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PMID: 27641831 已发表 · ppublish 英语

Comprehensively priming the tumor microenvironment by cancer-associated fibroblast-targeted liposomes for combined therapy with cancer cell-targeted chemotherapeutic drug delivery system.

Chen Binlong, Dai Wenbing, Mei Dong, Liu Tongzhou, Li Suxin, He Bo, He Bing, Yuan Lan, Zhang Hua, Wang Xueqing, Zhang Qiang

摘要

Cancer-associated fibroblasts (CAFs) not only support tumorigenesis and tumor metastasis by reciprocal cellular cross-talk with cancer cells, but also remodel the extracellular matrix (ECM) and architecture of tumor microenvironment. This leads to poor tumor penetration of traditional chemotherapeutic nanomedicines and resulting drug resistance. In this study, we use a novel tumor stroma-targeted nanovehicle (FH-SSL-Nav) to specifically eradicate CAFs, promote tumor penetration of nanomedicines and cut off the stroma's support to cancer cells. FH-SSL-Nav exhibited excellent and comprehensive tumor microenvironment modulation including downregulation ECM deposition, decreasing interstitial fluid pressure (IFP) and facilitating blood perfusion. As a result, more chemotherapeutic drug delivery systems penetrated deep into tumor spheroids in vitro and tumor tissues in vivo. Furthermore, chemotherapeutic drug resistance induced by microenvironment was partly reversed by FH-SSL-Nav. In a human Hep G2 xenograft nude mouse model, FH-SSL-Nav greatly improved the tumor suppression of cancer cell-targeted liposomal doxorubicin (7pep-SSL-DOX) with low dose and low toxicity. Since Nav and DOX exhibited no synergy against Hep G2 cells, it was clear that the improved antitumor efficacy was basically due to the comprehensive tumor microenvironment priming by FH-SSL-Nav.

关键词
Cancer-associated fibroblasts Combination therapy Liposomal doxorubicin Navitoclax Tumor microenvironment Tumor penetration
文献信息
期刊
Journal of controlled release : official journal of the Controlled Release Society
期刊简称
J Control Release
发表日期
0000-00-00
收录日期
2016-09-29
更新日期
2016-10-19
语言
英语
国家/地区
Netherlands
NLM ID
8607908
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