首页> 外文期刊>Journal of molecular medicine: Official organ of the "Gesellschaft Deutscher Naturforscher und Arzte." >Beraprost sodium mitigates renal interstitial fibrosis through repairing renal microvessels
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Beraprost sodium mitigates renal interstitial fibrosis through repairing renal microvessels

机译:Beraprost钠通过修复肾微血管来缓解肾间质纤维化

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摘要

Beraprost sodium (BPS), as a prostacyclin analog, plays a significant role in various diseases based on its antiplatelet and vasodilation functions. However, its regulation and role in chronic kidney disease (CKD) still remain elusive. Here, we determined whether BPS could alleviate renal interstitial fibrosis, and improve the renal function and its therapeutic mechanism. In vitro, BPS increased angiogenesis in the HUVECs incubated with BPS detected by tube formation assay and repair damaged endothelial cell-cell junctions induced by hypoxia. In vivo, mice were randomly assigned to a sham-operation group (sham), a unilateral ureteral obstruction group (UUO), and a BPS intragastrical administration group (BPS), and sacrificed at days 3 and 7 post-surgery (six in each group). In UUO model, tissue hypoxia, renal inflammation, oxidative stress, and fibrotic lesions were detected by q-PCR and Western blot techniques and peritubular capillaries (PTCs) injury was detected by a novel technique of fluorescent microangiography (FMA) and analyzed by MATLAB software. Meanwhile, we identified cells undergoing endothelial cell-to-myofibroblast transition by the coexpression of endothelial cell (CD31) and myofibroblast (a-SMA) markers in the obstructed kidney. In contrast, BPS protected against interstitial fibrosis and substantially reduced the number of endothelial cell-to-myofibroblast transition cells. In conclusion, our data indicate the potent therapeutic of BPS in mitigating fibrosis through repairing renal microvessels and suppressing endothelial-mesenchymal transition (EndMT) progression after inhibiting inflammatory and oxidative stress effects.Key messagesBPS could improve renal recovery through anti-inflammatory and anti-oxidative pathways.BPS could mitigate fibrosis through repairing renal microvessels and suppressing endothelial-mesenchymal transition (EndMT).
机译:Beraprost钠(BPS)作为前列环素类似物,在基于抗血小板和血管舒张功能的各种疾病中起着重要作用。然而,其在慢性肾病(CKD)中的调节和作用仍然难以实现。在这里,我们确定BPS是否可以减轻肾间质纤维化,并改善肾功能及其治疗机制。体外,BPS在与管形成测定检测的BPS孵育的HUVEC中增加血管生成,并修复缺氧诱导的受损内皮细胞 - 细胞结。在体内,将小鼠随机分配给假手术组(假),单侧输尿管梗阻组(UUO)和BPS胃内施用组(BPS),并在手术后第3天处死(每个团体)。在UUO模型中,通过Q-PCR和Western印迹技术检测组织缺氧,肾炎,氧化应激和纤维化病变,并通过荧光微观造影(FMA)的新技术检测腹膜印迹技术和腹膜毛细血管(PTCS)损伤,并通过MATLAB软件进行分析。同时,我们通过内皮细胞(CD31)的共表达,鉴定了经历内皮细胞对肌纤维细胞转变的细胞,并在阻塞的肾脏中的肌纤维细胞(A-SMA)标记。相比之下,BPS免受间质纤维化的影响,并且基本上减少了内皮细胞对霉纤维细胞的数量。总之,我们的数据表明,通过修复肾微血管和抑制抑制炎症和氧化应激效应后,抑制内皮 - 间充质转换(ENDMT)进展的效率治疗.KEY MESSICABBP可以通过抗炎和抗氧化改善肾脏恢复途径可以通过修复肾微血体和抑制内皮 - 间充质转换(ENDMT)来减轻纤维化。

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