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July 24, 2020Circulation Arrhythmia and Electrophysiology35 citationsOpen Access

Aging Disrupts Normal Time-of-Day Variation in Cardiac Electrophysiology

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ZWZhen WangSTSrinivas TapaSSSamantha D. Francis Stuart

Structured PICO

P
Population
Adult (12–18 weeks) and aged (18–20 months) male mice
I
Intervention
Assessment of hearts isolated during the light cycle (zeitgeber time [ZT] 4 and ZT9) and dark cycle (ZT14 and ZT21)
C
Comparator
Comparison across different zeitgeber times (ZT) and between adult and aged mice
O
Outcome
Action potential duration (APD) and Ca2+ transient duration (CaTD)surrogate

Isolated adult hearts exhibit strong time-of-day variation in cardiac electrophysiology and calcium handling, which is disrupted with age.

Abstract

Background: Cardiac gene expression and arrhythmia occurrence have time-of-day variation; however, daily changes in cardiac electrophysiology, arrhythmia susceptibility, and Ca 2+ handling have not been characterized. Furthermore, how these patterns change with age is unknown. Methods: Hearts were isolated during the light (zeitgeber time ZT 4 and ZT9) and dark cycle (ZT14 and ZT21) from adult (12–18 weeks) male mice. Hearts from aged (18–20 months) male mice were isolated at ZT4 and ZT14. All hearts were Langendorff-perfused for optical mapping with voltage- and Ca 2+ -sensitive dyes (n=4–7/group). Cardiac gene and protein expression were assessed with real-time polymerase chain reaction (n=4–6/group) and Western blot (n=3–4/group). Results: Adult hearts had the shortest action potential duration (APD) and Ca 2+ transient duration (CaTD) at ZT14 (APD 80 : ZT4: 45.4±4.1 ms; ZT9: 45.1±8.6 ms; ZT14: 34.7±4.2 ms; ZT21: 49.2±7.6 ms, P <0.05 versus ZT4 and ZT21; and CaTD 80 : ZT4: 70.1±3.3 ms; ZT9: 72.7±2.7 ms; ZT14: 64.3±3.3 ms; ZT21: 74.4±1.2 ms, P <0.05 versus other time points). The pacing frequency at which CaT alternans emerged was faster, and average CaT alternans magnitude was significantly reduced at ZT14 compared with the other time points. There was a trend for decreased spontaneous premature ventricular complexes and pacing-induced ventricular arrhythmias at ZT14, and the hearts at ZT14 had diminished responses to isoproterenol compared with ZT4 (ZT4: 49.5.0±5.6% versus ZT14: 22.7±9.5% decrease in APD, P <0.01). In contrast, aged hearts exhibited no difference between ZT14 and ZT4 in nearly every parameter assessed (except APD 80 : ZT4: 39.7±1.9 ms versus ZT14: 33.8±3.1 ms, P <0.01). Gene expression of KCNA5 (potassium voltage-gated channel subfamily A member 5; encoding Kv1.5) was increased, whereas gene expression of ADRB1 (encoding β1-adrenergic receptors) was decreased at ZT14 versus ZT4 in adult hearts. No time-of-day changes in expression or phosphorylation of Ca 2+ handling proteins (SERCA2 sarco/endoplasmic reticulum Ca 2+ -ATPase, RyR2 ryanodine receptor 2, and PLB phospholamban) was found in ex vivo perfused adult isolated hearts. Conclusions: Isolated adult hearts have strong time-of-day variation in cardiac electrophysiology, Ca 2+ handling, and adrenergic responsiveness, which is disrupted with age.

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Cite This Study

Wang et al. (2020) studied this question.

synapsesocial.com/papers/6a71015fe36a167817e2d6cehttps://doi.org/10.1161/circep.119.008093
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