首页> 外文期刊>Indian journal of clinical biochemistry >Ameliorating reactive oxygen species-induced in vitro lipid peroxidation in brain, liver, mitochondria and DNA damage by Zingiber officinale Roscoe
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Ameliorating reactive oxygen species-induced in vitro lipid peroxidation in brain, liver, mitochondria and DNA damage by Zingiber officinale Roscoe

机译:减轻活性氧引起的体外脂质在脑,肝,线粒体中的过氧化作用以及生姜 Roscoe对DNA的损伤

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Iron is an essential nutrient for a number of cellular activities. However, excess cellular iron can be toxic by producing reactive oxygen species (ROS) such as superoxide anion (O2−) and hydroxyl radical (HO·) that damage proteins, lipids and DNA. Mutagenic and genotoxic end products of lipid peroxidation can induce the decline of mitochondrial respiration and are associated with various human ailments including aging, neurodegenerative disorders, cancer etc. Zingiber officinale Roscoe (ginger) is a widely used spice around the world. The protective effect of aqueous ethanol extract of Z. officinale against ROS-induced in vitro lipid peroxidation and DNA damage was evaluated in this study. The lipid peroxidation was induced by hydroxyl radical generated from Fenton’s reaction in rat liver and brain homogenates and mitochondrial fraction (isolated from rat liver). The DNA protection was evaluated using H2O2-induced changes in pBR-322 plasmid and Fenton reaction-induced DNA fragmentation in rat liver. The results indicated that Z. officinale significantly (P<0.001) protected the lipid peroxidation in all the tissue homogenate/mitochondria. The extract at 2 and 0.5 mg/ml could protect 92 % of the lipid peroxidation in brain homogenate and liver mitochondria respectively. The percent inhibition of lipid peroxidation at 1mg/ml of Z. officinale in the liver homogenate was 94 %. However, the extract could partially alleviate the DNA damage. The protective mechanism can be correlated to the radical scavenging property of Z. officinale. The results of the study suggest the possible nutraceutical role of Z. officinale against the oxidative stress induced human ailments.
机译:铁是许多细胞活动必不可少的营养素。但是,过量的细胞铁会产生活性氧(ROS),例如超氧化物阴离子(O2-)和羟基自由基(HO·),从而破坏蛋白质,脂质和DNA,因而具有毒性。脂质过氧化作用的诱变和遗传毒性终产物可导致线粒体呼吸作用下降,并与各种人类疾病相关,包括衰老,神经退行性疾病,癌症等。在本研究中评估了厚朴植物乙醇提取物对ROS诱导的体外脂质过氧化和DNA损伤的保护作用。脂质过氧化是由Fenton反应在大鼠肝脏和脑匀浆以及线粒体级分(从大鼠肝脏分离)中产生的羟基引起的。使用H2O2诱导的pBR-322质粒变化和Fenton反应诱导的大鼠肝DNA片段化来评估DNA保护。结果表明,Z。officinale在所有组织匀浆/线粒体中均显着(P <0.001)保护脂质过氧化。 2和0.5 mg / ml的提取物分别可保护脑匀浆和肝线粒体中92%的脂质过氧化。肝匀浆中1mg / ml的Z. officinale对脂质过氧化的抑制百分比为94%。但是,提取物可以部分减轻DNA损伤。保护机制可以与Z.officinale的自由基清除性质有关。研究结果表明,Z。officinale可能对氧化应激引起的人类疾病具有保健作用。

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