首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Development-related changes in the expression of shear stress responsive genes KLF-2, ET-1, and NOS-3 in the developing cardiovascular system of chicken embryos.
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Development-related changes in the expression of shear stress responsive genes KLF-2, ET-1, and NOS-3 in the developing cardiovascular system of chicken embryos.

机译:与发育相关的剪切应力响应基因KLF-2,ET-1和NOS-3在发育中的鸡胚心血管系统中的表达。

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摘要

Blood flow patterns play an important role in cardiovascular development, as changes can cause congenital heart malformations. Shear stress is positively correlated to blood flow. Therefore, it is likely that shear stress is also involved in cardiac development. In this study, we investigated the expression patterns of ET-1, NOS-3, and KLF-2 mRNA in a series of developmental stages of the chicken embryo. These genes are reported to be shear responsive. It has been demonstrated that KLF-2 is confined to areas of high shear stress in the adult human aorta. From in vitro studies, it is known that ET-1 is down-regulated by shear stress, whereas NOS-3 is up-regulated. Therefore, we expect ET-1 to be low or absent and NOS-3 to be high at sites where KLF-2 expression is high. Our study shows that, in the early stages, expression patterns are mostly not shear stress-related, whereas during development, this correlation becomes stronger. We demonstrate overlapping expression patterns of KLF-2 and NOS-3 in the narrow parts of the cardiovascular system, like the cardiac inflow tract, the atrioventricular canal, outflow tract, and in the early stages in the aortic sac and the pharyngeal arch arteries. In these regions, the expression patterns of KLF-2 and NOS-3 exclude that of ET-1. Our results suggest that, in the embryonic cardiovascular system, KLF-2 is expressed in regions of highest shear stress, and that ET-1 and NOS-3 expression, at least in the later stages, is related to shear stress.
机译:血流模式在心血管发展中起着重要作用,因为变化会导致先天性心脏畸形。剪应力与血流量呈正相关。因此,剪切应力也可能与心脏发育有关。在这项研究中,我们调查了在鸡胚的一系列发育阶段中ET-1,NOS-3和KLF-2 mRNA的表达模式。据报道这些基因是剪切响应的。已经证明,KLF-2被限制在成年人类主动脉中高剪切应力的区域。从体外研究得知,ET-1被剪切应力下调,而NOS-3被上调。因此,我们预计在KLF-2表达高的位点,ET-1较低或不存在,而NOS-3较高。我们的研究表明,在早期阶段,表达模式主要与剪切应力无关,而在发育过程中,这种相关性变得更强。我们证明了在心血管系统的狭窄部分,如心脏流入道,房室管,流出道以及主动脉囊和咽弓动脉的早期阶段,KLF-2和NOS-3的重叠表达模式。在这些区域中,KLF-2和NOS-3的表达方式不包括ET-1。我们的结果表明,在胚胎心血管系统中,KLF-2在剪切应力最高的区域表达,而ET-1和NOS-3的表达,至少在后期,与剪切应力有关。

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