Veninga Alicia, Handtke Stefan, Aurich Konstanze, Tullemans Bibian M E, Brouns Sanne L N, Schwarz Silas L, Heubel-Moenen Floor C J I, Greinacher Andreas, Heemskerk Johan W M, van der Meijden Paola E J, Thiele Thomas
Department of Biochemistry, Cardiovascular Research Institute Maastricht (CARIM), Maastricht University, Maastricht, The Netherlands.
Transfusionsmedizin, Universitätsmedizin Greifswald, Greifswald, Germany.
Blood Adv. 2022 Jul 26;6(14):4162-4173. doi: 10.1182/bloodadvances.2021006904.
Platelets within one individual display heterogeneity in reactivity, size, age, and expression of surface receptors. To investigate the combined intraindividual contribution of platelet size, platelet age, and receptor expression levels on the reactivity of platelets, we studied fractions of large and small platelets from healthy donors separated by using differential centrifugation. Size-separated platelet fractions were perfused over a collagen-coated surface to assess thrombus formation. Multicolor flow cytometry was used to characterize resting and stimulated platelet subpopulations, and platelet age was determined based on RNA and HLA-I labeling. Signal transduction was analyzed by measuring consecutive phosphorylation of serine/threonine-protein kinase Akt. Compared with small platelets, large platelets adhered faster to collagen under flow and formed larger thrombi. Among the large platelets, a highly reactive juvenile platelet subpopulation was identified with high glycoprotein VI (GPVI) expression. Elevated GPVI expression correlated with high HLA-I expression, RNA content, and increased platelet reactivity. There was a stronger difference in Akt phosphorylation and activation upon collagen stimulation between juvenile and older platelets than between large and small platelets. GPVI expression and platelet reactivity decreased throughout platelet storage at 22°C and was better maintained throughout cold storage at 4°C. We further detected higher GPVI expression in platelets of patients with immune thrombocytopenia. Our findings show that high GPVI expression is a feature of highly reactive juvenile platelets, which are predominantly found among the large platelet population, explaining the better performance of large platelets during thrombus formation. These data are important for studies of thrombus formation, platelet storage, and immune thrombocytopenia.
同一个体内的血小板在反应性、大小、年龄和表面受体表达方面存在异质性。为了研究血小板大小、血小板年龄和受体表达水平对血小板反应性的个体内综合影响,我们使用差速离心法对健康供体的大、小血小板组分进行了研究。将按大小分离的血小板组分灌注到胶原包被的表面以评估血栓形成。采用多色流式细胞术对静息和活化的血小板亚群进行表征,并根据RNA和HLA-I标记确定血小板年龄。通过测量丝氨酸/苏氨酸蛋白激酶Akt的连续磷酸化来分析信号转导。与小血小板相比,大血小板在流动状态下能更快地黏附于胶原并形成更大的血栓。在大血小板中,鉴定出一个高反应性的年轻血小板亚群,其糖蛋白VI(GPVI)表达较高。GPVI表达升高与HLA-I高表达、RNA含量增加以及血小板反应性增强相关。与大、小血小板之间相比,年轻血小板与老年血小板在胶原刺激后Akt磷酸化和活化方面的差异更大。在22℃血小板储存过程中,GPVI表达和血小板反应性降低,而在4℃冷藏过程中能更好地维持。我们还进一步检测到免疫性血小板减少症患者血小板中GPVI表达更高。我们的研究结果表明,高GPVI表达是高反应性年轻血小板的一个特征,这些血小板主要存在于大血小板群体中,这解释了大血小板在血栓形成过程中表现更好的原因。这些数据对于血栓形成研究、血小板储存和免疫性血小板减少症研究具有重要意义。