首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Combination of HPLC with organic and inorganic mass spectrometry to study the metabolic response of the clam Scrobicularia plana Scrobicularia plana to arsenic exposure
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Combination of HPLC with organic and inorganic mass spectrometry to study the metabolic response of the clam Scrobicularia plana Scrobicularia plana to arsenic exposure

机译:HPLC与有机和无机质谱的组合,研究蛤蜊克罗贝拉斯巴克罗比亚普拉特菌的代谢反应砷暴露

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Abstract Arsenic is a toxic element extensively studied in the marine environment due to differential toxicological effects of inorganic and organic species. In the present work, the bivalve Scrobicularia plana was exposed to As V (10 and 100?μg/L) for 14 days to evaluate the metabolic perturbations caused by this element. Arsenic speciation and metabolomic analysis were performed in the digestive gland of the bivalve using two complementary analytical platforms based on inorganic and organic mass spectrometry. It has been observed the greater presence of the innocuous specie arsenobetaine produced in this organism as defense mechanism against arsenic toxicity, although significant concentrations of methylated and inorganic arsenic were also present, depending on the level of arsenic in aqueous media. Complementarily, a metabolomic study based on mass spectrometry and statistical discriminant analysis allows a good classification of samples associated to low and high As(V) exposure in relation to controls. About 15 metabolites suffer significant changes of expression by the presence of As(V): amino acids, nucleotides, energy‐related metabolites, free fatty acids, phospholipids and triacylglycerides, which can be related to membrane structural and functional damage. In addition, perturbation of the methylation cycle, associated with the increase of homocysteine and methionine was observed, which enhance the methylation of toxic inorganic arsenic to less toxic dimethylarsenic.
机译:抽象砷是在海洋环境中广泛地研究由于无机和有机物质的差的毒理学作用的有毒元素。在目前的工作中,双壳类Scrobicularia玻璃体暴露于作为V(10和100?微克/升),持续14天,以评估由该元素代谢扰动。砷的形态和代谢组学分析是在使用基于无机和有机质谱两个互补分析平台双壳类的消化腺进行。已经观察到在该生物体作为对抗砷毒性防御机制所产生的无害物种砷甜菜碱的更大的存在,虽然甲基化和无机砷显著浓度也存在,这取决于砷的在含水介质中的水平。互补地,基于质谱和统计判别分析一个代谢组学研究允许在相对于相关联的低和高的As(V)暴露于对照样本的良好的分类。约15代谢物遭受由的As(V)存在下表达的变化显著:氨基酸,核苷酸,与能量相关的代谢物,游离脂肪酸,磷脂和三酰基甘油酯,其可以在膜的结构和功能的损害有关。此外,甲基化周期的扰动,与高半胱氨酸的相关增加和甲硫氨酸观察到,其增强毒性的无机砷的甲基化为毒性较低的二甲基胂。

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