Specific surface-modified iron oxide nanoparticles trigger complement-dependent innate and adaptive antileukaemia immunity

特定表面修饰的氧化铁纳米颗粒可触发补体依赖性先天性和适应性抗白血病免疫。

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作者:Yuanyuan Li # ,Wen Wu # ,Qihui Liu # ,Qiong Wu ,Ping Ren ,Xi Xi ,Haiyan Liu ,Jiarui Zhao ,Wei Zhang ,Zizhun Wang ,Yuanyuan Lv ,Bin Tian ,Shuang Sun ,Jiaqi Cui ,Yangyang Zhao ,Jingyuan Wu ,Mingyuan Gao ,Fangfang Chen

Abstract

Considerable advances have been achieved in the application of nanomaterials for immunotherapies, yet the precise immune effects induced by protein corona remain elusive. Here, we explore the formation mechanism and immune regulation process of protein corona in acute myeloid leukaemia (AML) mouse models using commercialized iron oxide nanoparticles (IONPs), with different surface modifications, including an FDA-approved variant. Using macrophages depleted or Complement Component 3 (C3) knockout mice, we demonstrate that carboxymethyl dextran-coated IONP (IONP-COOH) reduces leukaemia burden. Mechanistically, IONP-COOH indirectly binds to C3b after activating the complement alternative pathway, subsequently enhancing phagocytosis of macrophages and activating adaptive immunity mediated by complement corona. While aminated dextran-coated IONPs directly absorb C3b and activate the lectin pathway, leading to immune cell exhaustion. Our findings suggest that IONP-COOH may serve as an immune activator for AML treatment, offering a promising approach to developing therapeutic nanomaterials by leveraging surface chemistry to enhance immunotherapy.

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