转移
免疫系统
血小板
癌症研究
血小板活化
循环肿瘤细胞
癌症
医学
材料科学
免疫学
内科学
作者
Ben Hu,Huimin Lin,Xiaolong Quan,Fushan Sun,Fengling Zhang,Fang Zhang,Yu Wang,Yunhua Chang,Jigang Wang,Xiaohui Duan,Meng Yu
出处
期刊:Biomaterials
[Elsevier BV]
日期:2025-04-29
卷期号:322: 123380-123380
被引量:1
标识
DOI:10.1016/j.biomaterials.2025.123380
摘要
Platelet activation and adhesion on the surface of circulating tumor cells (CTCs) assist them in surviving within the vasculature and acquiring enhanced migratory potential. Simultaneously, protected by surrounding/covering "micro-thrombi," CTCs evade immune surveillance in circulation, thereby promoting hematogenous tumor metastasis. Based on this, we designed a self-assembling nanoenzyme drug GSNO@B (NO donor-modified GOx self-assembled with the hydrophobic drug BMS-202) against platelet-mediated tumor metastasis. This strategy involves the depletion of glucose by GOx, which inhibits platelets activity and reduces forming the micro-aggregation. Concurrently, the nanoenzyme in situ releases NO further diminishes the protective adhesion and micro-aggregation of platelet on the tumor cells surface, thereby exposing them in shear forces and immune recognition in the circulatory system. Concurrently, the disintegration of the nanoenzyme GSNO@B releases the immune checkpoint inhibitor BMS-202, further facilitating the immune clearance of CTCs. Therefore, through a three-step strategy, GSNO@B effectively suppresses primary tumors growth and metastatic tumors formation by blocking the platelet-mediated hematogenous tumor metastasis pathway.
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