阿霉素
药物输送
跨细胞
内化
胶质瘤
血脑屏障
药理学
体内
纳米技术
化学
靶向给药
生物物理学
药品
内吞作用
癌症研究
材料科学
化疗
受体
医学
神经科学
生物
生物化学
中枢神经系统
内科学
生物技术
作者
Wenbo Niu,Qian Xiao,Xuejiao Wang,Junqiao Zhu,Jin‐Heng Li,Xiaomei Liang,Yingming Peng,Chentian Wu,Ruojing Lu,Yao Pan,Jiamao Luo,Xinxian Zhong,Haoqi He,Zhili Rong,Jun‐Bing Fan,Ying Wang
出处
期刊:Nano Letters
[American Chemical Society]
日期:2021-01-21
卷期号:21 (3): 1484-1492
被引量:233
标识
DOI:10.1021/acs.nanolett.0c04753
摘要
Existing nanoparticle-mediated drug delivery systems for glioma systemic chemotherapy remain a great challenge due to poor delivery efficiency resulting from the blood brain barrier/blood-(brain tumor) barrier (BBB/BBTB) and insufficient tumor penetration. Here, we demonstrate a distinct design by patching doxorubicin-loaded heparin-based nanoparticles (DNs) onto the surface of natural grapefruit extracellular vesicles (EVs), to fabricate biomimetic EV-DNs, achieving efficient drug delivery and thus significantly enhancing antiglioma efficacy. The patching strategy allows the unprecedented 4-fold drug loading capacity compared to traditional encapsulation for EVs. The biomimetic EV-DNs are enabled to bypass BBB/BBTB and penetrate into glioma tissues by receptor-mediated transcytosis and membrane fusion, greatly promoting cellular internalization and antiproliferation ability as well as extending circulation time. We demonstrate that a high-abundance accumulation of EV-DNs can be detected at glioma tissues, enabling the maximal brain tumor uptake of EV-DNs and great antiglioma efficacy in vivo.
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