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A Systematic Review of the Molecular Mechanisms of Uranium -Induced Reproductive Toxicity.

机译:铀诱导的生殖毒性分子机制的系统综述。

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Uranium is the heaviest metal known as nuclear fuel, and employed in the production of glass tinting compounds, ceramic glazes, gyroscope wheels, chemical catalysts and X-ray tube targets. Inhalation and ingestion are two of the most usual ways of exposure. Uranium may be released into drinking water through the mining leading to contamination. Uranium is able to damage the DNA by generation of free radicals and acting as a catalyst in the Fenton reactions causing oxidative stress. In fact, reproductive system contains high amount of polyunsaturated fatty acids, and therefore it is highly vulnerable to reactive oxygen species (ROS) and sensitive to uranium toxicity. Toxic effects of uranium are generally reported through different mechanisms of action including inflammation, degeneration of testis, vacuolization of Leydig cells, spermatocytes necrosis, and oocyte dysmorphism. The present article provides a comprehensive review of the recent findings mostly about the molecular and biochemical toxicity of uranium on the reproductive system.
机译:铀是最重的金属,被称为核燃料,用于生产玻璃着色剂,陶瓷釉料,陀螺仪轮,化学催化剂和X射线管靶。吸入和摄入是最常见的两种接触方式。铀可能会通过采矿释放到饮用水中,从而导致污染。铀能够通过产生自由基来破坏DNA,并在Fenton反应中充当催化剂,从而引起氧化应激。实际上,生殖系统含有大量的多不饱和脂肪酸,因此极易受到活性氧(ROS)的影响,并对铀的毒性敏感。铀的毒性作用通常通过不同的作用机理来报道,包括炎症,睾丸变性,Leydig细胞空泡化,精细胞坏死和卵母细胞畸形。本文全面综述了最近的发现,这些发现主要涉及铀对生殖系统的分子和生物化学毒性。

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