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January 10, 2013AJP Regulatory Integrative and Comparative Physiology21 citationsOpen Access

Hindlimb unloading results in increased predisposition to cardiac arrhythmias and alters left ventricular connexin 43 expression

JMJulia A. MoffittMHMatthew K. HenryKWKathryn C. Welliver

Key Result

Hindlimb unloading resulted in a significantly greater total arrhythmic burden during a sympathetic stressor and increased expression of phosphorylated left ventricular connexin 43.

Structured PICO

Does hindlimb unloading increase predisposition to cardiac arrhythmias and alter left ventricular connexin 43 expression in male Sprague-Dawley rats?

P
Population
24 male Sprague-Dawley rats subjected to 10-14 days of hindlimb unloading or casted control to simulate microgravity-induced cardiovascular deconditioning.
I
Intervention
Hindlimb unloading (HU) for 10 to 14 days
C
Comparator
Casted control (CC) for 10 to 14 days
O
Outcome
Arrhythmic burden (spontaneous and provoked by sympathetic stressor) and left ventricular connexin 43 (LV-Cx43) expressionsurrogate

Cardiovascular deconditioning via hindlimb unloading increases the predisposition to cardiac arrhythmias during sympathetic stress and alters LV-Cx43 phosphorylation in a rat model.

Main Result

p-value: p=<0.05

Limitations

  • Animal model may not perfectly translate to human spaceflight or clinical conditions
  • The exact mechanisms triggering early supraventricular events remain speculative
  • Time course of compensatory changes in Cx43 expression was not fully elucidated

Abstract

Hindlimb unloading (HU) is a well-established animal model of cardiovascular deconditioning. Previous data indicate that HU results in cardiac sympathovagal imbalance. It is well established that cardiac sympathovagal imbalance increases the risk for developing cardiac arrhythmias. The cardiac gap junction protein connexin 43 (Cx43) is predominately expressed in the left ventricle (LV) and ensures efficient cell-to-cell electrical coupling. In the current study we wanted to test the hypothesis that HU would result in increased predisposition to cardiac arrhythmias and alter the expression and/or phosphorylation of LV-Cx43. Electrocardiographic data using implantable telemetry were obtained over a 10- to 14-day HU or casted control (CC) condition and in response to a sympathetic stressor using isoproterenol administration and brief restraint. The arrhythmic burden was calculated using a modified scoring system to quantify spontaneous and provoked arrhythmias. In addition, Western blot analysis was used to measure LV-Cx43 expression in lysates probed with antibodies directed against the total and an unphosphorylated form of Cx43 in CC and HU rats. HU resulted in a significantly greater total arrhythmic burden during the sympathetic stressor with significantly more ventricular arrhythmias occurring. In addition, there was increased expression of total LV-Cx43 observed with no difference in the expression of unphosphorylated LV-Cx43. Specifically, the increased expression of LV-Cx43 was consistent with the phosphorylated form. These data taken together indicate that cardiovascular deconditioning produced through HU results in increased predisposition to cardiac arrhythmias and increased expression of phosphorylated LV-Cx43.

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Cite This Study

Moffitt et al. (2013) studied Cardiovascular deconditioning (simulated microgravity) (n=24). Hindlimb unloading vs. Casted control was evaluated on Arrhythmic burden during sympathetic stressor and left ventricular connexin 43 (LV-Cx43) expression (p=<0.05). Hindlimb unloading resulted in a significantly greater total arrhythmic burden during a sympathetic stressor and increased expression of phosphorylated left ventricular connexin 43.

synapsesocial.com/papers/6a8ac3ba77493d51bfdebd83https://doi.org/10.1152/ajpregu.00391.2012
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