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用于中和内源性自身抗体和外源性毒力因子的血小板膜衍生纳米盘

Platelet Membrane-Derived Nanodiscs for Neutralization of Endogenous Autoantibodies and Exogenous Virulence Factors.

作者信息

Sun Lei, Yu Yiyan, Peng Yifei, Wang Dan, Wang Shuyan, Noh Ilkoo, Fang Ronnie H, Gao Weiwei, Zhang Liangfang

机构信息

Department of NanoEngineering, Chemical Engineering Program, Shu and K.C. Chien and Peter Farrell Collaboratory, University of California San Diego, La Jolla, CA, 92093, USA.

出版信息

Small. 2024 May;20(18):e2308327. doi: 10.1002/smll.202308327. Epub 2023 Dec 3.

Abstract

The multifaceted functions of platelets in various physiological processes have long inspired the development of therapeutic nanoparticles that mimic specific platelet features for disease treatment. Here, the development and characterization of platelet membrane-derived nanodiscs (PLT-NDs) as platelet decoys for biological neutralization is reported. In one application, PLT-NDs effectively bind with anti-platelet autoantibodies, thus blocking them from interacting with platelets. In a mouse model of thrombocytopenia, PLT-NDs successfully neutralize pathological anti-platelet antibodies, preventing platelet depletion and maintaining hemostasis. In another application, PLT-NDs effectively neutralize the cytotoxicity of bacterial virulence factors secreted by methicillin-resistant Staphylococcus aureus (MRSA). In a mouse model of MRSA infection, treatment with PLT-NDs leads to significant survival benefits for the infected mice. Additionally, PLT-NDs show good biocompatibility and biosafety, as demonstrated in acute toxicity studies conducted in mice. These findings underscore the potential of PLT-NDs as a promising platelet mimicry for neutralizing various biological agents that target platelets. Overall, this work expands the repertoire of platelet-mimicking nanomedicine by creating a unique disc-like nanostructure made of natural platelet membranes.

摘要

血小板在各种生理过程中的多方面功能长期以来一直推动着治疗性纳米颗粒的开发,这些纳米颗粒模仿特定的血小板特征用于疾病治疗。在此,报道了作为用于生物中和的血小板诱饵的血小板膜衍生纳米盘(PLT-NDs)的开发和表征。在一项应用中,PLT-NDs 有效地与抗血小板自身抗体结合,从而阻止它们与血小板相互作用。在血小板减少症的小鼠模型中,PLT-NDs 成功中和病理性抗血小板抗体,防止血小板耗竭并维持止血。在另一项应用中,PLT-NDs 有效中和耐甲氧西林金黄色葡萄球菌(MRSA)分泌的细菌毒力因子的细胞毒性。在 MRSA 感染的小鼠模型中,用 PLT-NDs 治疗可使感染小鼠获得显著的生存益处。此外,如在小鼠中进行的急性毒性研究所示,PLT-NDs 显示出良好的生物相容性和生物安全性。这些发现强调了 PLT-NDs 作为一种有前景的血小板模拟物用于中和各种靶向血小板的生物制剂的潜力。总体而言,这项工作通过创建由天然血小板膜制成的独特盘状纳米结构,扩展了模仿血小板的纳米医学的范围。

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