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P2Y14 receptor has a critical role in acute gouty arthritis by regulating pyroptosis of macrophages

机译:P2Y14受体通过调节巨噬细胞的糊状酶对急性痛风关节炎具有关键作用

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Nod-like receptor protein 3 (NLRP3)-mediated pyroptosis has a causal role in the pathogenesis of gout. P2Y14 receptor (P2Y14R) distributed in immune cells including macrophages is a Gi-coupled receptor that inhibits the synthesis of cAMP, which has been regarded as a potential regulator of inflammatory response. Nevertheless, the role of P2Y14R in MSU-induced pyroptosis of macrophages involved in acute gouty arthritis is still unclear. In our present study, P2Y14R knockout (P2Y14R-KO) disrupted MSU-induced histopathologic changes in rat synoviums, accompanied with a significant inhibition of pyroptotic cell death characterized by Caspase-1/PI double-positive and blockade of NLRP3 inflammasome activation in synovial tissues, which was consistent with that observed in in vitro studies. Owing to the interaction of NLRP3 inflammasome and cAMP, we then investigated the effect of adenylate cyclase activator (Forskolin) on macrophage pyroptosis and gout flare caused by MSU stimulation. The reversal effect of Forskolin verified the negative regulatory role of cAMP in MSU-induced pyroptosis. More importantly, adenylate cyclase inhibitor (SQ22536) intervention led to a reversal of protection attributed to P2Y14R deficiency. Findings in air pouch animal models also verified aforementioned experimental results. Our study first identified the role of P2Y14R/cAMP/NLRP3 signaling pathway in acute gouty arthritis, which provides a novel insight into the pathological mechanisms of pyroptosis-related diseases.
机译:NOD样受体蛋白3(NLRP3)介导的釜凋亡在痛风的发病机制中具有因果作用。分布在包括巨噬细胞的免疫细胞中的P2Y14受体(P2Y14R)是一种Gi偶联受体,其抑制了阵营的合成,该受体被认为是炎症反应的潜在调节因子。然而,P2Y14R在MSU诱导的急性痛风性关节炎中诱导巨噬细胞γ诱导的巨噬细胞的作用仍不清楚。在我们目前的研究中,P2Y14R敲除(P2Y14R-KO)中断了大鼠僵局的MSU诱导的组织病理学变化,伴随着通过在滑膜组织中的Caspase-1 / Pi双阳性和封闭NLRP3炎症组活化的糊状细胞死亡的显着抑制,这与在体外研究中观察到的一致性。由于NLRP3炎症组和营地的相互作用,我们研究了MSU刺激引起的腺苷酸环酶活化剂(Forskolin)对巨噬细胞糊死肌和痛风眩光的影响。 Forskolin的逆转效果验证了MSU诱导的糊化症阵营的负调节作用。更重要的是,腺苷酸环化酶抑制剂(SQ22536)干预导致归因于P2Y14R缺乏的保护。空气袋动物模型的调查结果还验证了上述实验结果。我们的研究首先鉴定了P2Y14R / CAMP / NLRP3信号传导途径在急性痛风性关节炎中的作用,这提供了一种对糊菌病相关疾病的病理机制的新颖洞察力。

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