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衰老的血小板将其止血特性转变为炎症功能。

Aging platelets shift their hemostatic properties to inflammatory functions.

作者信息

Anjum Afra, Mader Magdalena, Mahameed Shaan, Muraly Abhinaya, Denorme Frederik, Kliem Fabian P, Rossaro Dario, Agköl Sezer, Di Fina Lea, Mulkers Maité, Laun Lisa, Li Lukas, Kupper Nadja, Yue Keyang, Hoffknecht Marie-Louise, Akhalkatsi Anastassia, Loew Quentin, Pircher Joachim, Escaig Raphael, Strasser Erwin, Wichmann Christian, Pekayvaz Kami, Nieswandt Bernhard, Schulz Christian, Robles Maria S, Kaiser Rainer, Massberg Steffen, Campbell Robert, Nicolai Leo

机构信息

Department of Medicine I, Ludwig Maximilian University Hospital, Ludwig Maximilian University Munich, Munich, Germany.

German Centre for Cardiovascular Research, Partner Site Munich Heart Alliance, Munich, Germany.

出版信息

Blood. 2025 Apr 3;145(14):1568-1582. doi: 10.1182/blood.2024024901.

Abstract

Platelets are crucial players in hemostasis and thrombosis but also contribute to immune regulation and host defense, using different receptors, signaling pathways, and effector functions, respectively. Whether distinct subsets of platelets specialize in these diverse tasks is insufficiently understood. Here, we used a pulse-labeling method in Mus musculus models for tracking in vivo platelet aging and its functional implications. Using in vitro and in vivo assays, we reveal that young, reticulated platelets show heightened responses in the setting of clot formation, with corresponding, increased responses to agonists, adhesion, and retractile function. Unexpectedly, aged platelets lose their hemostatic proficiency but are more prone to react to inflammatory challenge: compared with reticulated platelets, this cohort was more likely to form platelet-leukocyte aggregates and showed increased adhesion to neutrophils in vitro, as well as enhanced bactericidal function. In vivo, this was reflected in increased pulmonary recruitment of aged platelets in an acute lung injury model. Proteomic analyses confirmed the upregulation of immune pathways in this cohort, including enhanced procoagulant function. In mouse models of prolonged platelet half-life, this resulted in increased pulmonary leukocyte infiltration and inflammation upon acute lung injury. Similarly, human platelet concentrates decreased their hemostatic function and elevated their putative immunomodulatory potential in vitro over time, and in a mouse model of platelet transfusion, aged platelet concentrates resulted in augmented inflammation. In summary, we show that platelets exhibit age-dependent phenotypic shifts, allowing them to fulfill their diverse tasks in the vasculature. Because functional alterations of aging platelets extend to platelet concentrates, this may hold important implications for transfusion medicine.

摘要

血小板是止血和血栓形成的关键参与者,但也分别通过不同的受体、信号通路和效应功能参与免疫调节和宿主防御。目前对血小板的不同亚群是否专门负责这些不同任务的了解还不够充分。在这里,我们在小家鼠模型中使用脉冲标记方法来追踪体内血小板的老化及其功能影响。通过体外和体内试验,我们发现年轻的网状血小板在血栓形成过程中表现出更强的反应,对激动剂、黏附及收缩功能的反应相应增加。出乎意料的是,老化血小板失去了止血能力,但更容易对炎症刺激产生反应:与网状血小板相比,这一群组更易形成血小板 - 白细胞聚集体,在体外对中性粒细胞的黏附增加,杀菌功能增强。在体内,这表现为急性肺损伤模型中老化血小板在肺部的募集增加。蛋白质组学分析证实了这一群组中免疫途径的上调,包括促凝血功能增强。在血小板半衰期延长的小鼠模型中,这导致急性肺损伤时肺部白细胞浸润和炎症增加。同样,随着时间推移,人血小板浓缩物在体外的止血功能下降,其假定的免疫调节潜力升高,在血小板输血的小鼠模型中,老化血小板浓缩物导致炎症加剧。总之,我们表明血小板表现出年龄依赖性的表型转变,使其能够在脉管系统中完成各种任务。由于老化血小板的功能改变延伸至血小板浓缩物,这可能对输血医学具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bee7/12002221/3049be0552d0/BLOOD_BLD-2024-024901-ga1.jpg

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