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Neural crest cells are required for correct positioning of the developing outflow cushions and pattern the arterial valve leaflets.

机译:需要神经嵴细胞来正确定位显影流出垫和图案动脉瓣叶。

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摘要

Anomalies of the arterial valves, principally bicuspid aortic valve (BAV), are the most common congenital anomalies. The cellular mechanisms that underlie arterial valve development are poorly understood. While it is known that the valve leaflets derive from the outflow cushions, which are populated by cells derived from the endothelium and neural crest cells (NCCs), the mechanism by which these cushions are sculpted to form the leaflets of the arterial valves remains unresolved. We set out to investigate how NCCs participate in arterial valve formation, reasoning that disrupting NCC within the developing outflow cushions would result in arterial valve anomalies, in the process elucidating the normal mechanism of arterial valve leaflet formation.By disrupting Rho kinase signalling specifically in NCC using transgenic mice and primary cultures, we show that NCC condensation within the cardiac jelly is required for correct positioning of the outflow cushions. Moreover, we show that this process is essential for normal patterning of the arterial valve leaflets with disruption leading to a spectrum of valve leaflet patterning anomalies, abnormal positioning of the orifices of the coronary arteries, and abnormalities of the arterial wall.NCCs are required at earlier stages of arterial valve development than previously recognized, playing essential roles in positioning the cushions, and patterning the valve leaflets. Abnormalities in the process of NCC condensation at early stages of outflow cushion formation may provide a common mechanism underlying BAV, and also explain the link with arterial wall anomalies and outflow malalignment defects.
机译:动脉瓣膜的异常,主要是双裂主动脉瓣(BAV),是最常见的先天性异常。细胞机制底有动脉瓣膜发育理解得很差。虽然已知阀叶从流出垫中衍生,其被衍生自内皮和神经顶部细胞(NCCs)的细胞填充,所以这些垫子被雕刻的机构雕刻以形成动脉阀的小叶仍未得到解决。我们首先调查NCCS如何参与动脉瓣膜地层,推理在发育流出垫中破坏NCC会导致动脉瓣膜异常,在阐明动脉瓣片形成的正常机制中。在NCC中扰乱RHO激酶信号传导使用转基因小鼠和原代培养物,我们表明需要在外流垫的正确定位时心脏果冻内的NCC凝结。此外,我们表明,该过程对于动脉瓣传单的正常图案是必不可少的,所述动脉瓣传单具有导致阀门叶片图案化异常的频谱,冠状动脉孔的异常定位,以及动脉壁的异常是必需的动脉瓣膜开发的早期阶段比以前认识到,在定位垫子的基本作用,并涂抹阀门传单。在流出垫地层的早期阶段的NCC凝结过程中的异常可以提供基础BAV的常见机制,并且还解释了与动脉壁异常和流出恶性缺陷的联系。

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