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半醌糖苷衍生物为雄性生殖系统提供保护,防止小鼠受到伽马辐射毒性的影响。

A semiquinone glucoside derivative provides protection to male reproductive system of the mice against gamma radiation toxicity.

机构信息

Institute of Nuclear Medicine and Allied Sciences, Delhi 110054, India, >

出版信息

Environ Toxicol. 2014 May;29(5):558-67. doi: 10.1002/tox.21781. Epub 2012 Jun 22.

DOI:10.1002/tox.21781
PMID:22730153
Abstract

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-irradiation (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.

摘要

本研究旨在评估从芽孢杆菌 sp. INM-1 中分离得到的新型半醌糖苷衍生物(SQGD)在 BALB/c 小鼠雄性生殖系统中的辐射防护作用。动物在全身γ照射(10 Gy)前 2 小时腹腔内给予 50 mg/kg b.wt.(SQGD)。通过定量组织学和蛋白质表达分析评估 SQGD 预处理对小鼠睾丸中辐射诱导的细胞毒性及其调节作用。SQGD 预处理可保护辐照小鼠免受辐射引起的睾丸萎缩和生殖细胞退化,从而导致生精小管空虚。与仅辐照的小鼠相比,在 SQGD 预处理(2 小时)的辐照小鼠中,6 小时时 P53 和 P21((Cip/WAF-1))表达显著降低。然而,与 P53 相反,在后者时间(即 24-72 小时),在 SQGD 预处理的辐照小鼠中发现 P21 的表达显著增加。与仅辐照的小鼠相比,在 SQGD 预处理的小鼠睾丸中,在 24-72 小时时,完整的 PARP-1 蛋白表达显著增加,而在 24 小时时,PARP-1 裂解片段显著增加。同样,与仅辐照的小鼠相比,在 SQGD 处理的(±辐照)小鼠中 NF-kB 和 BCL-2/BAX 表达比值显著增加,表明 SQGD 在激活辐照小鼠生殖细胞群体中的生存信号中发挥作用,从而有助于保护其免受致死性γ照射。

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引用本文的文献

1
Semiquinone derivative isolated from Bacillus sp. INM-1 protects cellular antioxidant enzymes from γ-radiation-induced renal toxicity.从芽孢杆菌 INM-1 中分离出的半醌衍生物可保护细胞抗氧化酶免受 γ 辐射诱导的肾毒性。
Mol Cell Biochem. 2013 Jul;379(1-2):19-27. doi: 10.1007/s11010-013-1622-x. Epub 2013 Apr 1.