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血小板清除和转化机制以改善血小板储存。

Mechanisms of platelet clearance and translation to improve platelet storage.

机构信息

Aflac Cancer and Blood Disorders Center, Children's Healthcare of Atlanta, Atlanta, GA; and.

Department of Pediatrics, School of Medicine, Emory University, Atlanta, GA.

出版信息

Blood. 2018 Apr 5;131(14):1512-1521. doi: 10.1182/blood-2017-08-743229. Epub 2018 Feb 23.

Abstract

Hundreds of billions of platelets are cleared daily from circulation via efficient and highly regulated mechanisms. These mechanisms may be stimulated by exogenous reagents or environmental changes to accelerate platelet clearance, leading to thrombocytopenia. The interplay between antiapoptotic Bcl-x and proapoptotic molecules Bax and Bak sets an internal clock for the platelet lifespan, and BH3-only proteins, mitochondrial permeabilization, and phosphatidylserine (PS) exposure may also contribute to apoptosis-induced platelet clearance. Binding of plasma von Willebrand factor or antibodies to the ligand-binding domain of glycoprotein Ibα (GPIbα) on platelets can activate GPIb-IX in a shear-dependent manner by inducing unfolding of the mechanosensory domain therein, and trigger downstream signaling in the platelet including desialylation and PS exposure. Deglycosylated platelets are recognized by the Ashwell-Morell receptor and potentially other scavenger receptors, and are rapidly cleared by hepatocytes and/or macrophages. Inhibitors of platelet clearance pathways, including inhibitors of GPIbα shedding, neuraminidases, and platelet signaling, are efficacious at preserving the viability of platelets during storage and improving their recovery and survival in vivo. Overall, common mechanisms of platelet clearance have begun to emerge, suggesting potential strategies to extend the shelf-life of platelets stored at room temperature or to enable refrigerated storage.

摘要

数百亿个血小板每天通过高效且高度调控的机制从循环中清除。这些机制可能会被外源性试剂或环境变化刺激,以加速血小板清除,导致血小板减少症。抗凋亡 Bcl-x 和促凋亡分子 Bax 和 Bak 之间的相互作用为血小板寿命设定了内部时钟,而 BH3 仅蛋白、线粒体通透性和磷脂酰丝氨酸(PS)暴露也可能导致凋亡诱导的血小板清除。血浆 von Willebrand 因子或抗体与血小板上糖蛋白 Ibα(GPIbα)的配体结合域结合,可通过诱导其中的机械感受器域展开,以剪切依赖性方式激活 GPIb-IX,并触发血小板中的下游信号转导,包括去唾液酸化和 PS 暴露。去糖基化的血小板被 Ashwell-Morell 受体和潜在的其他清道夫受体识别,并被肝细胞和/或巨噬细胞迅速清除。血小板清除途径的抑制剂,包括 GPIbα 脱落抑制剂、神经氨酸酶和血小板信号抑制剂,在储存过程中有效保持血小板的活力,并提高其在体内的恢复和存活率。总的来说,血小板清除的常见机制已经开始显现,这为延长在室温下储存的血小板的货架寿命或实现冷藏储存提供了潜在策略。

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