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肾缺血会改变雌性猪散在的管状样细胞中血管相关基因的mRNA和miRNA谱。

Renal ischemia alters the mRNA and miRNA profile of vasculature-related genes in scattered tubular-like cells from female pigs.

作者信息

Kazeminia Sara, Rajagopalan Kamalnath S, Zhu Xiang-Yang, Tang Hui, Chade Alejandro R, Irazabal Maria V, Lerman Lilach O, Eirin Alfonso

机构信息

Department of Medicine, Division of Nephrology and Hypertension, Mayo Clinic, Rochester, Minnesota, United States.

Department of Medical Pharmacology and Physiology and Department of Medicine, University of Missouri-Columbia, Columbia, Missouri, United States.

出版信息

Am J Physiol Renal Physiol. 2025 May 1;328(5):F724-F735. doi: 10.1152/ajprenal.00334.2024. Epub 2025 Apr 17.

Abstract

Scattered tubular-like cells (STCs) are renal tubular cells that survive episodes of renal injury and acquire progenitor-like characteristics to repair other damaged kidney cells. STCs release proangiogenic factors in culture and induce microvascular proliferation in injured murine kidneys in vivo. Renovascular disease (RVD) compromises the reparative capacity of STCs, but the underlying mechanisms remain unknown. We hypothesized that RVD alters the expression of vasculature-related genes in swine STCs and impair their vasculoprotective properties. CD24/CD133 STCs were harvested from female pig kidneys after 10 wk of RVD or sham ( = 6 each), and the mRNA profiles of vasculature-related genes were analyzed using mRNA and microRNA seq ( = 3/group). STC expression of candidate differentially expressed (DE) genes and their capacity to induce human umbilical endothelial cells (HUVECs) to form tube-like networks were subsequently assessed in vitro before and after micro-RNA (miRNA) modulation ( = 6 each). mRNA-seq identified 67 upregulated and 42 downregulated vasculature-related genes in RVD-STCs. Four miRNAs were upregulated and 12 downregulated in RVD-STCs and found to target 31.3% to 40.5% of DE vasculature-related genes. Modulation in vitro of representative miRNAs decreased RVD-STC expression of anti-angiogenic and increased expression of proangiogenic target genes, respectively. Furthermore, this restored the ability of STCs to induce HUVEC tube formation on Matrigel that was impaired in RVD. Chronic renal ischemia alters the expression of vasculature-related genes in swine STCs, likely through posttranscriptional mechanisms, impairing their proangiogenic activity. These observations may contribute to develop novel approaches to preserve the reparative capacity of STCs in individuals with RVD. The intrinsic reparative capacity of the adult mammalian kidney is restricted to the ability of scattered tubular-like cells (STCs) to repair damaged kidney cells. Our study provides evidence that chronic renal ischemia alters the mRNA/miRNA profile of angiogenic/vascular development genes of swine STCs, limiting their potential to repair injured tubular cells. Our observations may assist in developing new therapies to improve renal repair in individuals with chronic renal ischemia.

摘要

散在的管状样细胞(STCs)是在肾损伤发作后存活下来并获得祖细胞样特征以修复其他受损肾细胞的肾小管细胞。STCs在培养中释放促血管生成因子,并在体内诱导受损小鼠肾脏的微血管增殖。肾血管疾病(RVD)损害了STCs的修复能力,但其潜在机制仍不清楚。我们假设RVD会改变猪STCs中血管相关基因的表达,并损害其血管保护特性。在RVD或假手术10周后从雌性猪肾脏中收集CD24/CD133 STCs(每组n = 6),并使用mRNA和microRNA测序分析血管相关基因的mRNA谱(每组n = 3)。随后在体外对微小RNA(miRNA)进行调节前后评估候选差异表达(DE)基因的STC表达及其诱导人脐静脉内皮细胞(HUVECs)形成管状网络的能力(每组n = 6)。mRNA测序确定RVD-STCs中有67个血管相关基因上调,42个下调。在RVD-STCs中有4个miRNA上调,12个下调,发现它们靶向31.3%至40.5%的DE血管相关基因。体外调节代表性miRNA分别降低了RVD-STC抗血管生成的表达并增加了促血管生成靶基因的表达。此外,这恢复了STCs在基质胶上诱导HUVEC管形成的能力(该能力在RVD中受损)。慢性肾缺血可能通过转录后机制改变猪STCs中血管相关基因的表达,损害其促血管生成活性。这些观察结果可能有助于开发新方法来保留RVD个体中STCs的修复能力。成年哺乳动物肾脏的内在修复能力仅限于散在的管状样细胞(STCs)修复受损肾细胞的能力。我们的研究提供了证据,证明慢性肾缺血会改变猪STCs血管生成/血管发育基因的mRNA/miRNA谱,限制其修复受损肾小管细胞的潜力。我们的观察结果可能有助于开发新的疗法来改善慢性肾缺血个体的肾脏修复。

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