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Cyclooxygenase-2 and hypoxia-regulated proteins are modulated by basic fibroblast growth factor in acute renal failure

机译:通过急性肾功能衰竭的碱性成纤维细胞生长因子调节环氧氧酶-2和缺氧调节蛋白质

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Acute renal failure (ARF) can be caused by injuries that induce tissue hypoxia, which in turn can trigger adaptive or inflammatory responses. We previously showed the participation of basic fibroblast growth factor (FGF-2) in renal repair. Based on this, the aim of this study was to analyze the effect of FGF-2 signaling pathway manipulation at hypoxia-induced protein levels, as well as in key proteins from the vasoactive systems of the kidney. We injected rat kidneys with FGF-2 recombinant protein (r-FGF) or FGF-2 receptor antisense oligonucleotide (FGFR2-ASO) after bilateral ischemia, and evaluated the presence of iNOS, EPO and HO-1, in representation of hypoxia-induced proteins, as well as COX-2, renin, kallikrein, and B2KR, in representation of the vasoactive systems of the kidney. A reduction in iNOS, HO-1, EPO, renin, kallikrein, B2KR, and in renal damage was observed in animals treated with r-FGF. The opposite effect was found with FGF-2 receptor down-regulation. In contrast, COX-2 protein levels were higher in kidneys treated with r-FGF and lower in those that received FGFR2-ASO, as compared to saline treated kidneys. These results suggest that the protective role of FGF-2 in the pathogenesis of ARF induced by I/R is a complex process, through which a differential regulation of metabolic pathways takes place.
机译:急性肾功能衰竭(ARF)可能是由诱导组织缺氧的损伤引起的,这又可以引发适应性或炎症反应。我们以前表明碱性成纤维细胞生长因子(FGF-2)参与肾修复。基于这一点,本研究的目的是分析FGF-2信号通路操纵在缺氧诱导的蛋白质水平下的影响,以及肾脏血管活性系统的关键蛋白质。在双侧缺血后用FGF-2重组蛋白(R-FGF)或FGF-2受体反义寡核苷酸(FGFR2-ASO)注射大鼠肾脏,并评估Inos,EPO和HO-1的存在,表示缺氧诱导的蛋白质,以及Cox-2,肾素,磷酸甘酮和B2KR,表示肾脏的血管活性系统。在用R-FGF处理的动物中观察到Inos,HO-1,EPO,肾素,Kallikrein,B2Kr和肾损伤的减少。 FGF-2受体下调发现相反的效果。相比之下,与盐水处理的肾脏相比,在接受FGFR2-ASO的肾脏处理的肾脏肾脏蛋白水平较高。这些结果表明FGF-2在I / R诱导的ARF发病机制中的保护作用是复杂的方法,通过该过程,发生代谢途径的差异调节。

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