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Three-dimensional model system of valvulogenesis.

机译:血管生成的三维模型系统。

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摘要

Valvular defects are among the most common and deleterious of all cardiac malformations. The early cardiac cushions are located in the atrioventricular (AV) canal of the embryonic heart. These cushions contain cells that are the primordia of the cardiac valves and membranous septa. Significant progress has been made in delineating the molecular mechanisms that regulate the early steps of cushion formation; however, little is known about how these cushions differentiate into valve leaflets. Here, a new three-dimensional collagen tube culturing system was tested for its ability to sustain the development and maturation of the AV cushion anlagen. We report that AV cushion tissues grown within the collagen tube scaffold recapitulate aspects of AV valve development both at the molecular and morphological levels. Furthermore, our results indicate that valve leaflet formation in the tube model is dependent on the presence of cardiac myocytes.
机译:瓣膜缺损是所有心脏畸形中最常见和最有害的。早期的心脏垫位于胚胎心脏的房室(AV)通道中。这些垫子包含的细胞是心脏瓣膜和膜隔的原基。在描述调节垫层形成早期步骤的分子机制方面已经取得了重大进展。然而,关于这些气垫如何分化成瓣叶的了解甚少。在这里,测试了一种新型的三维胶原蛋白管培养系统,该系统能够维持AV垫胶原蛋白的发育和成熟。我们报告说,在胶原管支架内生长的AV缓冲组织在分子和形态学水平上概括了AV瓣膜发展的各个方面。此外,我们的结果表明管模型中瓣膜小叶的形成取决于心肌细胞的存在。

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