Watanabe Michiko, Rollins Andrew M, Polo-Parada Luis, Ma Pei, Gu Shi, Jenkins Michael W
Department of Pediatrics, School of Medicine, Case Western Reserve University, Cleveland, OH 44106, USA.
Rainbow Babies and Children's Hospital, Case Western Reserve University, Cleveland, OH 44106, USA.
J Cardiovasc Dev Dis. 2016 Mar 22;3(1):10. doi: 10.3390/jcdd3010010.
Many diseases that result in dysfunction and dysmorphology of the heart originate in the embryo. However, the embryonic heart presents a challenging subject for study: especially challenging is its electrophysiology. Electrophysiological maturation of the embryonic heart without disturbing its physiological function requires the creation and deployment of novel technologies along with the use of classical techniques on a range of animal models. Each tool has its strengths and limitations and has contributed to making key discoveries to expand our understanding of cardiac development. Further progress in understanding the mechanisms that regulate the normal and abnormal development of the electrophysiology of the heart requires integration of this functional information with the more extensively elucidated structural and molecular changes.
许多导致心脏功能障碍和形态异常的疾病都起源于胚胎期。然而,胚胎心脏是一个具有挑战性的研究对象:其电生理学尤其具有挑战性。在不干扰胚胎心脏生理功能的情况下实现其电生理成熟,需要开发和应用新技术,并在一系列动物模型上运用经典技术。每种工具都有其优缺点,并且都为做出关键发现以扩展我们对心脏发育的理解做出了贡献。要进一步了解调节心脏电生理正常和异常发育的机制,需要将这些功能信息与已得到更广泛阐释的结构和分子变化相结合。