血小板浓缩物中 CD39+ 细胞外小泡的免疫相互作用和调节作用

Adèle Silane Delorme, Alexandra Laguide, Marie Tamagne, M. Pinheiro, Léonie Cagnet, Deborah Neyrinck-Leglantier, Mehdi Khelfa, Sabine Cleophax, France Pirenne, Benoît Vingert
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引用次数: 0

摘要

CD39 在免疫调节和抑制效应细胞方面发挥着重要作用。它在免疫细胞(包括 Tregs)和从质膜上萌发的细胞外囊泡(EVs)上都有表达。血小板输注可能会诱发针对 HLA-I 抗原的异体免疫,导致患者对血小板输注产生耐受性,从而对患者造成严重后果。Tregs可能在决定血液病患者是否发生同种免疫方面起着关键作用。我们假设 CD39+ EVs 可能会发挥免疫调节作用,尤其是在血液病患者输注血小板的情况下。这种异体免疫会导致异体抗体的产生,并对 CD39 的调节作用敏感。我们通过流式细胞术鉴定了血小板浓缩物中 CD39+ EVs 的特征,评估了 CD39+ EVs 的绝对数量和细胞来源。我们还进行了功能测试,以评估与免疫细胞的相互作用及其功能。我们发现,血小板浓缩物中的 CD39+ EVs 具有抑制表型,这种表型可转移给与其相互作用的免疫细胞:我们发现,血小板浓缩物中的 CD39+ EVs 具有抑制表型,这种抑制表型可转移至与之相互作用的免疫细胞:CD4+ 和 CD8+ T 淋巴细胞(TLs)、树突状细胞、单核细胞和 B 淋巴细胞(BLs)。此外,血小板浓缩物中 CD39+ EVs 的浓度各不相同,10% 的浓缩物中 CD39+ EVs 的浓度非常高。这些 EV 的数量决定了 EV 细胞之间的相互作用。最后,还观察到 BLs、CD4+ TLs 和 CD39+ EVs 在免疫球蛋白生成和淋巴细胞增殖方面的功能性相互作用,这对患者的免疫学管理具有潜在的意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Immune interactions and regulation with CD39+ extracellular vesicles from platelet concentrates
CD39 plays an important role in the immunoregulation and inhibition of effector cells. It is expressed on immune cells, including Tregs, and on extracellular vesicles (EVs) budding from the plasma membrane. Platelet transfusion may induce alloimmunization against HLA-I antigens, leading to refractoriness to platelet transfusion with severe consequences for patients. Tregs may play a key role in determining whether alloimmunization occurs in patients with hematologic disorders. We hypothesized that CD39+ EVs might play an immunoregulatory role, particularly in the context of platelet transfusions in patients with hematologic disorders. Such alloimmunization leads to the production of alloantibodies and is sensitive to the regulatory action of CD39.We characterized CD39+ EVs in platelet concentrates by flow cytometry. The absolute numbers and cellular origins of CD39+ EVs were evaluated. We also performed functional tests to evaluate interactions with immune cells and their functions.We found that CD39+ EVs from platelet concentrates had an inhibitory phenotype that could be transferred to the immune cells with which they interacted: CD4+ and CD8+ T lymphocytes (TLs), dendritic cells, monocytes, and B lymphocytes (BLs). Moreover, the concentration of CD39+ EVs in platelet concentrates varied and was very high in 10% of concentrates. The number of these EVs present was determinant for EV-cell interactions. Finally, functional interactions were observed with BLs, CD4+ TLs and CD39+ EVs for immunoglobulin production and lymphoproliferation, with potential implications for the immunological management of patients.
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