Department of Molecular and Cellular Biochemistry, College of Medicine, University of Kentucky, Lexington, KY, USA.
Department of Neuroscience, College of Medicine, University of Kentucky, Lexington, KY, USA.
Platelets. 2023 Dec;34(1):2222184. doi: 10.1080/09537104.2023.2222184.
Although the presence of glycogen in platelets was established in the 1960s, its importance to specific functions (., activation, secretion, aggregation, and clot contraction) remains unclear. Patients with glycogen storage disease often present with increased bleeding and glycogen phosphorylase (GP) inhibitors, when used as treatments for diabetes, induce bleeding in preclinical studies suggesting some role for this form of glucose in hemostasis. In the present work, we examined how glycogen mobilization affects platelet function using GP inhibitors (CP316819 and CP91149) and a battery of assays. Blocking GP activity increased glycogen levels in resting and thrombin-activated platelets and inhibited platelet secretion and clot contraction, with minimal effects on aggregation. Seahorse energy flux analysis and metabolite supplementation experiments suggested that glycogen is an important metabolic fuel whose role is affected by platelet activation and the availability of external glucose and other metabolic fuels. Our data shed light on the bleeding diathesis in glycogen storage disease patients and offer insights into the potential effects of hyperglycemia on platelets.
虽然血小板中糖原的存在早在 20 世纪 60 年代就已确立,但它对特定功能(如激活、分泌、聚集和凝块收缩)的重要性仍不清楚。患有糖原贮积病的患者常表现出出血增加,而糖原磷酸化酶 (GP) 抑制剂在用于治疗糖尿病的临床前研究中会引起出血,这表明这种形式的葡萄糖在止血中具有一定作用。在本工作中,我们使用 GP 抑制剂(CP316819 和 CP91149)和一系列测定法检查了糖原动员如何影响血小板功能。阻断 GP 活性会增加静息和凝血酶激活血小板中的糖原水平,并抑制血小板分泌和凝块收缩,对聚集的影响最小。 Seahorse 能量通量分析和代谢物补充实验表明,糖原是一种重要的代谢燃料,其作用受血小板激活以及外部葡萄糖和其他代谢燃料的可用性的影响。我们的数据阐明了糖原贮积病患者出血倾向的原因,并为高血糖对血小板的潜在影响提供了新的见解。