A PDE1 inhibitor, vinpocetine, ameliorates epithelial-mesenchymal transition and renal fibrosis in adenine-induced chronic kidney injury in rats by targeting the DNMT1/Klotho/β-catenin/Snail 1 and MMP-7 pathways

Amira Mohammed Abdelfattah, Zeinab A. Mohammed, Aliaa Talaat, Walaa Samy, Mamdouh Eldesoqui, Reham I. Elgarhi
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Abstract

Tubulointerstitial fibrosis (TIF) is present with chronic kidney disease (CKD). Vinpocetine (Vinpo) is used for treating cerebrovascular deficits, exhibiting some kidney-beneficial effects; however, its role in TIF is uncertain. So, the aim of this study was to investigate its potential impact on adenine-induced fibrotic CKD and explore the underlying mechanistic aspects. Eighteen male Wistar rats were categorized into three groups (n = 6 each). Group I was kept as controls and given saline; group II received adenine (300 mg/kg, twice weekly, i.p.) for induction of the CKD model; and group III was administered Vinpo (20 mg/kg/d, orally) concurrently with adenine. All treatments were administered for 4 weeks. Vinpo revealed an improvement in renal function and an alleviation of inflammation triggered by adenine via diminishing serum tumor necrosis factor-α (TNF-α) and interleukin 6 (IL-6) levels. Further, Vinpo repressed the epithelial-mesenchymal transition (EMT) with preserved E-cadherin mRNA expression and lowered gene and immune expression of fibronectin and vimentin, respectively, besides attenuating the elevated G2/M arrest-related molecules (renal Ki67 protein contents and p21 gene expression). Renal pathological alterations caused by adenine were attenuated upon Vinpo administration. Interestingly, Vinpo suppressed abnormal renal β-catenin immunoreactivity, Snail 1, and MMP-7 gene expression while simultaneously restored Klotho protein expression by downregulating DNA methyltransferase 1 enzyme (DNMT1) protein expression in the kidney. These data indicated that Vinpo effectively mitigated EMT and G2/M arrest-induced renal fibrosis in adenine-induced CKD rats by targeting DNMT1-associated Klotho suppression, subsequently inhibiting β-catenin and its fibrotic downstream genes.

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PDE1 抑制剂长春西汀通过靶向 DNMT1/Klotho/β-catenin/Snail 1 和 MMP-7 通路,改善腺嘌呤诱导的大鼠慢性肾损伤中的上皮-间充质转化和肾纤维化现象
慢性肾脏病(CKD)患者会出现肾小管间质纤维化(TIF)。长春西汀(Vinpocetine,Vinpo)用于治疗脑血管功能障碍,具有一定的益肾作用,但其在 TIF 中的作用尚不确定。因此,本研究旨在调查其对腺嘌呤诱导的纤维化慢性肾脏病的潜在影响,并探索其背后的机理。18 只雄性 Wistar 大鼠被分为三组(每组 6 只)。I 组为对照组,给予生理盐水;II 组接受腺嘌呤(300 毫克/千克,每周两次,静脉注射)诱导 CKD 模型;III 组在给予腺嘌呤的同时给予 Vinpo(20 毫克/千克/天,口服)。所有治疗均持续 4 周。Vinpo通过降低血清肿瘤坏死因子-α(TNF-α)和白细胞介素6(IL-6)的水平,改善了肾功能并减轻了腺嘌呤引发的炎症。此外,Vinpo 还抑制了上皮-间质转化(EMT),保留了 E-cadherin mRNA 的表达,降低了纤维连接蛋白和波形蛋白的基因和免疫表达,此外还减轻了 G2/M 停滞相关分子(肾 Ki67 蛋白含量和 p21 基因表达)的升高。服用 Vinpo 后,腺嘌呤引起的肾脏病理改变有所减轻。有趣的是,Vinpo抑制了肾脏β-catenin免疫活性、Snail 1和MMP-7基因的异常表达,同时通过下调肾脏中DNA甲基转移酶1酶(DNMT1)蛋白的表达,恢复了Klotho蛋白的表达。这些数据表明,Vinpo通过靶向抑制与DNMT1相关的Klotho,进而抑制β-catenin及其纤维化下游基因,有效减轻了腺嘌呤诱导的CKD大鼠的EMT和G2/M停滞诱导的肾纤维化。
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