaded crosslinked micelles exerted superior tumor growth repression compared to the non-crosslinked counterparts and Taxol (R). Conclusions These results suggest that the crosslinked PEG(114)-VE4-TA(4) nanocarrier system is a promising platform for the delivery of hydrophobic anticancer agents.
引用
收藏
页码:1325 / 1340
页数:16
相关论文
共 50 条
  • [1] Reduction-responsive Crosslinked Micellar Nanoassemblies for Tumor-targeted Drug Delivery
    Wei Fan
    Yingzhe Wang
    Xin Dai
    Lei Shi
    DeAngelo Mckinley
    Chalet Tan
    Pharmaceutical Research, 2015, 32 : 1325 - 1340
  • [2] Disassembly and tumor-targeting drug delivery of reduction-responsive degradable block copolymer nanoassemblies
    Oh, Jung Kwon
    POLYMER CHEMISTRY, 2019, 10 (13) : 1554 - 1568
  • [3] In situ crosslinked smart polypeptide nanoparticles for multistage responsive tumor-targeted drug delivery
    Yi, Huqiang
    Liu, Peng
    Sheng, Nan
    Gong, Ping
    Ma, Yifan
    Cai, Lintao
    NANOSCALE, 2016, 8 (11) : 5985 - 5995
  • [4] Reduction-Responsive Polyprodrug Nanoplatform Based on Curcumin for Tumor-Targeted Therapy
    Zhang, Ziyi
    Tian, Jinyuan
    Xu, Xiaoqing
    Shi, Wei
    Qi, Yajuan
    Liu, Zhanjun
    CURRENT DRUG DELIVERY, 2024,
  • [5] Reduction-responsive and tumor-targeted polyprodrug nanocarriers for targeting therapy of hepatocellular carcinoma
    Shi, Wei
    Xu, Xiaoqing
    Tian, Jinyuan
    Zhang, Ziyi
    Liu, Zhanjun
    NEW JOURNAL OF CHEMISTRY, 2024, 48 (09) : 3793 - 3803
  • [6] iRGD-decorated reduction-responsive nanoclusters for targeted drug delivery
    Hu, Hang
    Wan, Jiangling
    Huang, Xuetao
    Tang, Yuxiang
    Xiao, Chen
    Xu, Huibi
    Yang, Xiangliang
    Li, Zifu
    NANOSCALE, 2018, 10 (22) : 10514 - 10527
  • [7] Hypoxia-responsive nanoparticles for tumor-targeted drug delivery
    Li, Yuce
    Jeon, Jueun
    Park, Jae Hyung
    CANCER LETTERS, 2020, 490 : 31 - 43
  • [8] Intracellular Reduction-Responsive Sheddable Copolymer Micelles for Targeted Anticancer Drug Delivery
    Zhang, Yuanyuan
    Qu, Qiuyu
    Li, Menghuan
    Zhao, Yanli
    ASIAN JOURNAL OF ORGANIC CHEMISTRY, 2015, 4 (03) : 226 - 232
  • [9] Hypoxia-responsive polymeric nanoparticles for tumor-targeted drug delivery
    Thambi, Thavasyappan
    Deepagan, V. G.
    Yoon, Hong Yeol
    Han, Hwa Seung
    Kim, Seol-Hee
    Son, Soyoung
    Jo, Dong-Gyu
    Ahn, Cheol-Hee
    Suh, Yung Doug
    Kim, Kwangmeyung
    Kwon, Ick Chan
    Lee, Doo Sung
    Park, Jae Hyung
    BIOMATERIALS, 2014, 35 (05) : 1735 - 1743
  • [10] Tumor-Targeted Drug Delivery with Aptamers
    Zhang, Y.
    Hong, H.
    Cai, W.
    CURRENT MEDICINAL CHEMISTRY, 2011, 18 (27) : 4185 - 4194