首页> 外文期刊>Environmental toxicology >A Semiquinone Glucoside Derivative Provides Protection to Male Reproductive System of the Mice Against Gamma Radiation Toxicity
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A Semiquinone Glucoside Derivative Provides Protection to Male Reproductive System of the Mice Against Gamma Radiation Toxicity

机译:半醌葡糖苷衍生物为小鼠的雄性生殖系统提供保护,使其免受伽玛辐射毒性。

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Present investigation was carried out to evaluate the radioprotective efficacy of a novel Semiquinone glucoside derivative (SQGD), isolated from Bacillus sp. INM-1, in the male reproductive system of BALB/c mice. Animals were administered 50 mg/kg b.wt. (i.p.) SQGD 2 h before whole body γ-irra-diation (10 Gy). Radiation-induced cellular toxicity and its modulation by SQGD pretreatment was evaluated in the mice testes by quantitative histological and protein expression analysis. SQGD pretreatment protects irradiated mice from radiation-induced testicular atrophy and germ cells degeneration, which may lead to emptiness of seminiferous tubules. Significant decrease in P53 and P21~(CIP/WAF-1) expression was observed in the irradiated mice pretreated (2 h) by SQGD at 6 h compared with only irradiated mice. However, contrary to P53, expressions of P21 at latter time, that is, 24-72 h was found to be increased significantly in the irradiated mice pretreated by SQGD. Significant increase in the intact PARP-1 protein expression were observed in the testes of the mice pretreated by SQGD 2 h before irradiation at 24-72 h compared with the only irradiated mice, whereas significant increase in PARP-1 cleaved fragment was noticed at 24 h. Similarly, significant increase in NF-kB and BCL-2/BAX expressions ratio was noticed in SQGD-treated mice (± irradiation) compared with irradiated mice, suggested a role of SQGD in the activation of prosurvival signaling in the testicular germinal cells population of the irradiated mice and thus contributed to protection against lethal γ-irradiation.
机译:目前的研究是为了评估从芽孢杆菌中分离得到的新型半醌醌苷衍生物(SQGD)的辐射防护功效。 INM-1,在BALB / c小鼠的雄性生殖系统中。给动物施用50mg / kg体重。 (i.p.)SQGD,全身进行γ辐照(10 Gy)前2小时。通过定量组织学和蛋白质表达分析,在小鼠睾丸中评估了辐射诱导的细胞毒性及其通过SQGD预处理的调节作用。 SQGD预处理可保护受辐照的小鼠免于辐射引起的睾丸萎缩和生殖细胞变性,这可能会导致曲细精管的空化。与仅辐照小鼠相比,经SQGD预处理(2 h)的辐照小鼠(6 h)P53和P21〜(CIP / WAF-1)表达显着降低。然而,与P53相反,在用SQGD预处理的经辐照的小鼠中,在随后的时间,即24-72小时,P21的表达显着增加。与仅辐照的小鼠相比,在用SQGD预处理的小鼠在辐射前2小时(24-72小时)的睾丸中观察到完整的PARP-1蛋白表达显着增加,而在24天时发现PARP-1裂解的片段显着增加。 H。同样,与辐照小鼠相比,在SQGD处理的小鼠(±辐照)中注意到NF-kB和BCL-2 / BAX的表达比例显着增加,这表明SQGD在激活睾丸生发细胞群体的生存信号中起着作用。辐照的小鼠,从而有助于防止致命的γ辐照。

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