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菲改变了极地鱼类纳瓦加鳕鱼心房和心室肌细胞的电活动。

Phenanthrene alters the electrical activity of atrial and ventricular myocytes of a polar fish, the Navaga cod.

作者信息

Abramochkin Denis V, Kompella Shiva N, Shiels Holly A

机构信息

Department of Human and Animal Physiology, Lomonosov Moscow State University, Leninskiye gory, 1, 12, Moscow, 119234, Russia; Laboratory of Cardiac Electrophysiology, National Medical Research Center for Cardiology, 3rd Cherepkovskaya, 15a, Moscow, Russia; Department of Physiology, Pirogov Russian National Research Medical University, Ostrovityanova str., 1, Moscow, Russia; Ural Federal University, 19 Mira Street, 620002 Ekaterinburg, Russia.

Faculty of Biology, Medicine and Health, Core Technology Facility, University of Manchester, 46 Grafton Street, Manchester M13 9NT, UK.

出版信息

Aquat Toxicol. 2021 Jun;235:105823. doi: 10.1016/j.aquatox.2021.105823. Epub 2021 Apr 4.

Abstract

Oil and gas exploration in the Arctic can result in the release of polycyclic aromatic hydrocarbons (PAHs) into relatively pristine environments. Following the recent spill of approximately 17 500 tonnes of diesel fuel in Norilsk, Russia, May 2020, our study focussed on the effects of phenanthrene, a low molecular weight PAH found in diesel and crude oil, on the isolated atrial and ventricular myocytes from the heart of the polar teleost, the Navaga cod (Eleginus nawaga). Acute exposure to phenanthrene in navaga cardiomyocytes caused significant action potential (AP) prolongation, confirming the proarrhythmic effects of this pollutant. We show AP prolongation was due to potent inhibition of the main repolarising current, I, with an IC value of 2 µM. We also show a potent inhibitory effect (55%) of 1 µM phenanthrene on the transient I currents that protects the heart from early-after-depolarizations and arrhythmias. These data, along with more minor effects on inward sodium (I) (17% inhibition at 10 µM) and calcium (I) (17% inhibition at 30 µM) currents, and no effects on inward rectifier (I and I) currents, demonstrate the cardiotoxic effects exerted by phenanthrene on the atrium and ventricle of navaga cod. Moreover, we report the first data that we are aware of on the impact of phenanthrene on atrial myocyte function in any fish species.

摘要

北极地区的石油和天然气勘探可能导致多环芳烃(PAHs)释放到相对原始的环境中。在2020年5月俄罗斯诺里尔斯克发生约17500吨柴油泄漏事件之后,我们的研究聚焦于菲(一种在柴油和原油中发现的低分子量多环芳烃)对极地硬骨鱼纳瓦加鳕鱼(Eleginus nawaga)心脏分离出的心房和心室肌细胞的影响。纳瓦加心肌细胞急性暴露于菲会导致动作电位(AP)显著延长,证实了这种污染物的促心律失常作用。我们发现动作电位延长是由于对主要复极化电流I的强力抑制,其半数抑制浓度(IC)值约为2µM。我们还发现1µM菲对瞬时I电流有强力抑制作用(约55%),该电流可保护心脏免受早期后去极化和心律失常的影响。这些数据,连同对内向钠电流(I,10µM时约17%抑制)和钙电流(I,30µM时约17%抑制)的较小影响,以及对内向整流器电流(I和I)无影响,证明了菲对纳瓦加鳕鱼心房和心室的心脏毒性作用。此外,我们报告了我们所知的关于菲对任何鱼类心房肌细胞功能影响的首批数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/961b/8121755/99e5004bbd5b/gr1.jpg

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