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首页> 外文期刊>Environmental toxicology >Semiquinone Fraction Isolated from Bacillus sp. INM-1 Protects Hepatic Tissues Against γ-Radiation Induced Toxicity
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Semiquinone Fraction Isolated from Bacillus sp. INM-1 Protects Hepatic Tissues Against γ-Radiation Induced Toxicity

机译:从芽孢杆菌分离的半醌级分。 INM-1保护肝组织免受γ辐射诱导的毒性

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摘要

Present study was focused on evaluation of a semiquinone glucoside derivative (SQGD) isolated from radioresistant bacterium Bacillus sp. INM-1 for its ability against γ radiation induced oxidative stress in irradiated mice. Animals were divided into four group, i.e., (ⅰ) untreated control mice; (ⅱ) SQGD treated (50 mg/kg b. wt. i.p.) mice; (ⅲ) irradiated (10 Gy) mice; and (ⅳ) irradiated mice which were pre-treated (-2 h) with SQGD (50 mg/kg b. wt. i.p.). Following treatment, liver homogenates of the treated mice were subjected to endogenous antioxidant enzymes estimation. Result indicated that SQGD pre-treatment, significantly (P < 0.05) induced superoxide dismutase (SOD) (19.84 ± 2.18% at 72 h), catalase (CAT) (26.47 ± 3.11 % at 12 h), glutathione (33.81 ± 1.99% at 24 h), and glutathione-S-transferase (24.40 ± 2.65% at 6 h) activities in the liver of mice as compared with untreated control. Significant (P < 0.05) induction in SOD (50.04 ± 5.59% at 12 h), CAT (62.22 ± 7.50 at 72 h), glutathione (42.92 ± 2.28% at 24 h), and glutathione-S-transferase (46.65 ± 3.25 at 12 h) was observed in irradiated mice which were pre-treated with SQGD compared with only irradiated mice. Further, significant induction in ABTS+ radicals (directly proportional to decrease mM Trolox equivalent) was observed in liver homogenate of H_2O_2 treated mice which were found to be significantly inhibited in H_2O_2 treated mice pre-treated with SQGD. Thus, it can be concluded that SQGD treatment neutralizes oxidative stress caused by irradiation not only by enhancing endogenous antioxidant enzymes but also by improving total antioxidant status of cellular system and thus cumulative effect of the phenomenon may contributes to radioprotection.
机译:目前的研究集中在评估从抗辐射细菌芽孢杆菌属(Bacillus sp)分离的半醌葡萄糖苷衍生物(SQGD)。 INM-1具有抗γ辐射的能力,可引起辐照小鼠氧化应激。将动物分为四组,即(ⅰ)未治疗的对照小鼠;和(ⅱ)经SQGD处理(50 mg / kg b。wt。i.p.)的小鼠; (ⅲ)辐照(10 Gy)小鼠;和(ⅳ)用SQGD(50 mg / kg b。wt。i.p.)预处理(-2 h)的辐射小鼠。治疗后,对治疗小鼠的肝匀浆进行内源性抗氧化酶估计。结果表明,SQGD预处理显着(P <0.05)诱导过氧化物歧化酶(SOD)(72 h时为19.84±2.18%),过氧化氢酶(CAT)(12 h时为26.47±3.11%),谷胱甘肽(33.81±1.99%)与未处理的对照组相比,小鼠肝脏中的谷胱甘肽-S-转移酶(在24 h时)和谷胱甘肽S-转移酶(在6 h时为24.40±2.65%)活性。 SOD(12 h时为50.04±5.59%),CAT(72 h时为62.22±7.50),谷胱甘肽(24 h时为42.92±2.28%)和谷胱甘肽S-转移酶(46.65±3.25)显着(P <0.05)诱导与仅经辐照的小鼠相比,在经SQGD预处理的经辐照的小鼠中观察到了在12 h时的观察结果。此外,在H_2O_2处理的小鼠的肝匀浆中观察到了对ABTS +自由基的显着诱导(与mM Trolox当量的降低成正比),发现在用SQGD预处理的H_2O_2处理的小鼠中肝匀浆被显着抑制。因此,可以得出结论,SQGD处理不仅通过增强内源性抗氧化剂,而且还通过改善细胞系统的总抗氧化剂状态来中和由辐射引起的氧化应激,因此该现象的累积效应可能有助于放射防护。

著录项

  • 来源
    《Environmental toxicology》 |2014年第12期|1471-1478|共8页
  • 作者单位

    Radiation Biotechnology Laboratory, Department of Radiation Biosciences, Institute of Nuclear Medicine and Allied Sciences, Delhi 110054, India;

    Radiation Biotechnology Laboratory, Department of Radiation Biosciences, Institute of Nuclear Medicine and Allied Sciences, Delhi 110054, India;

    Radiation Biotechnology Laboratory, Department of Radiation Biosciences, Institute of Nuclear Medicine and Allied Sciences, Delhi 110054, India;

    Department of Biotechnology, G.B. Pant Engineering College, Pauri-Garhwal, Uttrakhand 246194, India;

    Department of Biotechnology, G.B. Pant Engineering College, Pauri-Garhwal, Uttrakhand 246194, India;

    Radiation Biotechnology Laboratory, Department of Radiation Biosciences, Institute of Nuclear Medicine and Allied Sciences, Delhi 110054, India;

    Radiation Biotechnology Laboratory, Department of Radiation Biosciences, Institute of Nuclear Medicine and Allied Sciences, Delhi 110054, India;

    Radiation Biotechnology Laboratory, Department of Radiation Biosciences, Institute of Nuclear Medicine and Allied Sciences, Delhi 110054, India;

    Department of Biochemistry, Faculty of Science, Jamia Hamdard, Delhi 110062, India;

    Radiation Biotechnology Laboratory, Department of Radiation Biosciences, Institute of Nuclear Medicine and Allied Sciences, Delhi 110054, India;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    antioxidant; superoxide dismutase; catalase; glutathione-S-transferase; GSH; radioprotection;

    机译:抗氧化剂超氧化物歧化酶;过氧化氢酶谷胱甘肽S-转移酶;GSH;放射防护;

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