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采用洋葱和盐水丰年虾实验评估金属离子及其配合物的生物效应:生物无机化学在环境方面的一种可能应用。

Assessment of the biological effect of metal ions and their complexes using Allium cepa and Artemia salina assays: a possible environmental implementation of biological inorganic chemistry.

机构信息

Section of Inorganic and Analytical Chemistry, Department of Chemistry, University of Ioannina, 45110, Ioannina, Greece.

Institute of Materials Science and Computing, University Research Center of Ioannina (URCI), Ioannina, Greece.

出版信息

J Biol Inorg Chem. 2022 Oct;27(7):611-629. doi: 10.1007/s00775-022-01963-2. Epub 2022 Sep 23.

Abstract

The pollution of aquatic ecosystems due to the elevated concentration of a variety of contaminants, such as metal ions, poses a threat to humankind, as these ecosystems are in high relevance with human activities and survivability. The exposure in heavy metal ions is responsible for many severe chronic and pathogenic diseases and some types of cancer as well. Metal ions of the groups 11 (Cu, Ag, Au), 12 (Zn, Cd, Hg), 14 (Sn, Pb) and 15 (Sb, Bi) highly interfere with proteins leading to DNA damage and oxidative stress. While, the detection of these contaminants is mainly based on physicochemical analysis, the chemical determination, however, is deemed ineffective in some cases because of their complex nature. The development of biological models for the evaluation of the presence of metal ions is an attractive solution, which provides more insights regarding their effects. The present work critically reviews the reports published regarding the toxicity assessment of heavy metal ions through Allium cepa and Artemia salina assays. The in vivo toxicity of the agents is not only dose depended, but it is also strongly affected by their ligand type. However, there is no comprehensive study which compares the biological effect of chemical agents against Allium cepa and Artemia salina. Reports that include metal ions and complexes interaction with either Allium cepa or Artemia salina bio-indicators are included in the review.

摘要

由于各种污染物(如金属离子)浓度升高而导致的水生生态系统污染对人类构成了威胁,因为这些生态系统与人类活动和生存能力密切相关。重金属离子的暴露会导致许多严重的慢性和致病性疾病以及某些类型的癌症。第 11 族(Cu、Ag、Au)、第 12 族(Zn、Cd、Hg)、第 14 族(Sn、Pb)和第 15 族(Sb、Bi)的金属离子高度干扰蛋白质,导致 DNA 损伤和氧化应激。虽然这些污染物的检测主要基于物理化学分析,但由于其复杂性,化学测定在某些情况下被认为是无效的。开发用于评估金属离子存在的生物模型是一种有吸引力的解决方案,它可以提供更多关于它们影响的信息。本工作批判性地回顾了关于通过洋葱和卤虫评估重金属离子毒性的报告。这些试剂的体内毒性不仅取决于剂量,而且还强烈受到其配体类型的影响。然而,目前还没有综合研究比较化学试剂对洋葱和卤虫的生物效应。本综述包括了包括金属离子和配合物与洋葱或卤虫生物标志物相互作用的报告。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1aa7/9569305/d289e916bfd8/775_2022_1963_Fig1_HTML.jpg

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