首页> 外文期刊>Journal of applied physiology >Changes in cardiac troponins with gestational age explain changes in cardiac muscle contractility in the sheep fetus.
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Changes in cardiac troponins with gestational age explain changes in cardiac muscle contractility in the sheep fetus.

机译:随着胎龄的增加,肌钙蛋白的变化可以解释绵羊胎儿心肌收缩力的变化。

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The development of the adult cardiac troponin complex in conjunction with changes in cardiac function and cardiomyocyte binucleation has not been systematically characterized during fetal life in a species where maturation of the cardiomyocytes occurs prenatally as it does in the human. The aim of this study was to correlate the expression of each of the major adult troponin isoforms (T, I, and C) during late gestation (term of 150 days) to changes in both Ca(2+) sensitivity and maximum Ca(2+)-activated force of the contractile apparatus and the maturation of cardiomyocytes. The percentage of mononucleated cardiomyocytes in the right ventricle decreased with gestational age to 46% by 137-142 days of gestation. The length of binucleated cardiomyocytes did not change with gestational age, but the length of binucleated cardiomyocytes relative to heart weight decreased with gestational age. There was no change in the expression of adult cardiac troponin T with increasing gestation. The contractile apparatus was significantly more sensitive to Ca(2+) at 90 days compared with either 132 or 139 days of gestation, consistent with an approximately 30% increase in the expression of adult cardiac troponin I between 90 and 110 days of gestation. Maximum Ca(2+)-activated force significantly increased from 90 days compared with 130 days consistent with an increase of approximately 40% in cardiac troponin C protein expression. These data show that increased adult cardiac troponin I and C protein expression across late gestation is consistent with reduced Ca(2+) sensitivity and increased maximum Ca(2+)-activated force. Furthermore, changes in cardiac troponin C, not I, protein expression track with the timing of cardiomyocyte binucleation.
机译:在胎儿生命过程中,成年心脏肌钙蛋白复合物的发展与心脏功能的变化以及心肌细胞的双核化尚未得到系统的表征。这项研究的目的是使妊娠后期(150天的期限)内每个主要的成人肌钙蛋白同工型(T,I和C)的表达与Ca(2+)敏感性和最大Ca(2)的变化相关。 +)收缩装置的激活力和心肌细胞的成熟。到妊娠137-142天,右心室中单核心肌细胞的百分比随着胎龄下降到46%。双核心肌细胞的长度并没有随着胎龄的变化而变化,但是相对于体重,双核心肌细胞的长度却随着胎龄的增加而降低。随着妊娠的增加,成人心肌肌钙蛋白T的表达没有变化。与妊娠132天或139天相比,该收缩装置在90天时对Ca(2+)的敏感性显着更高,这与妊娠90天至110天之间成人心肌肌钙蛋白I的表达增加约30%一致。最大的Ca(2+)激活力从90天相比130天显着增加,与心肌肌钙蛋白C蛋白表达增加约40%一致。这些数据显示,整个妊娠后期增加的成人心肌肌钙蛋白I和C蛋白表达与降低的Ca(2+)敏感性和增加的最大Ca(2+)激活力一致。此外,心肌肌钙蛋白C而不是I的表达随心肌细胞双核化的时间变化而变化。

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