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镍毒性的主要概念——概述。

Primary concept of nickel toxicity - an overview.

作者信息

Das Kusal K, Reddy R Chandramouli, Bagoji Ishwar B, Das Swastika, Bagali Shrilaxmi, Mullur Lata, Khodnapur Jyoti P, Biradar M S

机构信息

Department of Physiology, Laboratory of Vascular Physiology and Medicine, Shri B.M. Patil Medical College, Hospital and Research Centre, BLDE (Deemed to be University), Vijayapur, Karnataka, India.

Department of Biochemistry, Shri B.M. Patil Medical College, Hospital and Research Centre, BLDE (Deemed to be University), Vijayapur, Karnataka, India.

出版信息

J Basic Clin Physiol Pharmacol. 2018 Sep 4;30(2):141-152. doi: 10.1515/jbcpp-2017-0171.

Abstract

Toxic metals, including excessive levels of essential metals tend to change biological structures and systems into either reversible or irreversible conformations, leading to the derangement of organ functions or ultimate death. Nickel, a known heavy metal is found at very low levels in the environment. Nickel is available in all soil types and meteorites and also erupts from volcanic emissions. In the environment, nickel is principally bound with oxygen or sulfur and forms oxides or sulfides in earth crust. The vast industrial use of nickel during its production, recycling and disposal has led to widespread environmental pollution. Nickel is discharged into the atmosphere either by nickel mining or by various industrial processes, such as power plants or incinerators, rubber and plastic industries, nickel-cadmium battery industries and electroplating industries. The extensive use of nickel in various industries or its occupational exposure is definitely a matter of serious impact on human health. Heavy metals like nickel can produce free radicals from diatomic molecule through the double step process and generate superoxide anion. Further, these superoxide anions come together with protons and facilitate dismutation to form hydrogen peroxide, which is the most important reason behind the nickel-induced pathophysiological changes in living systems. In this review, we address the acute, subchronic and chronic nickel toxicities in both human and experimental animals. We have also discussed nickel-induced genotoxicity, carcinogenicity, immunotoxicity and toxicity in various other metabolically active tissues. This review specifically highlighted nickel-induced oxidative stress and possible cell signaling mechanisms as well.

摘要

有毒金属,包括过量的必需金属,往往会使生物结构和系统转变为可逆或不可逆的构象,导致器官功能紊乱或最终死亡。镍是一种已知的重金属,在环境中的含量极低。镍存在于所有类型的土壤和陨石中,也会从火山喷发物中释放出来。在环境中,镍主要与氧或硫结合,在地壳中形成氧化物或硫化物。镍在生产、回收和处置过程中的大量工业使用导致了广泛的环境污染。镍通过镍矿开采或各种工业过程排放到大气中,如发电厂或焚化炉、橡胶和塑料工业、镍镉电池工业和电镀工业。镍在各种行业中的广泛使用或职业接触绝对是对人类健康有严重影响的问题。像镍这样的重金属可以通过双步过程从双原子分子中产生自由基并生成超氧阴离子。此外,这些超氧阴离子与质子结合并促进歧化反应形成过氧化氢,这是镍诱导生物系统病理生理变化背后的最重要原因。在这篇综述中,我们阐述了镍在人类和实验动物中的急性、亚慢性和慢性毒性。我们还讨论了镍诱导的遗传毒性、致癌性、免疫毒性以及在各种其他代谢活跃组织中的毒性。这篇综述特别强调了镍诱导的氧化应激以及可能的细胞信号传导机制。

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