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首页> 外文期刊>European Journal of Pharmacology: An International Journal >Zn2+ inhibits nitric oxide formation in response to lipopolysaccharides: implication in its anti-inflammatory activity.
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Zn2+ inhibits nitric oxide formation in response to lipopolysaccharides: implication in its anti-inflammatory activity.

机译:Zn2 +抑制响应脂多糖的一氧化氮形成:暗示其抗炎活性。

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摘要

There is compelling evidence to indicate an anti-inflammatory action of Zn2+. Most inflammatory diseases are associated with an increase of the inducible form of nitric oxide (NO) synthase. Additionally, inflammatory mediators such as histamine or bradykinin stimulate the constitutive NO synthase. Thus, the present study was undertaken to investigate whether Zn2+ inhibits production of inducible NO synthase and/or constitutive NO synthase activity to produce NO. Lipopolysaccharide, 5 mg/kg i.v., administered to Zn2+-deficient (ZD) rats, rats supplemented with Zn2+ sulfate (ZG), 10 mg/kg s.c., or controls resulted in a significant reduction of their serum Zn2+. The levels of N(G)-nitro-L-arginine methylester (L-NAME)-sensitive cyclic GMP (cGMP) in aortas isolated from ZD or ZG were significantly lower than those obtained from control animals. Zinc (100-150 microM) produced a dose-dependent inhibition of lipopolysaccharide or interleukin-1beta-induced NO formation in isolated rat aortic smooth muscle cells. Compared to cyclohexamide or actinomycin-D, the time course of inhibition of NO formation by 150 microM Zn2+ did not suggest an effect of Zn2+ on inducible NO synthase protein synthesis. Moreover, Zn2+ (150 microM) significantly reduced the rate of conversion of [3H]arginine to [3H]citrulline in lung homogenates from lipopolysaccharide-treated rats. Incubation of rat aortic smooth muscle cells and bovine pulmonary artery endothelial cell co-cultures with Zn2+ (150 microM) caused a significant reduction in basal and bradykinin- or A-23187-induced formation of cGMP. Thus, our results indicate that Zn2+ is capable of inhibiting lipopolysaccharide- or interleukin-1beta-induced NO formation as well as NO formation by constitutive NO synthase basally or in response to bradykinin or A-23187, and may explain the reported anti-inflammatory activity of Zn2+.
机译:有令人信服的证据表明Zn2 +具有抗炎作用。大多数炎症性疾病与一氧化氮(NO)合酶的可诱导形式的增加有关。另外,炎性介质例如组胺或缓激肽刺激组成型NO合酶。因此,进行本研究以研究Zn 2+是否抑制诱导型NO合酶的产生和/或组成型NO合酶的活性以产生NO。向缺乏Zn2 +的(ZD)大鼠,补充有Zn2 +硫酸盐(ZG),10 mg / kg s.c.的大鼠或对照组静脉注射5 mg / kg脂多糖,可显着降低其血清Zn2 +。从ZD或ZG分离的主动脉中N(G)-硝基-L-精氨酸甲酯(L-NAME)敏感的环状GMP(cGMP)的水平显着低于对照动物。锌(100-150 microM)在分离的大鼠主动脉平滑肌细胞中产生脂多糖或白介素1β诱导的NO形成剂量依赖性抑制。与环己酰胺或放线菌素-D相比,150 microM Zn2 +抑制NO形成的时间过程并未表明Zn2 +对诱导型NO合酶蛋白合成的影响。此外,在脂多糖处理的大鼠的肺匀浆中,Zn2 +(150 microM)显着降低了[3H]精氨酸向[3H]瓜氨酸的转化率。大鼠主动脉平滑肌细胞和牛肺动脉内皮细胞与Zn2 +(150 microM)的共培养引起基底和缓激肽或A-23187诱导的cGMP形成的显着减少。因此,我们的结果表明Zn2 +能够抑制脂多糖或白介素1β诱导的一氧化氮的形成以及通过组成型一氧化氮合酶基本或响应缓激肽或A-23187的一氧化氮的形成,并可能解释了报道的抗炎活性Zn2 +。

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