Department of Medical Biology, AmsterdamUMC location AMC, Amsterdam, The Netherlands.
Am J Med Genet C Semin Med Genet. 2020 Mar;184(1):7-22. doi: 10.1002/ajmg.c.31778. Epub 2020 Feb 12.
In 2014, an extensive review discussing the major steps of cardiac development focusing on growth, formation of primary and chamber myocardium and the development of the cardiac electrical system, was published. Molecular genetic lineage analyses have since furthered our insight in the developmental origin of the various component parts of the heart, which currently can be unambiguously identified by their unique molecular phenotype. Moreover, genetic, molecular and cell biological analyses have driven insights into the mechanisms underlying the development of the different cardiac components. Here, we build on our previous review and provide an insight into the molecular mechanistic revelations that have forwarded the field of cardiac development. Despite the enormous advances in our knowledge over the last decade, the development of congenital cardiac malformations remains poorly understood. The challenge for the next decade will be to evaluate the different developmental processes using newly developed molecular genetic techniques to further unveil the gene regulatory networks operational during normal and abnormal cardiac development.
2014 年,一篇广泛探讨心脏发育主要步骤的综述发表了,该综述重点关注了生长、原始和室内心肌的形成以及心脏电系统的发育。分子遗传谱系分析进一步深入了解了心脏各个组成部分的发育起源,目前可以通过其独特的分子表型来明确识别。此外,遗传、分子和细胞生物学分析推动了对不同心脏成分发育机制的深入了解。在这里,我们在前一篇综述的基础上,深入了解了推动心脏发育领域发展的分子机制揭示。尽管在过去十年中我们的知识取得了巨大进步,但先天性心脏畸形的发展仍知之甚少。未来十年的挑战将是使用新开发的分子遗传技术评估不同的发育过程,以进一步揭示正常和异常心脏发育过程中的基因调控网络。