Key result
In adult rats, ventricular electrophysiological abnormalities normalized 20 days after ending high-altitude exposure, preceding the morphological normalization of right ventricular hypertrophy at 40 days.
In a rat model of chronic high-altitude hypoxia, electrophysiological abnormalities normalize before the regression of right ventricular hypertrophy.
RV EP recovery precedes RVH regression post-hypoxia in rats; hypothesis-generating for human PH timing, no practice change yet.
Recent studies indicate that regression of left ventricular hypertrophy normalizes membrane ionic current abnormalities. This work was designed to determine whether regression of right ventricular hypertrophy induced by permanent high-altitude exposure (4,500 m, 20 days) in adult rats also normalizes changes of ventricular myocyte electrophysiology. According to the current data, prolonged action potential, decreased transient outward current density, and increased inward sodium/calcium exchange current density normalized 20 days after the end of altitude exposure, whereas right ventricular hypertrophy evidenced by both the right ventricular weight-to-heart weight ratio and the right ventricular free wall thickness measurement normalized 40 days after the end of altitude exposure. This morphological normalization occurred at both the level of muscular tissue, as shown by the decrease toward control values of some myocyte parameters (perimeter, capacitance, and width), and the level of the interstitial collagenous connective tissue. In the chronic high-altitude hypoxia model, the regression of right ventricular hypertrophy would not be a prerequisite for normalization of ventricular electrophysiological abnormalities.
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Chouabe et al. (2002) studied Right ventricular hypertrophy induced by chronic high-altitude hypoxia. Return to normoxia after chronic high-altitude exposure vs. Control values was evaluated on Normalization of ventricular myocyte electrophysiology and right ventricular hypertrophy. In adult rats, ventricular electrophysiological abnormalities normalized 20 days after ending high-altitude exposure, preceding the morphological normalization of right ventricular hypertrophy at 40 days.
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