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
小泡
材料科学
化疗
受体
医学
膜
外科
神经科学
生物
生物化学
中枢神经系统
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:188
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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