Zhang Guoying, Han Jingyan, Welch Emily J, Ye Richard D, Voyno-Yasenetskaya Tatyana A, Malik Asrar B, Du Xiaoping, Li Zhenyu
Department of Pharmacology, University of Illinois, Chicago, IL 60612, USA.
J Immunol. 2009 Jun 15;182(12):7997-8004. doi: 10.4049/jimmunol.0802884.
Bacterial LPS induces rapid thrombocytopenia, hypotension, and sepsis. Although growing evidence suggests that platelet activation plays a critical role in LPS-induced thrombocytopenia and tissue damage, the mechanism of LPS-mediated platelet activation is unclear. In this study, we show that LPS stimulates platelet secretion of dense and alpha granules as indicated by ATP release and P-selectin expression, and thus enhances platelet activation induced by low concentrations of platelet agonists. Platelets express components of the LPS receptor-signaling complex, including TLR (TLR4), CD14, MD2, and MyD88, and the effect of LPS on platelet activation was abolished by an anti-TLR4-blocking Ab or TLR4 knockout, suggesting that the effect of LPS on platelet aggregation requires the TLR4 pathway. Furthermore, LPS-potentiated thrombin- and collagen-induced platelet aggregation and FeCl(3)-induced thrombus formation were abolished in MyD88 knockout mice. LPS also induced cGMP elevation and the stimulatory effect of LPS on platelet aggregation was abolished by inhibitors of NO synthase and the cGMP-dependent protein kinase (PKG). LPS-induced cGMP elevation was inhibited by an anti-TLR4 Ab or by TLR4 deficiency, suggesting that activation of the cGMP/protein kinase G pathway by LPS involves the TLR4 pathway. Taken together, our data indicate that LPS stimulates platelet secretion and potentiates platelet aggregation through a TLR4/MyD88- and cGMP/PKG-dependent pathway.
细菌脂多糖(LPS)可导致快速血小板减少、低血压和败血症。尽管越来越多的证据表明血小板活化在LPS诱导的血小板减少和组织损伤中起关键作用,但LPS介导的血小板活化机制尚不清楚。在本研究中,我们发现LPS刺激血小板分泌致密颗粒和α颗粒,这可通过ATP释放和P-选择素表达来表明,从而增强低浓度血小板激动剂诱导的血小板活化。血小板表达LPS受体信号复合物的成分,包括Toll样受体(TLR,TLR4)、CD14、MD2和髓样分化因子88(MyD88),并且抗TLR4阻断抗体或TLR4基因敲除可消除LPS对血小板活化的作用,这表明LPS对血小板聚集的作用需要TLR4途径。此外,在MyD88基因敲除小鼠中,LPS增强的凝血酶和胶原诱导的血小板聚集以及FeCl₃诱导的血栓形成被消除。LPS还诱导环磷酸鸟苷(cGMP)升高,并且LPS对血小板聚集的刺激作用被一氧化氮合酶抑制剂和cGMP依赖性蛋白激酶(PKG)消除。抗TLR4抗体或TLR4缺陷可抑制LPS诱导的cGMP升高,这表明LPS对cGMP/蛋白激酶G途径的激活涉及TLR4途径。综上所述,我们的数据表明LPS通过TLR4/MyD88和cGMP/PKG依赖性途径刺激血小板分泌并增强血小板聚集。