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PMID: 24513320 已发表 · ppublish 英语

Targeting fibronectins of glioma extracellular matrix by CLT1 peptide-conjugated nanoparticles.

Biomaterials ·第 35 卷 ·第 13 期 ·2015-02-02

Zhang Bo, Shen Shun, Liao Ziwei, Shi Wei, Wang Yu, Zhao Jingjing, Hu Yue, Yang Jiarong, Chen Jun, Mei Heng, Hu Yu, Pang Zhiqing, Jiang Xinguo

摘要

The abundant extracellular matrix (ECM) in the glioma microenvironment play a critical role in the maintenance of glioma morphology, glioma cells differentiation and proliferation, but little has been done to understand the feasibility of ECM as the therapeutic target for glioma therapy. In this study, a drug delivery system targeting fibronectins (FNs), a prevailing component in the ECM of many solid tumors, was constructed for glioma therapy based on the interaction between the abundant FNs in glioma tissues and the FNs-targeting moiety CLT1 peptide. CLT1 peptide was successfully conjugated to PEG-PLA nanoparticles (CNP). FNs were demonstrated to be highly expressed in the ECM of glioma spheroids in vitro and glioma tissues in vivo. CLT1 modification favored targeting nanoparticles penetration into the core of glioma spheroids and consequently induced more severe inhibitive effects on glioma spheroids growth than traditional NP. In vivo imaging, ex vivo imaging and glioma tissue slides showed that CNP enhanced nanoparticles retention in glioma site, distributed more extensively and more deeply into glioma tissues than that of conventional NP, and mainly located in glioma cells rather than in extracellular matrix as conventional NP. Pharmacodynamics outcomes revealed that the median survival time of glioma-bearing mice models treated with paclitaxel-loaded CNP (CNP-PTX) was significantly prolonged when compared with that of any other group. TUNEL assay demonstrated that more extensive cell apoptosis was induced by CNP-PTX treatment compared with other treatments. Altogether, these promising results indicated that this ECM-targeting drug delivery system enhanced retention and glioma cell uptake of nanoparticles and might have a great potential for glioma therapy in clinical applications.

关键词
Extracellular matrix Fibronectin Glioma Nanoparticles Retention Targeting
文献信息
期刊
Biomaterials
期刊简称
Biomaterials
发表日期
2015-02-02
收录日期
2014-03-03
更新日期
2014-03-03
语言
英语
国家/地区
Netherlands
NLM ID
8100316
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