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DNA damage in organs of mice treated acutely with patulin, a known mycotoxin

机译:帕特林(一种已知的霉菌毒素)急性治疗小鼠器官中的DNA损伤

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摘要

Patulin, a known mycotoxin, is considered a significant contaminant in apples, apple-derived products and feeds. This study investigated the genotoxic effects of patulin in multiple organs (brain, kidney, liver and urinary bladder) of mice using an in vivo comet assay. We assessed the mechanism underlying this genotoxicity by measuring the GSH content and the thiobarbituric acid-reactive species (TBARS) level. Male CF-1 mice were given 1.0-3.75. mg/kg patulin intraperitoneally. The effect of patulin was dose-dependent and the highest patulin dose induced DNA strand breaks in the brain (damage index, DI, in hippocampus increased from 36.2 in control animals to 127.5), liver (44.3-138.4) and kidneys (31.5-99); decreased levels of GSH (hippocampus - from 46.9 to 18.4. nmol/mg protein); and an increase in lipid peroxidation (hippocampus - from 5.8 to 20.3 MDA equivalents/mg protein). This finding establishes an interrelationship between the pro-oxidant and genotoxic effects of patulin. Pre-treatment administration of N-acetyl-cysteine reduced patulin-induced DNA damage (hippocampus - DI from 127.5 to 39.8) and lipid peroxidation (hippocampus - 20.3 to 12.8 MDA equivalents/mg protein) by restoring cellular GSH levels, reinforcing the positive relationship between patulin-induced GSH depletion and DNA damage caused by systemic administration of this mycotoxin.
机译:Patulin是一种已知的霉菌毒素,被认为是苹果,苹果衍生产品和饲料中的重要污染物。这项研究使用体内彗星试验研究了棒曲霉素对小鼠多个器官(脑,肾,肝和膀胱)的遗传毒性作用。我们通过测量GSH含量和硫代巴比妥酸反应性物种(TBARS)的水平评估了这种遗传毒性的潜在机制。给雄性CF-1小鼠1.0-3.75。腹膜内注射mg / kg patulin。棒曲霉素的作用是剂量依赖性的,并且最高的棒曲霉素剂量诱导的大脑DNA链断裂(海马的损伤指数,DI)从对照动物的36.2增加到127.5),肝脏(44.3-138.4)和肾脏(31.5-99) );谷胱甘肽水平降低(海马体-从46.9降至18.4。nmol / mg蛋白);脂质过氧化作用增加(海马-MDA当量从5.8增至20.3 mg / mg蛋白)。这一发现建立了棒曲霉素的促氧化剂作用与遗传毒性作用之间的相互关系。 N-乙酰半胱氨酸的预处理可通过恢复细胞中GSH的水平来减少Patulin诱导的DNA损伤(海马-DI从127.5降至39.8)和脂质过氧化(海马-20.3至12.8 MDA当量/ mg蛋白),从而增强了正相关关系曲霉素诱导的谷胱甘肽耗竭与全身施用这种真菌毒素引起的DNA损伤之间的关系。

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