三氧化二砷介导的脑神经退行性和感染性疾病的分子机制综述

Vaishali Negi, Prabhat Singh, Lubhan Singh, Rupesh Kumar Pandey, Sokindra Kumar
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引用次数: 0

摘要

砷是一种环境毒物,其毒性是影响数百万人的全球性健康问题。砷暴露来自自然地质来源,渗入含水层,污染饮用水,也可能来自采矿和其他工业过程。砷暴露后可能发生癌变、非癌变和免疫并发症。许多其他目标器官,如肺、胸腺、脾、肝、心、肾和脑。砷介导的神经毒性以及免疫毒性是本综述的主要关注点。长期接触砷可导致各种神经功能障碍,可能导致大脑神经行为缺陷和生化损伤,这可能会对晚期的生活质量产生负面影响。砷还会改变大脑中各种神经递质的水平,如血清素、多巴胺和去甲肾上腺素,从而产生神经毒性作用和免疫缺陷。因此,了解三氧化二砷介导的大脑神经退行性和免疫相关改变的神经毒性机制至关重要。它发挥其毒性作用的主要机制之一是通过抑制各种线粒体酶和氧化磷酸化的解偶联来损害细胞呼吸。本文综述了砷介导的神经行为和免疫相关变化的各种毒性机制。因此,本综述对砷介导的免疫毒性、神经毒性和神经退行性改变中的线粒体功能障碍、氧化应激、谷氨酸兴奋、炎症和凋亡相关机制进行了批判性分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Comprehensive Review on Molecular Mechanism Involved in Arsenic Trioxide Mediated Cerebral Neurodegenerative and Infectious Diseases.

Arsenic is an environmental toxicant and its toxicity is a global health problem affecting millions of people. Arsenic exposure occurs from natural geological sources leaching into aquifers, contaminating drinking water and may also occur from mining and other industrial processes. Both cancerous, noncancerous and immunological complications are possible after arsenic exposure. The many other target organs like lungs, thymus, spleen, liver, heart, kidney, and brain. Arsenic-mediated neuro, as well as immunotoxicity, is the main concern of this review. Long-term arsenic exposure can lead to various neurological dysfunctions, which may cause neurobehavioral defects and biochemical impairment in the brain, this might negatively affect one's quality of life in later stages. Arsenic also alters the levels of various neurotransmitters such as serotonin, dopamine and norepinephrine in the brain which produces neurotoxic effects and immunological deficiency. So, it is crucial to understand the neurotoxic mechanism of arsenic trioxide-mediated cerebro neurodegenerative and immunerelated alterations. One of the major mechanisms by which it exerts its toxic effect is through an impairment of cellular respiration by inhibition of various mitochondrial enzymes, and the uncoupling of oxidative phosphorylation. This review focuses on the various toxic mechanisms responsible for arsenic-mediated neurobehavioral and immune-related changes. Therefore, this review provides a critical analysis of mitochondrial dysfunctions, oxidative stress, glutamate excitatory, inflammatory and apoptosis-related mechanistic aspects in arsenic-mediated immunotoxicity, neurotoxicity, and neurodegenerative changes.

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