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首页> 外文期刊>Evidence-based complementary and alternative medicine: eCAM >An In Vitro Verification of the Effects of Paeoniflorin on Lipopolysaccharide-Exposed Microglia
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An In Vitro Verification of the Effects of Paeoniflorin on Lipopolysaccharide-Exposed Microglia

机译:对芍药苷对脂多糖暴露的微胶质的体外验证

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Background. The neuroprotective effects of Paeoniflorin (PF) are well known. Most of the evidence was verified in vivo. We attempted to perform an in vitro verification of the effects of PF in microglia. Methods. A lipopolysaccharide- (LPS-) exposed microglia model was employed. An enzyme-linked immunosorbent assay was used to measure the levels of cytokines in the culture supernatants. A real-time polymerase chain reaction was performed to measure the mRNA expression of cytokines and M1- and M2-like genes. A western blot analysis was used to examine the expression of proteins associated with the nuclear factor-kappa B (NF-κB) signaling pathway. Results. We found that the administration of PF reversed the inflammatory response induced by LPS. It downregulated proinflammatory cytokines and upregulated anti-inflammatory cytokines. This, in turn, alleviated the oxidative injuries, downregulated the expression of M1-like genes, and upregulated the expression of M2-like genes. PF can also reverse the changes in proteins associated with the NF-κB signaling pathway induced by LPS. Conclusions. We provided evidence obtained in vitro concerning the neuroprotective effects of PF via suppressing activation of microglia, which might be associated with the NF-κB signaling pathway. These findings contribute to obtaining a deeper understanding of PF, a potential new treatment for brain injuries.
机译:背景。芍药蛋白(PF)的神经保护作用是众所周知的。大多数证据都在体内核实。我们试图对微胶质细胞中PF的影响进行体外验证。方法。使用脂多糖(LPS-)暴露的小胶质细胞模型。使用酶联免疫吸附测定法测量培养上清液中细胞因子的水平。进行实时聚合酶链反应以测量细胞因子和M2和M2样基因的mRNA表达。用于检测与核因子-Kappa(NF-κB)信号通路相关的蛋白质表达的蛋白质印迹分析。结果。我们发现PF的给药逆转了LPS诱导的炎症反应。它下调促炎细胞因子和上调的抗炎细胞因子。反过来,这反而减轻了氧化损伤,下调了M1样基因的表达,并上调了M2样基因的表达。 PF还可以反转与LPS引起的NF-κB信号通路相关的蛋白质的变化。结论。我们提供了在体外获得的有关PF的神经保护作用的证据通过抑制MICROGLIA的激活,这可能与NF-κB信号通路相关。这些调查结果有助于获得对PF的更深入了解,这是脑损伤的潜在新待遇。

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