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Metabolomics reveals the renoprotective effect of n -butanol extract and amygdalin extract from Amygdalus mongolica in rats with renal fibrosis

机译:代谢组学揭示了N-丁醇提取物和Amygdalin提取物从肾纤维化大鼠中的N-丁醇提取物和Amygdalin提取物的重新调试作用

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Renal fibrosis (RF) is a pathological process of progression from chronic kidney disease to end-stage renal disease. Amygdalus mongolica is a traditional Chinese medicine, and our previous studies demonstrated that the n-butanol extract (BUT) and amygdalin extract (AMY) from its seeds can prevent RF. However, the underlying mechanism remains unclear. The present study investigated the exact mechanism of the protective effect of A. mongolica on RF. A renal fibrosis rat model was induced with unilateral ureteral obstruction. Biochemical indicators were measured and combined with histopathology of renal tissue to evaluate the anti-RF effects. A serum metabonomic method was used to clarify the changes in the metabolic profile. The tubulointerstitial damage and fibrosis were significantly improved and metabolic perturbations were restored after treatment with BUT and AMY. Thirty-eight metabolites associated with RF progression and related to the regulation of arginine and proline metabolism, nicotinate and nicotinamide metabolism, and histidine metabolism were identified. They were restored to levels similar to those in controls after treatment. Moreover, no significant differences in efficacy were observed between the BUT and AMY groups. This study reveals and compares the potential mechanisms of the renoprotective effects after treatment with BUT and AMY from a metabolomic perspective.
机译:肾纤维化(RF)是从慢性肾病到终末期肾病的进展的病理过程。 Amygdalus Mongolica是一种中医,我们以前的研究表明,从其种子中的正丁醇提取物(但)和杏仁蛋白提取物(amy)可以预防射频。然而,潜在机制仍然不清楚。本研究研究了A. Mongolica对RF的保护作用的确切机制。用单侧输尿管梗阻诱导肾纤维化大鼠模型。测量生化指标并将其与肾组织的组织病理学合并,评价抗RF效应。使用血清代谢方法来阐明代谢型材的变化。微管间损伤和纤维化明显改善,用但艾米治疗后恢复代谢扰动。鉴定了与RF进展相关的三十八种代谢物,并鉴定了精氨酸和脯氨酸代谢,烟酸尼酸碱和烟碱代谢和组氨酸代谢和组氨酸代谢。它们恢复到治疗后的控制中类似的水平。此外,在但艾米的群体之间没有观察到疗效的显着差异。本研究揭示并比较了在代谢组成的治疗后进行了后检测性效应的潜在机制。

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