Hyun Soo-Wang, Kim Bo-Ram, Lin Dan, Hyun Sung-Ae, Yoon Seong Shoon, Seo Joung-Wook
Research Group for Safety Pharmacology, Korea Institute of Toxicology, KRICT, Daejeon 34114, Republic of Korea.
J Pharmacol Toxicol Methods. 2018 May-Jun;91:1-6. doi: 10.1016/j.vascn.2017.12.002. Epub 2017 Dec 27.
Cell culture media usually contains antibiotics including gentamicin or penicillin/streptomycin (PS) to protect cells from bacterial contamination. However, little is known about the effects of antibiotics on action potential and field potential parameters in human induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CMs).
The present study examined the effects of gentamicin (10, 25, and 50μg/ml) and PS (50, 100, and 200U/μg/ml) on electrophysiological activity in spontaneously beating hiPSC-CMs using manual patch clamp and multi-electrode array. We also measured mRNA expression of cardiac ion channels in hiPSC-CMs grown in media with or without gentamicin (25μg/ml) using reverse transcription-polymerase chain reaction.
We recorded action potential and field potential of hiPSC-CMs grown in the presence or absence of gentamicin or PS. We also observed action potential parameters in hiPSC-CMs after short-term treatment with these antibiotics. Changes in action potential and field potential parameters were observed in hiPSC-CMs grown in media containing gentamicin or PS. Treatment with PS also affected action potential parameters in hiPSC-CMs. In addition, the mRNA expression of cardiac sodium and potassium ion channels was significantly attenuated in hiPSC-CMs grown in the presence of gentamicin (25μg/ml).
The present findings suggested that gentamicin should not be used in the culture media of hiPSC-CMs used for the measurement of electrophysiological parameters. Our findings also suggest that 100U/100μg/ml of PS are the maximum appropriate concentrations of these antibiotics for recording action potential waveform, because they did not influence action potential parameters in these cells.
细胞培养基通常含有抗生素,包括庆大霉素或青霉素/链霉素(PS),以保护细胞免受细菌污染。然而,关于抗生素对人诱导多能干细胞衍生心肌细胞(hiPSC-CMs)动作电位和场电位参数的影响,人们知之甚少。
本研究使用手动膜片钳和多电极阵列,研究了庆大霉素(10、25和50μg/ml)和PS(50、100和200U/μg/ml)对自发跳动的hiPSC-CMs电生理活性的影响。我们还使用逆转录-聚合酶链反应测量了在含或不含庆大霉素(25μg/ml)的培养基中生长的hiPSC-CMs中心脏离子通道的mRNA表达。
我们记录了在有或没有庆大霉素或PS的情况下生长的hiPSC-CMs的动作电位和场电位。我们还观察了用这些抗生素短期处理后hiPSC-CMs的动作电位参数。在含有庆大霉素或PS的培养基中生长的hiPSC-CMs中观察到动作电位和场电位参数的变化。用PS处理也影响hiPSC-CMs的动作电位参数。此外,在含有庆大霉素(25μg/ml)的情况下生长的hiPSC-CMs中心脏钠和钾离子通道的mRNA表达显著减弱。
本研究结果表明,庆大霉素不应在用于测量电生理参数的hiPSC-CMs培养基中使用。我们的研究结果还表明,100U/100μg/ml的PS是记录这些细胞动作电位波形时这些抗生素的最大合适浓度,因为它们不会影响这些细胞的动作电位参数。