微泡
胶质母细胞瘤
外体
药物输送
寡肽
阿霉素
药品
U87型
癌症研究
药理学
靶向给药
血脑屏障
脂质体
毒品携带者
化学
医学
化疗
中枢神经系统
小RNA
内科学
肽
生物化学
基因
有机化学
作者
Yutong Wang,Yiming Huo,Chunyuan Zhao,Heng Liu,Yurou Shao,Chenqi Zhu,Lan An,Chen Xiao,Zhipeng Chen
标识
DOI:10.1016/j.jconrel.2024.02.015
摘要
Due to the blood-brain barrier (BBB), the application of chemical drugs for glioblastoma treatment is severely limited. Recently, exosomes have been widely applied for drug delivery to the brain. However, the differences in brain targeting efficiency among exosomes derived from different cell sources, as well as the premature drug leakage during circulation, still limit the therapeutic efficacy. Here, we designed a functional oligopeptide-modified exosome loaded with doxorubicin (Pep2-Exos-DOX) for glioblastoma treatment. BV2 mouse microglial cell line was selected as the exosome source due to the favorable BBB penetration. To avoid drug release in the circulation, a redox-response oligopeptide was designed for incorporation into the membranes of exosomes to lock the drug during circulation. The enrichment of the drug in glioblastoma was confirmed. Pharmacodynamic evaluation showed Pep2-Exos-DOX possessed significant anti-cancer activity against glioblastoma as well as relative biosafety. This exosome-based drug delivery system modified with redox-response oligopeptides provides us a novel strategy for brain diseases treatment.
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