代谢组学
代谢组
阳极
阴极保护
化学
原电池
锌
金属
环境化学
电偶阳极
腐蚀
生物化学
色谱法
电极
有机化学
物理化学
作者
Nathalie Imbert,Denis Fichet,Pierre‐Edouard Bodet,Pascaline Ory,R. Sabot,Philippe Refait,Marianne Graber
出处
期刊:Metabolites
[Multidisciplinary Digital Publishing Institute]
日期:2023-07-20
卷期号:13 (7): 869-869
被引量:5
标识
DOI:10.3390/metabo13070869
摘要
Cathodic protection is widely used to protect metal structures from corrosion in marine environments using sacrificial galvanic anodes. These anodes, either in Zinc, or preferentially nowadays in Al-Zn-In alloys, are expected to corrode instead of the metal structures. This leads to the release of dissolved species, Zn2+, Al3+, and In3+, and solid phases such as Al(OH)3. Few studies have been conducted on their effects on marine organisms, and they concluded that further investigations are needed. We therefore evaluated the effects of Zn and Al-Zn-In anodes on oysters stabulated in tanks, under controlled conditions defined through a comparison with those prevailing in a given commercial seaport used as reference. We analyzed the entire metabolome of gills with a non-targeted metabolomic approach HRMS. A modelling study of the chemical species, corresponding to the degradation products of the anodes, likely to be present near the exposed oysters, was also included. We identified 16 and two metabolites modulated by Zn- and Al-Zn-In-anodes, respectively, that were involved in energy metabolism, osmoregulation, oxidative stress, lipid, nucleotide nucleoside and amino acid metabolisms, defense and signaling pathways. The combination of chemical modelling and metabolomic approach, used here for the first time, enlightened the influence of Zn present in the Al-Zn-In anodes.
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