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Role of PDGF B-Chain and PDGF Receptors in Rat Tubular Regeneration after Acute Injury

机译:PDGF B链和PDGF受体在急性损伤后大鼠小管再生中的作用

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摘要

Various polypeptide growth factors are generally considered to be involved in the regulation of the nephrogenic process both after acute renal injury and during renal development. Because platelet-derived growth factor B-chain (PDGF-B) has been reported to be expressed in immature tubulus of the developing kidney, PDGF-B could play a role in the process of tubulogenesis. We examined the expression of PDGF-B and PDGF receptors α and β and their localization in kidneys after ischemia/reperfusion injury. The mRNA expressions of PDGF-B, PDGFR-α, and PDGFR-β were enhanced after injury. In the immunohistochemical analysis and/or in situ hybridization, PDGF-B and PDGFR-α, β were expressed after reperfusion in the S3 segment of the proximal tubuli, where they were not expressed normally. The expressions of proliferating cell nuclear antigen and vimentin were concomitantly observed with PDGF-B and PDGFRs in the tubular cells of injured S3 segment at 48 hours after injury. Next, the inhibition of the PDGF-B/PDGFRs axis with either Trapidil or Ki6896, which was found to inhibit the phosphorylation of PDGFR-β selectively, resulted in a rise of serum creatinine, higher mortality rate, abnormal regenerating process, and suppressed proliferation of tubular epithelial cells. These findings suggest that the PDGF-B/PDGFRs axis is involved in the proliferation of injured tubular cells and plays an important role in the regeneration of tubular cells from acute ischemic injury.
机译:通常认为各种多肽生长因子都在急性肾损伤后和肾发育过程中参与肾生成过程的调节。由于据报道血小板衍生的生长因子B链(PDGF-B)在发育中的肾脏的未成熟小管中表达,因此PDGF-B可能在肾小管生成过程中发挥作用。我们检查了缺血/再灌注损伤后PDGF-B和PDGF受体α和β的表达及其在肾脏中的定位。损伤后PDGF-B,PDGFR-α和PDGFR-β的mRNA表达增加。在免疫组织化学分析和/或原位杂交中,PDGF-B和PDGFR-α,β在再灌注后在近端小管的S3节段中表达,而在正常情况下它们不表达。在损伤后48小时,用PDGF-B和PDGFRs在损伤的S3节的肾小管细胞中同时观察到增殖细胞核抗原和波形蛋白的表达。接下来,发现使用Trapidil或Ki6896抑制PDGF-B / PDGFRs轴可选择性抑制PDGFR-β的磷酸化,从而导致血清肌酐升高,更高的死亡率,异常的再生过程和增殖抑制肾小管上皮细胞这些发现表明,PDGF-B / PDGFRs轴参与受损的肾小管细胞的增殖,并在急性缺血性损伤的肾小管细胞再生中起重要作用。

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