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Biochemical and Molecular Mechanisms of Radioprotective Effects of Naringenin, a Phytochemical from Citrus Fruits

机译:柑桔植物化学物质柚皮素的生化和分子机制

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The present study was aimed to evaluate the radioprotective effects of naringenin in vivo using Swiss albino mice as a model system. Oral administration of 50 mg/kg body weight of naringenin for 7 days prior to radiation exposure protected mice against radiation-induced DNA, chromosomal and membrane damage. Naringenin pretreatment also increased the antioxidant status of irradiated mice. Multiple factors operating at cellular and molecular levels led to increased endogenous spleen colonies and survival of mice. Although naringenin induces apoptosis in cancer cells we found that it can protect against radiation-induced apoptosis in normal cells by modulating the expression of p53, Box, and Bcl-2. The results from the present study indicate that naringenin inhibits the NF-kappa B pathway and down regulates radiation-induced apoptotic proteins resulting in radioprotection at the cellular, tissue and organism levels.
机译:本研究旨在评估使用瑞士白化病小鼠作为模型系统的柚皮素的体内放射防护作用。辐射暴露前口服天麻素50 mg / kg体重达7天,可保护小鼠免受辐射诱导的DNA,染色体和膜损伤。柚皮素预处理还可以提高辐照小鼠的抗氧化状态。在细胞和分子水平上起作用的多种因素导致内源性脾脏集落增加和小鼠存活。尽管柚皮苷能诱导癌细胞凋亡,但我们发现它可以通过调节p53,Box和Bcl-2的表达来防御辐射诱导的正常细胞凋亡。本研究的结果表明,柚皮苷抑制NF-κB通路并下调辐射诱导的凋亡蛋白,从而在细胞,组织和生物体水平产生辐射防护。

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