纳米载体
体内分布
流式细胞术
免疫系统
共焦显微镜
药物输送
血小板
阿霉素
癌症研究
化学
内吞作用
循环肿瘤细胞
材料科学
生物物理学
医学
纳米技术
癌症
免疫学
细胞
化疗
细胞生物学
转移
生物
生物化学
内科学
体外
作者
Xuanbo Da,Jiantao Mo,Qiao‐Xin Li,Bangwei Cao,Jingjing Huang,Yuxuan Lu,Le Lü,Meng Fan,Hongwei Lü
标识
DOI:10.1016/j.bbrc.2023.05.124
摘要
Circulating tumor cells (CTCs) can adsorb and activate platelets to form a microthrombus protective barrier around them, so that therapeutic drugs and immune cells cannot effectively kill CTCs. The platelet membrane (PM) bionic carrying drug system has the powerful ability of immune escape, and can circulate in the blood for a long time. Materials and methods: we developed platelet membrane coated nanoparticles (PM HMSNs) to improve the precise delivery of drugs to tumor sites and to achieve more effective immunotherapy combined with chemotherapy strategy. Successfully prepared aPD-L1-PM-SO@HMSNs particles, whose diameter is 95–130 nm and presenting the same surface protein as PM. Laser confocal microscopy and flow cytometry experimental results showed that the fluorescence intensity of aPD-L1-PM-SO@HMSNs was greater than SO@HMSNs that are not coated by PM. Biodistribution studies in H22 tumor-bearing mice showed that due to the combined action of the active targeting effect and the EPR effect, the high accumulation of aPD-L1-PM-SO@HMSNs in the local tumor was more effective in inhibiting tumor growth than other groups of therapeutic agents. Platelet membrane biomimetic nanoparticles have a good targeted therapeutic effect, which can effectively avoid immune clearance and have little side effects. It provides a new direction and theoretical basis for further research on targeted therapy of CTCs in liver cancer.
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