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海底电缆的磁场是否会影响常见双壳类动物的功能?

Do magnetic fields related to submarine power cables affect the functioning of a common bivalve?

机构信息

National Marine Fisheries Research Institute, Kołłątaja 1, 81-332, Gdynia, Poland.

National Marine Fisheries Research Institute, Kołłątaja 1, 81-332, Gdynia, Poland.

出版信息

Mar Environ Res. 2022 Jul;179:105700. doi: 10.1016/j.marenvres.2022.105700. Epub 2022 Jul 11.

Abstract

The aim of the study was to determine the effect of static magnetic field (SMF) and electromagnetic field (EMF), of values usually recorded near submarine cables, on the bioenergetics, oxidative stress, and neurotoxicity in the cockle Cerastoderma glaucum. Bivalves maintained a positive energy balance, but the filtration rate and energy available for individual production were significantly lower in SMF-exposed animals compared to the control treatment. No changes in the respiration were noted but ammonia excretion rate was significantly lower after exposure to EMF. Changes in the activities of antioxidant enzymes and the lipid peroxidation were not observed however, exposure to both fields resulted in increased protein carbonylation. After exposure to EMF a significant inhibition of acetylcholinesterase activity was observed. As the present study for the first time revealed the oxidative damage and neurotoxicity in marine invertebrate after exposure to artificial magnetic fields, the need for further research is highlighted.

摘要

本研究旨在确定通常在海底电缆附近记录到的静磁场 (SMF) 和电磁场 (EMF) 对贻贝 Cerastoderma glaucum 的生物能量学、氧化应激和神经毒性的影响。双壳类动物保持正能平衡,但与对照处理相比,暴露于 SMF 的动物的滤过率和个体生产可用能量显著降低。呼吸没有变化,但暴露于电磁场后氨排泄率显著降低。然而,抗氧化酶活性和脂质过氧化的变化没有观察到,但是两种场的暴露导致蛋白质羰基化增加。暴露于 EMF 后,观察到乙酰胆碱酯酶活性显著抑制。由于本研究首次揭示了海洋无脊椎动物在暴露于人工磁场后的氧化损伤和神经毒性,因此需要进一步研究。

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