芦丁通过抑制 JAK/STAT3 信号传导促进 M2 表型小胶质细胞极化,保护视网膜免受缺血再灌注损伤

An-Le SU, Shuai ZHAO, Hong-Na ZHU, Ying QIAO, Ting ZHANG
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引用次数: 0

摘要

我们的目的是研究芦丁在缺血再灌注(I/R)条件下对视网膜神经节细胞(RGCs)的神经保护作用,以及涉及小胶质细胞极化和 JAK/STAT3 信号转导的潜在机制。在正常或体外氧-葡萄糖剥夺和再氧合(OGD/R)条件下,将从C57/Bl6小鼠体内分离的RGC与BV2小胶质细胞共同培养。芦丁的作用通过评估细胞活力、凋亡率、细胞因子水平、小胶质细胞极化标记物和 JAK/STAT3 磷酸化水平来评价。通过芦丁对各自激活的信号因子的抑制作用,确认了特定的靶点。此外,分子对接分析阐明了芦丁与 JAK1 的相互作用。OGD/R条件明显降低了RGC的存活率,而BV2共培养则加剧了这种情况。然而,1 μM和5 μM芦丁治疗剂量依赖性地提高了RGC的活力,减少了细胞凋亡,并抑制了促炎细胞因子水平。Western 印迹分析表明,芦丁能促进 M2 小胶质细胞表型并抑制 JAK/STAT3 信号传导。值得注意的是,芦丁能选择性地抑制 JAK1 磷酸化,而不影响 STAT3。分子对接突显了芦丁与特定 JAK1 伪激酶结构域之间的潜在相互作用位点。芦丁可能是通过选择性抑制 JAK/STAT3 信号通路中的 JAK1 磷酸化,促进 M2 小胶质细胞极化,从而对视网膜 I/R 损伤发挥神经保护作用。这些发现为芦丁在视网膜I/R损伤中的治疗潜力奠定了基础。
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Rutin promotes M2 phenotype microglia polarization by suppressing the JAK/STAT3 signaling to protect against retinal ischemia-reperfusion injury

We aimed to investigate the neuroprotective effect of rutin on retinal ganglion cells (RGCs) under ischemia-reperfusion (I/R) conditions and the underlying mechanisms involving microglia polarization and JAK/STAT3 signaling. RGCs isolated from C57/Bl6 mice were co-cultured with BV2 microglial cells under normal or in vitro oxygen-glucose deprivation and reoxygenation (OGD/R) conditions. Rutin’s effects were evaluated by assessing cell viability, apoptosis rates, cytokine levels, microglial polarization markers and JAK/STAT3 phosphorylation levels. The specific target is confirmed through the inhibitory effect of rutin on the respectively activated signaling factors. Furthermore, molecular docking analyses elucidated rutin-JAK1 interactions. OGD/R conditions significantly reduced RGC viability, exacerbated by BV2 co-culture. However, both 1 μM and 5 μM rutin treatment dose-dependently enhanced RGC viability, reduced apoptosis, and suppressed pro-inflammatory cytokine levels. Western blot analysis indicated that rutin promoted the M2 microglial phenotype and suppressed JAK/STAT3 signaling. Notably, rutin selectively inhibited JAK1 phosphorylation without affecting STAT3. Molecular docking highlighted potential interaction sites between rutin and specific JAK1 pseudokinase domain. Rutin exerts neuroprotective effects against retinal I/R injury by promoting M2 microglial polarization, potentially through the selective inhibition of JAK1 phosphorylation within the JAK/STAT3 signaling pathway. These findings provide a foundation for the therapeutic potential of rutin in retinal I/R injuries.

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