Utrecht Regenerative Medicine Center, Circulatory Health Laboratory, University Utrecht, Experimental Cardiology Laboratory, Department of Cardiology, University Medical Center Utrecht, 3508 GA Utrecht, the Netherlands.
Amsterdam Cardiovascular Sciences, Department of Physiology, Vrije Universiteit Amsterdam, Amsterdam University Medical Centers, De Boelelaan 1108, 1081 HZ Amsterdam, the Netherlands.
Development. 2023 Aug 1;150(15). doi: 10.1242/dev.201483. Epub 2023 Aug 10.
Developmental research has attempted to untangle the exact signals that control heart growth and size, with knockout studies in mice identifying pivotal roles for Wnt and Hippo signaling during embryonic and fetal heart growth. Despite this improved understanding, no clinically relevant therapies are yet available to compensate for the loss of functional adult myocardium and the absence of mature cardiomyocyte renewal that underlies cardiomyopathies of multiple origins. It remains of great interest to understand which mechanisms are responsible for the decline in proliferation in adult hearts and to elucidate new strategies for the stimulation of cardiac regeneration. Multiple signaling pathways have been identified that regulate the proliferation of cardiomyocytes in the embryonic heart and appear to be upregulated in postnatal injured hearts. In this Review, we highlight the interaction of signaling pathways in heart development and discuss how this knowledge has been translated into current technologies for cardiomyocyte production.
发育研究试图理清控制心脏生长和大小的确切信号,通过对小鼠的基因敲除研究,确定了 Wnt 和 Hippo 信号在胚胎和胎儿心脏生长过程中的关键作用。尽管有了这种改进的认识,但仍然没有临床相关的治疗方法来弥补功能性成年心肌的丧失和潜在的心肌病的成熟心肌细胞更新的缺失。了解哪些机制负责成年心脏增殖能力的下降,并阐明刺激心脏再生的新策略仍然非常重要。已经确定了多种信号通路,它们调节胚胎心脏中心肌细胞的增殖,并且在出生后受损的心脏中似乎被上调。在这篇综述中,我们强调了信号通路在心脏发育中的相互作用,并讨论了如何将这些知识转化为目前用于心肌细胞生产的技术。