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Mechanisms of nanosilver-induced toxicological effects: more attention should be paid to its sublethal effects

机译:nanosilver-induced机制毒理学影响:更要注意亚致死效应

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Due to its unique physicochemical properties and remarkable antimicrobial activity, nanosilver (nAg) is increasingly being used in a wide array of fields, including medicine and personal care products. Despite substantial progress being made towards the understanding of the acute toxicity of nAg, large knowledge gaps still exist on the assessment of its chronic toxicity to humans. Chronic effects of nAg, typically at low doses (i.e. sublethal doses) should be different from the acute toxicity at high doses (i.e., lethal doses), which is analogous to other environmental pollutants. Although a few review papers have elaborated the findings on nAg-mediated toxicity, most of them only discussed overt toxicity of nAg at high-level exposure and failed to evaluate the chronic and cumulative effects of nAg at sublethal doses. Therefore, it is necessary to more stringently scrutinize the sublethal toxicity of nAg under environmentally relevant conditions. Herein, we recapitulated recent findings on the sublethal effects of nAg toxicity performed by our groups and others. We then discussed the molecular mechanisms by which nAg exerts its toxicity under low concentrations and compared that with nAg-induced cell death.
机译:由于其独特的物理化学性质和显著的抗菌活性,纳米银粒子(唠叨)越来越被广泛使用药品和个人护理等领域产品。急性毒性的理解唠叨,大知识差距仍然存在评估对人类的慢性毒性。唠叨的慢性影响,通常在低剂量(即亚致死的剂量)应该不同在高剂量的急性毒性(例如,致命的剂量),这是类似于其他环境污染物。阐述了发现nAg-mediated毒性,他们中的大多数只是唠叨的讨论明显的毒性在高层接触,无法评估慢性的唠叨和累积效应亚致死的剂量。亚致死的更严格的审查毒性的唠叨下环境有关条件。发现在亚致死的唠叨毒性的影响由我们的团体和他人。讨论了唠叨的分子机制发挥其在低浓度和毒性相比与nAg-induced细胞死亡。

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