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首页> 外文期刊>American Journal of Physiology >Ischemic acute renal failure induces the expression of a wide range of nephrogenic proteins.
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Ischemic acute renal failure induces the expression of a wide range of nephrogenic proteins.

机译:缺血性急性肾衰竭诱导多种肾原性蛋白的表达。

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Ischemia-induced acute renal failure (ARF) is a disorder with high morbidity and mortality. ARF is characterized by a regeneration phase, yet its molecular basis is still under study. Changes in gene expression have been reported in ARF, and some of these genes are specific for nephrogenic processes. We tested the hypothesis that the regeneration process developed after ischemia-induced ARF can be characterized by the reexpression of important regulatory proteins of kidney development. The distribution pattern and levels of nephrogenic proteins in rat kidneys after ischemia were studied by immunohistochemistry and immunoblot analysis. Ischemic damage was assessed by conventional morphology, serum creatinine, and the apoptotic markers terminal deoxynucleotidyl transferase-mediated dUTP nick-end labeling (TUNEL) and caspase 3. The hypoxia levels induced by ischemia were assessed by specific markers: hypoxia induced factor (HIF)-1alpha and 2-pimonidazole. In kidneys with ARF, an important initial damage was observed through periodic acid Schiff staining, by the induction of damage markers alpha-smooth muscle actin (alpha-SMA) and macrophages (ED-1) and by apoptosis induction. In agreement with diminishing renal damage at the initial reparation phase, the expression of the mesenchymal proteins vimentin, neural cell adhesion molecules (Ncam), and the epithelial markers, Pax-2, Noggin, and basic fibroblast growth factor was observed; after, in a second phase, the tubular markers bone morphogen protein 7, Engrailed, and Lim-1, as well as the transcription factors Smad and p-Smad, were observed. Additionally, the endothelial markers VEGF and Tie-2 were induced at the initial and middle stages of regeneration phase, respectively. The expression of these proteins was restricted in time and space, as well as spatially and temporally. Because all of these proteins are important in maintaining a functional kidney, these results suggest that during the regeneration process after induced hypoxia, these nephrogenic proteins can be reexpressed in a similar fashion to that observed during development, thus restoring mature kidney function.
机译:缺血性急性肾衰竭(ARF)是一种发病率和死亡率高的疾病。 ARF具有再生阶段的特征,但其分子基础仍在研究中。在ARF中已经报道了基因表达的变化,并且其中一些基因是特定于肾生成过程的。我们测试了这一假设,即缺血诱导的ARF后发生的再生过程可以通过肾脏发育的重要调节蛋白的重新表达来表征。通过免疫组织化学和免疫印迹分析研究了缺血后大鼠肾脏中肾源性蛋白的分布模式和水平。通过常规形态学,血清肌酐和凋亡标记末端脱氧核苷酸转移酶介导的dUTP缺口末端标记(TUNEL)和半胱天冬酶3评估缺血损伤。缺血诱导的缺氧水平通过特定标志物评估:缺氧诱导因子(HIF) -1alpha和2-pimonidazole。在患有ARF的肾脏中,通过高碘酸席夫(Schiff)染色,诱导损伤标记物α-平滑肌肌动蛋白(alpha-SMA)和巨噬细胞(ED-1)以及通过凋亡诱导,观察到了重要的初始损伤。与在初始修复阶段减少肾脏损害相一致,观察到间充质蛋白波形蛋白,神经细胞粘附分子(Ncam)以及上皮标志物Pax-2,Noggin和碱性成纤维细胞生长因子的表达。在第二阶段,观察到管状标记物骨形态发生蛋白7,Engrailed和Lim-1以及转录因子Smad和p-Smad。另外,在再生阶段的初始阶段和中间阶段分别诱导了内皮标记物VEGF和Tie-2。这些蛋白质的表达在时间和空间上以及在空间和时间上受到限制。因为所有这些蛋白质对于维持功能性肾脏都很重要,所以这些结果表明,在诱导的缺氧后的再生过程中,这些肾原性蛋白质可以以与发育过程中观察到的相似方式重新表达,从而恢复了成熟的肾脏功能。

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