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Catecholamines are key modulators of ventricular repolarization patterns in the ball python (Python regius)

delete2021-12-15
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OA
AI
B
Bastiaan J. Boukens
W
William Joyce
D
Ditte L. Kristensen
I
Ingeborg B. Hooijkaas
A
Aldo Jongejan
T
Tobias Wang
B
Bjarke Jensen *
DOI:10.1085/jgp.202012761delete
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摘要

摘要

En 中文
Ectothermic vertebrates experience daily changes in body temperature, and anecdotal observations suggest these changes affect ventricular repolarization such that the T-wave in the ECG changes polarity. Mammals, in contrast, can maintain stable body temperatures, and their ventricular repolarization is strongly modulated by changes in heart rate and by sympathetic nervous system activity. The aim of this study was to assess the role of body temperature, heart rate, and circulating catecholamines on local repolarization gradients in the ectothermic ball python (Python regius). We recorded body-surface electrocardiograms and performed open-chest high-resolution epicardial mapping while increasing body temperature in five pythons, in all of which there was a change in T-wave polarity. However, the vector of repolarization differed between individuals, and only a subset of leads revealed T-wave polarity change. RNA sequencing revealed regional differences related to adrenergic signaling. In one denervated and Ringer's solution-perfused heart, heating and elevated heart rates did not induce change in T-wave polarity, whereas noradrenaline did. Accordingly, electrocardiograms in eight awake pythons receiving intra-arterial infusion of the beta-adrenergic receptor agonists adrenaline and isoproterenol revealed T-wave inversion in most individuals. Conversely, blocking the beta-adrenergic receptors using propranolol prevented T-wave change during heating. Our findings indicate that changes in ventricular repolarization in ball pythons are caused by increased tone of the sympathetic nervous system, not by changes in temperature. Therefore, ventricular repolarization in both pythons and mammals is modulated by evolutionary conserved mechanisms involving catecholaminergic stimulation. Boukens and colleagues show that changes in ventricular repolarization in the ectothermic ball python are modulated by the sympathetic nervous system and not directly by changes in temperature. Their work shows that regulation of this process is conserved between pythons and mammals.
Keyword:
T-WAVE
BURMESE PYTHON
HEART-RATE
HEMODYNAMICS
STIMULATION
TEMPERATURE
EXCITATION
SEPARATION
ZEBRAFISH
PULMONARY
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期刊

Journal of General Physiology 封面图
Journal of General Physiology
IF:
2.9
论文数:
3.3K
被引数:
7.2K

机构

U
university of amsterdam
学者数:
6.0W
论文数: 5.1W
被引数: 94
A
Aarhus University
学者数:
4.3W
论文数: 4.2W
被引数: 4.8W
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