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Heavy Metals and Metalloids as Autophagy Inducing Agents: Focus on Cadmium and Arsenic

机译:重金属和准金属作为自噬诱导剂:集中于镉和砷

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摘要

In recent years, research on the autophagic process has greatly increased, invading the fields of biology and medicine. Several markers of the autophagic process have been discovered and various strategies have been reported studying this molecular process in different biological systems in both physiological and stress conditions. Furthermore, mechanisms of metalloid- or heavy metal-induced toxicity continue to be of interest given the ubiquitous nature and distribution of these contaminants in the environment where they often play the role of pollutants of numerous organisms. The aim of this review is a critical analysis and correlation of knowledge of autophagic mechanisms studied under stress for the most common arsenic (As) and cadmium (Cd) compounds. In this review we report data obtained in different experimental models for each compound, highlighting similarities and/or differences in the activation of autophagic processes. A more detailed discussion will concern the activation of autophagy in Cd-exposed sea urchin embryo since it is a suitable model system that is very sensitive to environmental stress, and Cd is one of the most studied heavy metal inductors of stress and modulator of different factors such as: protein kinase and phosphatase, caspases, mitochondria, heat shock proteins, metallothioneins, transcription factors, reactive oxygen species, apoptosis and autophagy.
机译:近年来,自噬过程的研究已大大增加,并侵入了生物学和医学领域。已经发现了几种自噬过程的标志物,并且已经报道了在生理和应激条件下研究不同生物系统中该分子过程的各种策略。此外,考虑到这些污染物在环境中的普遍性和分布,在环境中它们经常扮演着许多生物的污染物的角色,因此类金属或重金属引起的毒性的机制仍然令人关注。这篇综述的目的是对最常见的砷(As)和镉(Cd)化合物在压力下研究的自噬机制的知识进行批判性分析和相关性。在这篇综述中,我们报告了每种化合物在不同实验模型中获得的数据,突出了自噬过程激活的相似性和/或差异性。更详细的讨论将涉及暴露于Cd的海胆胚胎中自噬的激活,因为它是对环境应力非常敏感的合适模型系统,并且Cd是研究最多的应力重金属感应剂和不同因子的调节剂之一。如:蛋白激酶和磷酸酶,胱天蛋白酶,线粒体,热休克蛋白,金属硫蛋白,转录因子,活性氧,细胞凋亡和自噬。

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