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Lipoxins Inhibit Akt/PKB Activation and Cell Cycle Progression in Human Mesangial Cells

机译:脂蛋白抑制人肾小球系膜细胞中的Akt / PKB活化和细胞周期进程

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摘要

Lipoxins (LX) are endogenously produced eicosanoids with a spectrum of bioactions that suggest anti-inflammatory, pro-resolution roles for these agents. Mesangial cell (MC) proliferation plays a pivotal role in the pathophysiology of glomerular inflammation and is coupled to sclerosis and tubulointerstitial fibrosis. We have previously reported that LXA4 acts through a specific G-protein-coupled-receptor (GPCR) to modulate MC proliferation in response to the proinflammatory mediators LTD4 and platelet-derived growth factor (PDGF). Further investigations revealed that these effects were mediated by modulation of receptor tyrosine kinase activity. Here we have explored the underlying mechanisms and report inhibition of growth factor (PDGF; epithelial growth factor) activation of Akt/PKB by LXA4. LXA4 (10 nmol/L) modulates PDGF-induced (10 ng/ml, 24 hours) decrements in the levels of cyclin kinase inhibitors p21Cip1 and p27Kip1. PDGF-induced increases in CDK2-cyclin E complex formation are also inhibited by LXA4. The potential of LXA4 as an anti-inflammatory therapeutic is compromised by its degradation; this has been circumvented by synthesis of stable analogs. We report that 15-(>R/S)-methyl-LXA4 and 16-phenoxy-LXA4 mimic the native compound with respect to modulation of cell proliferation and PDGF-induced changes in cell cycle proteins. >In vivo, MC proliferation in response to PDGF is associated with TGFβ1 production and the subsequent development of renal fibrosis. Here we demonstrate that prolonged (24 to 48 hours) exposure to PDGF is associated with autocrine TGFβ1 production, which is significantly reduced by LXA4. In aggregate these data demonstrate that LX inhibit PDGF stimulated proliferation via modulation of the PI-3-kinase pathway preventing mitogen-elicited G1-S phase progression and suggest the therapeutic potential of LX as anti-fibrotic agents.
机译:Lipoxins(LX)是内源性类花生酸,具有一系列生物作用,表明这些药物具有抗炎,促分解作用。肾小球系膜细胞(MC)的增殖在肾小球炎症的病理生理中起关键作用,并与硬化症和肾小管间质纤维化有关。我们以前曾报道过,LXA4通过特定的G蛋白偶联受体(GPCR)来调节MC增殖,以响应促炎性介质LTD4和血小板衍生的生长因子(PDGF)。进一步的研究表明,这些作用是由受体酪氨酸激酶活性的调节介导的。在这里,我们已经探索了潜在的机制,并报告了LXA4对Akt / PKB的生长因子(PDGF;上皮生长因子)激活的抑制作用。 LXA4(10 nmol / L)调节PDGF诱导的细胞周期蛋白激酶抑制剂p21 Cip1 和p27 Kip1 的水平降低(10 ng / ml,24小时)。 PDGF诱导的CDK2-cyclin E复合物形成的增加也被LXA4抑制。 LXA4作为抗炎治疗剂的潜力会因其降解而受到损害。通过合成稳定的类似物可以避免这种情况。我们报道15-(> R / S )-甲基-LXA4和16-苯氧基-LXA4模仿天然化合物对细胞增殖和PDGF诱导的细胞周期蛋白变化的调节。 >体内,PDGF引起的MC增殖与TGFβ1的产生及随后肾纤维化的发展有关。在这里,我们证明长时间(24至48小时)暴露于PDGF与自分泌TGFβ1的产生有关,而LXA4显着降低了TGFβ1的产生。总的来说,这些数据表明LX通过调节PI-3-激酶途径抑制PDGF刺激的增殖,从而防止有丝分裂原引起的G1-S期进程,并提示LX作为抗纤维化剂的治疗潜力。

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