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中性粒细胞衍生的S100钙结合蛋白A8/A9促进糖尿病中的网状血小板增多和动脉粥样硬化。

Neutrophil-derived S100 calcium-binding proteins A8/A9 promote reticulated thrombocytosis and atherogenesis in diabetes.

作者信息

Kraakman Michael J, Lee Man Ks, Al-Sharea Annas, Dragoljevic Dragana, Barrett Tessa J, Montenont Emilie, Basu Debapriya, Heywood Sarah, Kammoun Helene L, Flynn Michelle, Whillas Alexandra, Hanssen Nordin Mj, Febbraio Mark A, Westein Erik, Fisher Edward A, Chin-Dusting Jaye, Cooper Mark E, Berger Jeffrey S, Goldberg Ira J, Nagareddy Prabhakara R, Murphy Andrew J

机构信息

Haematopoiesis and Leukocyte Biology, Baker Heart and Diabetes Institute, Melbourne, Victoria, Australia.

Division of Cardiology.

出版信息

J Clin Invest. 2017 Jun 1;127(6):2133-2147. doi: 10.1172/JCI92450. Epub 2017 May 15.

Abstract

Platelets play a critical role in atherogenesis and thrombosis-mediated myocardial ischemia, processes that are accelerated in diabetes. Whether hyperglycemia promotes platelet production and whether enhanced platelet production contributes to enhanced atherothrombosis remains unknown. Here we found that in response to hyperglycemia, neutrophil-derived S100 calcium-binding proteins A8/A9 (S100A8/A9) interact with the receptor for advanced glycation end products (RAGE) on hepatic Kupffer cells, resulting in increased production of IL-6, a pleiotropic cytokine that is implicated in inflammatory thrombocytosis. IL-6 acts on hepatocytes to enhance the production of thrombopoietin, which in turn interacts with its cognate receptor c-MPL on megakaryocytes and bone marrow progenitor cells to promote their expansion and proliferation, resulting in reticulated thrombocytosis. Lowering blood glucose using a sodium-glucose cotransporter 2 inhibitor (dapagliflozin), depleting neutrophils or Kupffer cells, or inhibiting S100A8/A9 binding to RAGE (using paquinimod), all reduced diabetes-induced thrombocytosis. Inhibiting S100A8/A9 also decreased atherogenesis in diabetic mice. Finally, we found that patients with type 2 diabetes have reticulated thrombocytosis that correlates with glycated hemoglobin as well as increased plasma S100A8/A9 levels. These studies provide insights into the mechanisms that regulate platelet production and may aid in the development of strategies to improve on current antiplatelet therapies and to reduce cardiovascular disease risk in diabetes.

摘要

血小板在动脉粥样硬化形成以及血栓形成介导的心肌缺血过程中发挥关键作用,而这些过程在糖尿病中会加速。高血糖是否促进血小板生成以及血小板生成增加是否会导致动脉粥样硬化血栓形成加剧仍不清楚。在此,我们发现,作为对高血糖的反应,中性粒细胞衍生的S100钙结合蛋白A8/A9(S100A8/A9)与肝库普弗细胞上的晚期糖基化终产物受体(RAGE)相互作用,导致白细胞介素-6(IL-6)生成增加,IL-6是一种多效性细胞因子,与炎症性血小板增多有关。IL-6作用于肝细胞以增强血小板生成素的产生,血小板生成素进而与其在巨核细胞和骨髓祖细胞上的同源受体c-MPL相互作用,促进它们的扩增和增殖,导致网状血小板增多。使用钠-葡萄糖协同转运蛋白2抑制剂(达格列净)降低血糖、清除中性粒细胞或库普弗细胞,或抑制S100A8/A9与RAGE的结合(使用帕喹莫德),均能降低糖尿病诱导的血小板增多。抑制S100A8/A9也能减少糖尿病小鼠的动脉粥样硬化形成。最后,我们发现2型糖尿病患者存在网状血小板增多,其与糖化血红蛋白以及血浆S100A8/A9水平升高相关。这些研究为调节血小板生成的机制提供了见解,并可能有助于制定策略来改进当前的抗血小板治疗方法以及降低糖尿病患者的心血管疾病风险。

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