Neonatal rat cardiomyocytes as an in vitro model for circadian rhythms in the heart

Publication date

2017-11-01

Authors

du Pré, Bastiaan C.
Dierickx, Pieterjan
Crnko, SandraORCID 0000-0002-3962-1408
Doevendans, PieterISNI 0000000110574516
Vos, M AISNI 0000000395825015
Geijsen, Niels
Neutel, Didi
van Veen, ToonISNI 0000000394849488
Van Laake, Linda W.ISNI 0000000392656340

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Abstract

Circadian rhythms are biorhythms with a 24-hour period that are regulated by molecular clocks. Several clinical and animal models have been developed to analyze the role of these rhythms in cardiovascular physiology, disease and therapy, but a convenient in vitro model that mimics both molecular and functional circadian effects of the heart is not available. Therefore, we established a neonatal rat cardiomyocyte model that recapitulates in vivo circadian rhythmicity, as measured by anti-phasic oscillatory mRNA expression of two core clock genes, Bmal1 and Per2 and that shows functional dependence on the clock as indicated by an oscillating response in apoptosis induced by doxorubicin, hydroperoxide or hypoxia. In addition, perturbation of the cardiac clock by the use of several compounds including Resveratrol and Ex-527 was found to result in loss of functional rhythmicity. This indicates that neonatal rat cardiomyocytes are a good model to investigate the cardiac circadian clock as well as a system that allows for fast and easy preclinical testing of the influence of compounds on circadian rhythmicity that might have crucial effects on cardiac health.

Keywords

Circadian rhythms, Heart, In vitro, Neonatal rat cardiomyocytes, Molecular Biology, Cardiology and Cardiovascular Medicine

Citation

du Pré, B C, Dierickx, P, Crnko, S, Doevendans, P A, Vos, M A, Geijsen, N, Neutel, D, van Veen, T A B & van Laake, L W 2017, 'Neonatal rat cardiomyocytes as an in vitro model for circadian rhythms in the heart', Journal of Molecular and Cellular Cardiology, vol. 112, pp. 58-63. https://doi.org/10.1016/j.yjmcc.2017.08.009