The alarmin interleukin-33 modulates platelet proteome, function, and biogenesis

血小板 血小板生成素 细胞生物学 血小板活化 化学 活体显微镜检查 炎症 止血 P-选择素 血小板粘附 受体 信号转导 免疫系统 刺激 免疫学 造血 先天免疫系统 趋化因子 血栓 体内 生物 调节器 巨核细胞 巨核细胞生成 生物发生 伤口愈合 血小板糖蛋白GPIIb-iia复合物 信号转导衔接蛋白 促炎细胞因子 碎片(计算) 外体 功能(生物学) 泛素连接酶 蛋白酶激活受体 凝血酶 趋化性
作者
Lucie Gelon,Stéphane Roga,Anne Gonzalez-de-Peredo,E. A. G. Vidal,Jean‐Philippe Girard,Sonia Séverin,Emma Lefrancais
出处
期刊:Blood Advances [Elsevier BV]
卷期号:10 (7): 2333-2348 被引量:1
标识
DOI:10.1182/bloodadvances.2025018363
摘要

ABSTRACT: Platelets, traditionally recognized for their involvement in hemostasis and wound healing, also play a central role in immune regulation and inflammation. Their function and production adapt in response to inflammatory cues such as cytokines and danger-associated molecular patterns. Interleukin-33 (IL-33), an alarmin released during tissue damage, particularly in lung inflammation, has been implicated in influencing platelet biology, though its exact effects remain poorly understood. To clarify IL-33's role, we examined its impact on platelet production, proteome, adhesion, secretion, and aggregation using platelets from IL-33-deficient (IL-33 knockout [IL-33KO]) mice and IL-33 stimulation in vivo. Our results reveal that although platelets themselves do not express IL-33, platelets isolated from IL-33KO mice display altered proteomic signatures and reduced adhesion to fibrinogen, podoplanin, and laminin, alongside impaired thrombus formation under shear stress. IL-33 administration in vivo led to proteomic remodeling characterized by increased expression of inflammatory proteins, as well as changes in platelet morphology, including increased size, typically associated with de novo production. Using lung intravital microscopy, we visualized platelet fragmentation within the lung vasculature in real time, and observed enhanced fragmentation following IL-33 stimulation. Interestingly, ST2, the receptor for IL-33, is expressed in subsets of mouse and human megakaryocytes and hematopoietic progenitors, particularly those involved in a noncanonical pathway of thrombopoiesis that enables the rapid replenishment of platelets during inflammation, infection, and aging. Together, these findings identify IL-33 as a pivotal regulator of platelet function and production, linking inflammatory signaling to the dynamic regulation of thrombopoiesis.
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