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在发育中的绵羊 Ovis aries 中,心脏形态的缩放会在出生时中断。

Scaling of cardiac morphology is interrupted by birth in the developing sheep Ovis aries.

机构信息

Brain Function Research Group, School of Physiology, University of the Witwatersrand, Johannesburg, Gauteng, South Africa.

School of Biological Sciences, University of Adelaide, Adelaide, SA, Australia.

出版信息

J Anat. 2019 Jul;235(1):96-105. doi: 10.1111/joa.12990. Epub 2019 Apr 17.

Abstract

Scaling of the heart across development can reveal the degree to which variation in cardiac morphology depends on body mass. In this study, we assessed the scaling of heart mass, left and right ventricular masses, and ventricular mass ratio, as a function of eviscerated body mass across fetal and postnatal development in Horro sheep Ovis aries (~50-fold body mass range; N = 21). Whole hearts were extracted from carcasses, cleaned, dissected into chambers and weighed. We found a biphasic relationship when heart mass was scaled against body mass, with a conspicuous 'breakpoint' around the time of birth, manifest not by a change in the scaling exponent (slope), but rather a jump in the elevation. Fetal heart mass (g) increased with eviscerated body mass (M , kg) according to the power equation 4.90 M , whereas postnatal heart mass increased according to 10.0 M . While the fetal and postnatal scaling exponents are identical (0.88) and reveal a clear dependence of heart mass on body mass, only the postnatal exponent is significantly less than 1.0, indicating the postnatal heart becomes a smaller component of body mass as the body grows, which is a pattern found frequently with postnatal cardiac development among mammals. The rapid doubling in heart mass around the time of birth is independent of any increase in body mass and is consistent with the normalization of wall stress in response to abrupt changes in volume loading and pressure loading at parturition. We discuss variation in scaling patterns of heart mass across development among mammals, and suggest that the variation results from a complex interplay between hard-wired genetics and epigenetic influences.

摘要

心脏在发育过程中的缩放可以揭示心脏形态的变化在多大程度上取决于体重。在这项研究中,我们评估了心脏质量、左右心室质量以及心室质量比在 Horro 绵羊 Ovis aries 胎儿和产后发育过程中随去内脏体重的缩放比例(体重范围约为 50 倍;N = 21)。从尸体中提取整个心脏,清洗后,将其解剖成腔室并称重。我们发现,当心脏质量与体重成比例时,存在一个双相关系,在出生前后有一个明显的“转折点”,这不是通过缩放指数(斜率)的变化,而是通过升高的跳跃来表现。胎儿心脏质量(g)随去内脏体重(M,kg)的增加而增加,符合幂方程 4.90M,而产后心脏质量则根据 10.0M 增加。虽然胎儿和产后缩放指数相同(0.88),并且表明心脏质量明显依赖于体重,但只有产后指数显著小于 1.0,这表明随着身体的生长,产后心脏成为体重的较小组成部分,这是哺乳动物产后心脏发育中经常出现的模式。出生前后心脏质量的快速翻倍与体重的任何增加无关,与分娩时容积负荷和压力负荷突然变化导致壁应力正常化一致。我们讨论了哺乳动物在发育过程中心脏质量缩放模式的变化,并认为这种变化是由遗传和表观遗传影响之间的复杂相互作用引起的。

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