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Temporal changes in the expression of mRNA of NADPH oxidase subunits in renal epithelial cells exposed to oxalate or calcium oxalate crystals

机译:草酸或草酸钙晶体暴露于肾上皮细胞中NADPH氧化酶亚单位mRNA表达的时间变化

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摘要

>Background>. Exposure of renal epithelial cells to oxalate (Ox) or calcium oxalate (CaOx) crystals leads to the production of reactive oxygen species and cell injury. We have hypothesized that Ox and CaOx crystals activate NADPH oxidase through upregulation of its various subunits.>Methods>. Human renal epithelial-derived cell line, HK-2, was exposed to 100 μmol Ox or 66.7 μg/cm2 CaOx monohydrate crystals for 6, 12, 24 or 48 h. After exposure, the cells and media were processed to determine activation of NADPH oxidase, production of superoxide and 8-isoprostane (8IP), and release of lactate dehydrogenase (LDH). RT-PCR was performed to determine mRNA expression of NADPH subunits p22phox, p40phox, p47phox, p67phox and gp91phox as well as Rac-GTPase.>Results>. Exposure to Ox and CaOx crystals resulted in increase in LDH release, production of 8-IP, NADPH oxidase activity and production of superoxide. Exposure to CaOx crystals resulted in significantly higher NADPH oxidase activity, production of superoxide and LDH release than Ox exposure. Exposure to Ox and CaOx crystals altered the expression of various subunits of NADPH oxidase. More consistent were increases in the expression of membrane-bound p22phox and cytosolic p47phox. Significant and strong correlations were seen between NADPH oxidase activity, the expression of p22phox and p47phox, production of superoxide and release of LDH when cells were exposed to CaOx crystals. The expressions of neither p22phox nor p47phox were significantly correlated with increased NADPH oxidase activity after the Ox exposure.>Conclusions>. As hypothesized, exposure to Ox or CaOx crystals leads to significant increases in the expression of p22phox and p47phox, leading to activation of NADPH oxidase. Increased NADPH oxidase activity is associated with increased superoxide production and lipid peroxidation. Different pathways appear to be involved in the stimulation of renal epithelial cells by exposure to Ox and CaOx crystals.
机译:>背景 >。。肾上皮细胞暴露于草酸盐(Ox)或草酸钙(CaOx)晶体会导致活性氧的产生和细胞损伤。我们假设Ox和CaOx晶体通过上调NADPH的各种亚基来激活NADPH氧化酶。>方法 >。人肾上皮细胞株HK-2暴露于100 μmolOx或66.7μg/ cm 2 CaOx一水合物晶体持续6、12、24或48小时。暴露后,处理细胞和培养基以确定NADPH氧化酶的活化,超氧化物和8-异前列腺素(8IP)的产生以及乳酸脱氢酶(LDH)的释放。进行RT-PCR测定NADPH亚基p22 phox ,p40 phox ,p47 phox ,p67 phox 和gp91 phox 以及Rac-GTPase。>结果 >。暴露于Ox和CaOx晶体会导致LDH释放增加,产生8种-IP,NADPH氧化酶活性和超氧化物的产生。暴露于CaOx晶体导致的NADPH氧化酶活性,超氧化物的产生和LDH的释放比暴露于Ox的显着更高。暴露于Ox和CaOx晶体会改变NADPH氧化酶各种亚基的表达。膜结合的p22 phox 和胞质p47 phox 的表达增加更一致。当细胞暴露于CaOx晶体时,NADPH氧化酶活性,p22 phox 和p47 phox 的表达,超氧化物的产生和LDH的释放之间存在显着且强烈的相关性。暴露于牛后,p22 phox 和p47 phox 的表达均与NADPH氧化酶活性的升高没有显着相关。>结论 >。 strong>如所假设的,暴露于Ox或CaOx晶体会导致p22 phox 和p47 phox 的表达显着增加,从而导致NADPH氧化酶的活化。 NADPH氧化酶活性的增加与超氧化物产量和脂质过氧化作用的增加有关。通过暴露于Ox和CaOx晶体,似乎不同的途径参与了肾上皮细胞的刺激。

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