癌症研究
细胞毒性
体内
体外
肿瘤微环境
免疫系统
细胞凋亡
细胞
药物输送
胶质母细胞瘤
化学
细胞培养
肿瘤细胞
药品
脑瘤
遗传增强
移植
材料科学
毒品携带者
抗药性
药理学
细胞膜
细胞毒性T细胞
转染
靶向给药
靶向治疗
细胞生物学
免疫疗法
炎症
作者
X. Q. Hao,Yucheng Tang,Wenjie Xu,Mengdi Wang,Jiayi Liu,Haitao Yang,Pengcheng Sun,Dehua Liao,Xiongbin Hu,Tiantian Tang,Hai Huang,Xinying Liu,Daxiong Xiang,Junyong Wu
出处
期刊:ACS Nano
[American Chemical Society]
日期:2026-04-03
卷期号:20 (14): 10889-10904
标识
DOI:10.1021/acsnano.5c15615
摘要
Glioblastoma (GBM) is a highly malignant brain tumor. The immunosuppressive microenvironment and resistance to chemotherapy-induced apoptosis pose significant challenges for treatment. In this study, we found that atorvastatin calcium (AC) can effectively induce methuosis in GBM cells, suggesting its potential as a therapeutic candidate for GBM treatment. To address the challenge of crossing the blood-brain barrier (BBB) and enhance drug delivery efficiency, we synthesized AC nanoparticles stabilized through dopamine polymerization, achieving high drug-loading efficiency. Moreover, the nanoparticles were coated with PD-1-engineered BV2 cell membranes and further modified with Angiopep-2 peptides to facilitate BBB crossing and effective accumulation at the tumor site. In vitro experiments confirmed the cytotoxicity and induction of methuosis in GBM cells by AP@CM-Ang, accompanied by the release of immune-stimulatory factors. In vivo experiments demonstrated that the nanodrug significantly enhanced tumor targeting, effectively inhibited tumor growth, and increased immune cell activation, validating its potential as a promising and safe strategy for GBM treatment.
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