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砷酸盐和亚砷酸盐在嗜热四膜虫中的差异毒性。

Arsenate and arsenite differential toxicity in Tetrahymena thermophila.

机构信息

Animal Health Research Centre (CISA), National Institute for Agricultural and Food Research and Technology (INIA-CSIC), 28130 Madrid, Spain.

Department of Biodiversity, Ecology and Evolution, Faculty of Biology, Complutense University of Madrid, Spain.

出版信息

J Hazard Mater. 2022 Jun 5;431:128532. doi: 10.1016/j.jhazmat.2022.128532. Epub 2022 Feb 25.

Abstract

A comparative analysis of toxicities of both arsenic forms (arsenite and arsenate) in the model eukaryotic microorganism Tetrahymena thermophila (ciliate protozoa) has shown the presence of various detoxification mechanisms and cellular effects comparable to those of animal cells under arsenic stress. In the wild type strain SB1969 arsenate is almost 2.5 times more toxic than arsenite. According to the concentration addition model used in binary metallic mixtures their toxicities show an additive effect. Using fluorescent assays and flow cytometry, it has been detected that As(V) generates elevated levels of ROS/RNS compared to As(III). Both produce the same levels of superoxide anion, but As(V) also causes greater increases in hydrogen peroxide and peroxynitrite. The mitochondrial membrane potential is affected by both As(V) and As(III), and electron microscopy has also revealed that mitochondria are the main target of both arsenic ionic forms. Fusion/fission and swelling mitochondrial and mitophagy, together with macroautophagy, vacuolization and mucocyst extruction are mainly associated to As(V) toxicity, while As(III) induces an extensive lipid metabolism dysfunction (adipotropic effect). Quantitative RT-PCR analysis of some genes encoding antioxidant proteins or enzymes has shown that glutathione and thioredoxin metabolisms are involved in the response to arsenic stress. Likewise, the function of metallothioneins seems to be crucial in arsenic detoxification processes, after using both metallothionein knockout and knockdown strains and cells overexpressing metallothionein genes from this ciliate. The analysis of the differential toxicity of As(III) and As(V) shown in this study provides cytological and molecular tools to be used as biomarkers for each of the two arsenic ionic forms.

摘要

在模式真核微生物四膜虫(纤毛虫原生动物)中对两种砷形态(亚砷酸盐和砷酸盐)的毒性进行了比较分析,结果表明存在各种解毒机制和细胞效应,这些机制和细胞效应与动物细胞在砷胁迫下的情况相当。在野生型菌株 SB1969 中,砷酸盐的毒性几乎是亚砷酸盐的 2.5 倍。根据二元金属混合物中使用的浓度加和模型,它们的毒性表现出相加效应。使用荧光测定法和流式细胞术检测到,与 As(III)相比,As(V)会产生更高水平的 ROS/RNS。两者都会产生相同水平的超氧阴离子,但 As(V)还会导致过氧化氢和过氧亚硝酸盐的增加。线粒体膜电位受到 As(V)和 As(III)的影响,电子显微镜还揭示了线粒体是这两种砷离子形式的主要靶标。线粒体的融合/裂变和肿胀以及线粒体自噬,与巨自噬、空泡化和黏液囊排出主要与 As(V)毒性有关,而 As(III)则会引起广泛的脂质代谢功能障碍(脂肪生成作用)。一些编码抗氧化蛋白或酶的基因的定量 RT-PCR 分析表明,谷胱甘肽和硫氧还蛋白代谢参与了对砷应激的反应。同样,金属硫蛋白的功能似乎在砷解毒过程中至关重要,在使用金属硫蛋白敲除和敲低菌株以及过度表达这种纤毛虫金属硫蛋白基因的细胞后,都是如此。本研究中对 As(III)和 As(V)的差异毒性的分析为两种砷离子形式的每一种提供了细胞学和分子工具,可作为生物标志物使用。

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