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首页> 外文期刊>Antioxidants and redox signalling >The effect of hydrogen sulfide donors on lipopolysaccharide-induced formation of inflammatory mediators in macrophages.
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The effect of hydrogen sulfide donors on lipopolysaccharide-induced formation of inflammatory mediators in macrophages.

机译:硫化氢供体对脂多糖诱导的巨噬细胞炎症介质形成的影响。

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The role of hydrogen sulfide (H(2)S) in inflammation is controversial, with both pro- and antiinflammatory effects documented. Many studies have used simple sulfide salts as the source of H(2)S, which give a rapid bolus of H(2)S in aqueous solutions and thus do not accurately reflect the enzymatic generation of H(2)S. We therefore compared the effects of sodium hydrosulfide and a novel slow-releasing H(2)S donor (GYY4137) on the release of pro- and antiinflammatory mediators in lipopolysaccharide (LPS)-treated murine RAW264.7 macrophages. For the first time, we show that GYY4137 significantly and concentration-dependently inhibits LPS-induced release of proinflammatory mediators such as IL-1beta, IL-6, TNF-alpha, nitric oxide (*NO), and PGE(2) but increased the synthesis of the antiinflammatory chemokine IL-10 through NF-kappaB/ATF-2/HSP-27-dependent pathways. In contrast, NaHS elicited a biphasic effect on proinflammatory mediators and, at high concentrations, increased the synthesis of IL-1beta, IL-6, NO, PGE(2) and TNF-alpha. This study clearly shows that the effects of H(2)S on the inflammatory process are complex and dependent not only on H(2)S concentration but also on the rate of H(2)S generation. This study may also explain some of the apparent discrepancies in the literature regarding the pro- versus antiinflammatory role of H(2)S.
机译:硫化氢(H(2)S)在炎症中的作用是有争议的,具有促炎和抗炎作用。许多研究已经使用简单的硫化物盐作为H(2)S的来源,它在水溶液中快速产生H(2)S团,因此不能准确反映H(2)S的酶促生成。因此,我们比较了硫化氢钠和新型缓释H(2)S供体(GYY4137)对脂多糖(LPS)处理的小鼠RAW264.7巨噬细胞中促炎介质和抗炎介质释放的影响。首次,我们显示GYY4137显着且浓度依赖性地抑制LPS诱导的促炎性介质(如IL-1beta,IL-6,TNF-alpha,一氧化氮(* NO)和PGE(2))释放通过NF-κB/ ATF-2 / HSP-27依赖性途径合成抗炎趋化因子IL-10。相反,NaHS对促炎性介质产生了双相作用,并在高浓度下增加了IL-1beta,IL-6,NO,PGE(2)和TNF-alpha的合成。这项研究清楚地表明,H(2)S对炎症过程的影响是复杂的,不仅取决于H(2)S的浓度,还取决于H(2)S的生成速率。这项研究还可以解释有关H(2)S的促炎症作用与抗炎作用的文献中的一些明显差异。

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