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Indirubin-3′-monoxime exerts a dual mode of inhibition towards leukotriene-mediated vascular smooth muscle cell migration

机译:Indirubin-3'-monoxime对白三烯介导的血管平滑肌细胞迁移具有双重抑制作用

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AimsThe small molecule indirubin-3′-monoxime (I3MO) has been shown to inhibit vascular smooth muscle cell (VSMC) proliferation and neointima formation in vivo. The influence of I3MO on VSMC migration and vascular inflammation, two additional key players during the onset of atherosclerosis and restenosis, should be investigated.Methods and resultsWe examined the influence of I3MO on VSMC migration, with focus on monocyte-derived leukotrienes (LTs) and platelet-derived growth factors (PDGFs) as elicitors. Exogenous LTB4 and cysteinyl leukotrienes as well as LT-enriched conditioned medium of activated primary human monocytes induced VSMC migration, which was inhibited by I3MO. I3MO also blunted migration of VSMC stimulated with the PDGF, the strongest motogen tested in this study. Induction of haem oxygenase 1 accounted for this anti-migratory activity of I3MO in VSMC. Notably, I3MO not only interfered with the migratory response in VSMC, but also suppressed the production of pro-migratory LT in monocytes. Conditioned media from monocytes that were activated in the presence of I3MO failed to induce VSMC migration. In cell-based and cell-free assays, I3MO selectively inhibited 5-lipoxygenase (5-LO), the key enzyme in LT biosynthesis, with an IC50 in the low micromolar range.ConclusionOur study reveals a novel dual inhibitory mode of I3MO on LT-mediated VSMC migration: (i) I3MO interferes with pro-migratory signalling in VSMC and (ii) I3MO suppresses LT biosynthesis in monocytes by direct inhibition of 5-LO. These inhibitory actions on both migratory stimulus and response complement the previously demonstrated anti-proliferative properties of I3MO and may further promote I3MO as promising vasoprotective compound.
机译:目的小分子靛玉红3'-一肟(I3MO)已显示在体​​内抑制血管平滑肌细胞(VSMC)增殖和新内膜形成。方法和结果我们研究了I3MO对VSMC迁移和血管炎症的影响,这是动脉粥样硬化和再狭窄发作期间的另外两个关键因素。方法和结果我们研究了I3MO对VSMC迁移的影响,重点是单核细胞衍生的白三烯和血小板源性生长因子(PDGFs)作为激发子。外源LTB4和半胱氨酰白三烯以及激活的人类单核细胞富集的LT条件培养基诱导了VSMC迁移,这被I3MO抑制。 I3MO还抑制了PDGF刺激的VSMC迁移,PDGF是本研究中测试的最强的运动原。血红素加氧酶1的诱导解释了VSMC中I3MO的这种抗迁移活性。值得注意的是,I3MO不仅干扰了VSMC中的迁移反应,而且抑制了单核细胞中促迁移性LT的产生。来自在I3MO存在下被激活的单核细胞的条件培养基无法诱导VSMC迁移。在基于细胞和无细胞的检测中,I3MO选择性抑制了LT生物合成中的关键酶5-脂氧合酶(5-LO),IC50在低微摩尔范围内。结论我们的研究揭示了I3MO对LT的新型双重抑制模式。介导的VSMC迁移:(i)I3MO干扰VSMC中的促迁移信号,并且(ii)I3MO通过直接抑制5-LO抑制单核细胞中的LT生物合成。这些对迁移刺激和应答的抑制作用补充了先前证明的I3MO的抗增殖特性,并可能进一步促进I3MO作为有希望的血管保护化合物。

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