Instituto de Biofísica Carlos Chagas Filho, Universidade Federal do Rio de Janeiro, 21941-902 Rio de Janeiro, Brazil.
Departamento de Fisiología, Facultad de Farmacia, Universidad del País Vasco UPV/EHU, 01006 Vitoria, Spain.
Int J Mol Sci. 2020 May 15;21(10):3490. doi: 10.3390/ijms21103490.
This study aims to investigate the cardiac electrical remodeling associated with intoxication by methylmercury (MeHg). We evaluated the chronic effects of MeHg on in vivo electrocardiograms and on ex vivo action potentials and depolarizing (I) and repolarizing (I) currents. The acute effect of MeHg was evaluated on HEK293 cells expressing human ERG, Kv4.3 and KCNQ1/KCNE1 channels. Chronic MeHg treatment increased QTc and T-T interval duration, prolonged action potential duration and decreased amplitude of I and I. In addition, heterologously expressed I, I or I decreased after acute exposure to MeHg at subnanomolar range. The introduction of the in vitro effects of MeHg in a computer model of human ventricular action potentials triggered early afterdepolarizations and arrhythmia. In conclusion, cardiac electrical remodeling induced by MeHg poisoning is related to the reduction of I and I. The acute effect of MeHg on hKv4.3; hERG and hKCNQ1/KCNE1 currents and their transposition to in silico models show an association between MeHg intoxication and acquired Long QT Syndrome in humans. MeHg can exert its high toxicity either after chronic or acute exposure to concentrations as low as picomolar.
本研究旨在探讨与甲基汞(MeHg)中毒相关的心脏电重构。我们评估了 MeHg 对体内心电图和离体动作电位以及去极化(I)和复极化(I)电流的慢性影响。还评估了 MeHg 对表达人 ERG、Kv4.3 和 KCNQ1/KCNE1 通道的 HEK293 细胞的急性作用。慢性 MeHg 处理增加了 QTc 和 T-T 间期持续时间,延长了动作电位持续时间,并降低了 I 和 I 的幅度。此外,亚纳摩尔范围内急性暴露于 MeHg 后,异源表达的 I、I 或 I 减少。MeHg 在人类心室动作电位计算机模型中的体外作用的引入会引发早期后除极和心律失常。总之,MeHg 中毒引起的心脏电重构与 I 和 I 的减少有关。MeHg 对 hKv4.3、hERG 和 hKCNQ1/KCNE1 电流的急性作用及其在计算机模型中的转位表明,MeHg 中毒与人类获得性长 QT 综合征之间存在关联。MeHg 无论是在慢性还是急性暴露于低至皮摩尔浓度时,都可能发挥其高毒性。