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February 9, 2026Advances in Biological Regulation0 citationsOpen Access

Adrenergic receptor activation shapes circadian clock gene oscillations in HL-1 cardiomyocyte cell line

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ECElena CreccaMPMARTINA PINNAMAMaria Rita Assenza

Key Points

  • The research aims to explore how adrenergic receptor activation affects the oscillations of clock genes in cardiomyocytes.
  • Utilized HL-1 cardiomyocyte cell line for the study.
  • Induced synchronized oscillations of core clock genes via serum shock.
  • Applied different adrenergic receptor activators under synchronized and non-synchronized conditions.
  • Measured circadian oscillations of representative clock genes.
  • Alpha- and beta-adrenergic receptor activation differentially influenced clock gene expression.
  • Changes were observed in clock gene mesor, amplitude, and phase with receptor activation.
  • The study highlights HL-1 cells as a valuable model for investigating cardiomyocyte circadian rhythms.

Abstract

Circadian rhythms are physiological, biochemical and behavioural processes with a 24-h period molecularly regulated by clock genes. Cardiovascular physiology is subject to circadian variations in heart rate, blood pressure and contractility to optimize its function according to the rest-activity phases. Adrenergic receptors (ARs), activated by endogenous catecholamine hormones, are crucial in the regulation of cardiac functions; however, controllable in vitro models to study the intrinsic cardiomyocyte circadian clock with minimal systemic timing cues remain limited. Here, we use HL-1 cardiomyocyte cell line (HL-1 cells), in which serum shock induces synchronized oscillations of core clock gene transcripts compared with unsynchronized cultures. Different ARs activators onto HL-1 cells were applied under non-synchronized or synchronized conditions and circadian oscillation of representative clock genes was determined. We show that alpha- and beta-AR activation differentially modulates clock gene mesor, amplitude and phase. These findings support HL-1 cells as a convenient in vitro platform to investigate interactions between adrenergic signaling and cardiomyocyte clock gene oscillations.

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Cite This Study

Crecca et al. (2026) studied this question.

synapsesocial.com/papers/698978dff0ec2af6756e7179https://doi.org/10.1016/j.jbior.2026.101159
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