跨细胞
胶质瘤
药物输送
血脑屏障
外体
脂质体
转铁蛋白受体
靶向给药
癌症研究
药理学
纳米载体
薄壁组织
微泡
化学
血管生成
医学
内吞作用
药品
转铁蛋白
生物化学
受体
病理
小RNA
内科学
中枢神经系统
有机化学
基因
作者
Ruoning Wang,Xue Wang,Huacong Zhao,Nengjin Li,Jia Li,Hanwen Zhang,Liuqing Di
标识
DOI:10.1016/j.jconrel.2023.11.033
摘要
Blood-brain barrier (BBB) obstructing brain drug delivery severely hampers the therapeutic efficacy towards glioma. An efficient brain delivery strategy is of paramount importance for the treatment of glioma. Inspired by brain targeting exosome, biomimetic BBB penetrated hybrid (pHybrid) nanovesicles, engineered by membrane fusion between blood exosome and tLyp-1 peptide modified liposome, is explored for brain targeting drug delivery. Transferrin receptor (TfR) on pHybrid nanovesicles facilitates the BBB transcytosis into brain parenchyma, and eventually endocytosed by glioma cells and diffusion to extra-vascular tumor tissues under the guidance of tLyp-1 peptide. pHybrid nanovesicles co-loaded with salvianolic acid B (SAB) and cryptotanshinone (CPT), which is constructed by membrane hybridization of blood exosome loaded with SAB and tLyp-1 modified liposome loaded with CPT, are explored for cytotoxic and anti-angiogenetic therapy towards glioma. Upon accumulation at tumor site, the loaded CPT and SAB shows synergistic effects towards glioma from cytotoxicity on cancer cells and anti-angiogenesis on tumor, respectively. Overall, this study provides a biomimetic nanoplatform for increased BBB transcytosis into brain parenchyma, which serves as a prospective strategy for delivering therapeutic agents against glioma through synergistic mechanisms.
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