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Lipopolysaccharide (LPS) induced pulmonary neutrophil recruitment and platelet activation is mediated via the P2Y1 and P2Y14 receptors in mice

机译:脂多糖(LPS)诱导的肺中性粒细胞募集和血小板活化通过小鼠中的P2Y1和P2Y14受体介导

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摘要

Platelet activation occurs during host defence and in various inflammatory disorders. In animal models of infection and inflammation, experimental depletion of platelets leads to significantly reduced leukocyte recruitment and impaired clearance of pathogens from the lung. It is now appreciated that purinergic receptor activation is required for leukocyte activation, motility and adhesion, and platelet interactions with leukocytes can be modulated by purinergic stimulation of platelets. Here, we have investigated the role of platelet P2Y1, P2Y12, P2Y14, and P2X1 receptors on leukocyte recruitment and chemotaxis. Mice were administered either vehicle controls or selective P2Y1, P2Y12, P2Y14, or P2X1 antagonists intravenously before intranasal administration of lipopolysaccharide (LPS) to investigate the effect of these drugs on pulmonary leukocyte recruitment, peripheral platelet counts, bleeding times, and ex vivo platelet aggregation. Separately, platelets were incubated with P2Y1, P2Y12, P2X1 antagonists, or P2Y14 agonists to assess effects on platelet-induced neutrophil chemotaxis in vitro. Pulmonary neutrophil recruitment induced by intranasal LPS administration was inhibited in mice administered either with P2Y1 or P2Y14 antagonists, but not with P2Y12 or P2X1 antagonists. Furthermore, the administration of either a P2Y1 or a P2Y14 antagonist reversed the incidence of peripheral thrombocytopaenia associated with LPS exposure. Bleeding times were significantly increased in mice administered P2Y1, P2Y12, or P2X1 antagonists, whilst ex vivo platelet aggregation to ADP was significantly reduced. These haemostatic responses remained unaltered following antagonism of P2Y14. In vitro chemotaxis assays revealed direct antagonism of platelet P2Y1, but not P2Y12 or P2X1 receptors suppressed platelet-dependent neutrophil motility towards Macrophage derived chemokine (MDC, CCL22). Furthermore, the stimulation of platelets with selective P2Y14 agonists (UDP-glucose, MRS2690) resulted in significant platelet-dependent neutrophil chemotaxis. These results reveal a role for P2Y1 and P2Y14 activation of platelets following exposure to LPS, whilst haemostatic indices were unaffected by inhibition of platelet function with the P2Y14 antagonist in response to LPS.
机译:血小板激活发生在宿主防御和各种炎症性疾病中。在感染和炎症的动物模型中,血小板的实验耗竭导致白细胞募集明显减少,病原体从肺部的清除受到损害。现在认识到,白细胞活化,运动性和粘附需要嘌呤能受体激活,并且可以通过嘌呤能刺激血小板来调节与白细胞的血小板相互作用。在这里,我们研究了血小板P2Y1,P2Y12,P2Y14和P2X1受体在白细胞募集和趋化性中的作用。鼻内给予脂多糖(LPS)之前,静脉内给予小鼠媒介物对照或选择性P2Y1,P2Y12,P2Y14或P2X1拮抗剂,以研究这些药物对肺白细胞募集,外周血血小板计数,出血时间和离体血小板聚集的影响。分别将血小板与P2Y1,P2Y12,P2X1拮抗剂或P2Y14激动剂一起孵育,以评估其对血小板诱导的中性粒细胞趋化性的影响。通过鼻内LPS给药诱导的肺中性粒细胞募集在用P2Y1或P2Y14拮抗剂给药的小鼠中受到抑制,而用P2Y12或P2X1拮抗剂给药则没有受到抑制。此外,施用P2Y1或P2Y14拮抗剂可逆转与LPS暴露相关的外周血血小板减少症的发生。给予P2Y1,P2Y12或P2X1拮抗剂的小鼠的出血时间显着增加,而离体至ADP的血小板聚集显着减少。在P2Y14拮抗后,这些止血反应保持不变。体外趋化性测定显示了血小板P2Y1的直接拮抗作用,但P2Y12或P2X1受体没有抑制血小板依赖性嗜中性粒细胞对巨噬细胞衍生趋化因子(MDC,CCL22)的运动。此外,用选择性P2Y14激动剂(UDP-葡萄糖,MRS2690)刺激血小板导致了显着的血小板依赖性中性粒细胞趋化性。这些结果揭示了暴露于LPS后血小板P2Y1和P2Y14活化的作用,而止血指数不受P2Y14拮抗剂响应LPS抑制血小板功能的影响。

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