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红细胞膜包覆的纳米颗粒使不相容的血液能够输血。

Red Blood Cell Membrane-Coated Nanoparticles Enable Incompatible Blood Transfusions.

机构信息

Department of Obstetrics and Gynecology, The Second Affiliated Hospital of Wenzhou Medical University, Wenzhou, 325027, China.

Department of Pharmacy, The Second Affiliated Hospital of Wenzhou Medical University, Wenzhou, 325027, China.

出版信息

Adv Sci (Weinh). 2024 Aug;11(29):e2310230. doi: 10.1002/advs.202310230. Epub 2024 Jun 5.

Abstract

Blood transfusions save lives and improve health every day. Despite the matching of blood types being stricter than it ever has been, emergency transfusions among incompatible blood types are still inevitable in the clinic when there is a lack of acceptable blood types for recipients. Here to overcome this, a counter measure nanoplatform consisting of a polymeric core coated by a red blood cell (RBC) membrane is developed. With A-type or B-type RBC membrane camouflaging, the nanoplatform is capable of specifically capturing anti-A or anti-B IgM antibodies within B-type or A-type whole blood, thereby decreasing the corresponding IgM antibody levels and then allowing the incompatible blood transfusions. In addition to IgM, the anti-RBC IgG antibody in a passive immunization murine model can likewise be neutralized by this nanoplatform, leading to prolonged circulation time of incompatible donor RBCs. Noteworthily, nanoplatform made by expired RBCs (>42 days stored hypothermically) and then subjected to lyophilization does not impair their effect on antibody neutralization. Most importantly, antibody-captured RBC-NP do not exacerbate the risk of inflammation, complement activation, and coagulopathy in an acute hemorrhagic shock murine model. Overall, this biomimetic nanoplatform can safely neutralize the antibody to enable incompatible blood transfusion.

摘要

输血每天都在拯救生命、增进健康。尽管血型匹配比以往任何时候都更加严格,但当受血者缺乏可接受的血型时,临床中仍不可避免地会出现不相容血型的紧急输血。为了克服这一难题,开发了一种由聚合物核包覆红细胞(RBC)膜组成的对策纳米平台。通过 A 型或 B 型 RBC 膜伪装,该纳米平台能够在 B 型或 A 型全血中特异性捕获抗 A 或抗 B IgM 抗体,从而降低相应的 IgM 抗体水平,随后允许进行不相容的输血。除了 IgM 之外,在被动免疫的鼠模型中,该纳米平台还可以中和抗 RBC IgG 抗体,从而延长不相容供体 RBC 的循环时间。值得注意的是,由超过 42 天冷藏储存的过期 RBC 制成的纳米平台并进行冻干处理不会损害其对抗体中和的效果。最重要的是,抗体捕获的 RBC-NP 在急性失血性休克鼠模型中不会增加炎症、补体激活和凝血障碍的风险。总体而言,这种仿生纳米平台可以安全地中和抗体,从而实现不相容输血。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d4d/11304279/9db51d678d8a/ADVS-11-2310230-g006.jpg

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