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An experimental study to investigate the impact of p-coumaric acid, a common dietary polyphenol, on cadmium chloride-induced renal toxicity

机译:一项实验研究,研究一种常见的膳食多酚对香豆酸对氯化镉诱导的肾脏毒性的影响

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摘要

Cadmium, a well-known environmental pollutant and a toxic transitional metal causes severe damage to many organs, such as liver, kidney, lungs, heart, etc. The current study has been designed to assess the impact of p-coumaric acid, a common dietary polyphenol on cadmium chloride-induced renal toxicity in rats. Therefore, the activities of membrane bound ATPases, mitochondrial TCA cycle and electron transport chain enzymes, gluconeogenic and glycolytic enzymes, and glycogen content were estimated in kidney tissue homogenates of control and experimental rats. In addition, the serum levels of glucose and pro-inflammatory cytokines, such as TNF-alpha and IL-1 beta were also estimated. The cadmium chloride administered rats (3 mg per kg per b. wt per s.c.) showed significant decrease in the levels of membrane bound ATPases, mitochondrial TCA cycle and electron transport chain enzymes, glycolytic enzymes, and glycogen content as compared with controls. Conversely, the levels of glucose, gluconeogenic enzymes and pro-inflammatory cytokines (TNF-alpha, and IL-beta) were found to be increased. However, the administration of p-coumaric acid (100 mg per kg per b. wt per s.c.) along with the cadmium chloride significantly modulated these biochemical and immunological changes to near normal, as compared to cadmium chloride treated rats. Thus, the results provide strong evidence that p-coumaric acid has a protective action against cadmium-induced renal toxicity in rats
机译:镉是一种众所周知的环境污染物,是一种有毒的过渡金属,会对肝,肾,肺,心脏等许多器官造成严重损害。目前的研究旨在评估对-香豆酸(一种常见的对苯二甲酸)的影响。日粮多酚对氯化镉诱导的大鼠肾脏毒性作用。因此,在对照和实验大鼠的肾脏组织匀浆中,估计了膜结合的ATP酶,线粒体TCA循环和电子转运链酶,糖原异生性和糖酵解酶以及糖原含量的活性。另外,还估计了血清葡萄糖水平和促炎性细胞因子,例如TNF-α和IL-1β。与对照组相比,施用氯化镉的大鼠(每千克每b.wt. s.c. 3 mg / kg)与对照相比,膜结合ATPase,线粒体TCA循环和电子传输链酶,糖酵解酶和糖原含量显着降低。相反,发现葡萄糖,糖原异生酶和促炎细胞因子(TNF-α和IL-β)的水平增加。但是,与氯化镉处理的大鼠相比,对香豆酸(100 mg / kg / b.wt / s.c。)的施用与氯化镉显着地将这些生化和免疫学变化调节至接近正常。因此,该结果提供了有力的证据,表明对香豆酸具有抗镉诱导的大鼠肾脏毒性的保护作用。

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