Continuous live imaging reveals a subtle pathological alteration with cell behaviors in congenital heart malformation

连续活体成像揭示了先天性心脏畸形中细胞行为的细微病理改变

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作者:Xin Li ,Yanzhu Yue ,Youdong Zhang ,Yuanhui Liao ,Qianhao Wang ,Yunkun Bian ,Jie Na ,Aibin He

Abstract

To form fully functional four-chambered structure, mammalian heart development undergoes a transient finger-shaped trabeculae, crucial for efficient contraction and exchange for gas and nutrient. Although its developmental origin and direct relevance to congenital heart disease has been studied extensively, the time-resolved cellular mechanism underlying hypotrabeculation remains elusive. Here, we employed in toto live imaging and reconstructed the holistic cell lineages and cellular behavior landscape of control and hypotrabeculed hearts of mouse embryos from E9.5 for up to 24 h. Compared to control, hypotrabeculation in ErbB2 mutants arose mainly through dual mechanisms: both reduced proliferation of trabecular cardiomyocytes from early cell fate segregation and markedly impaired oriented cell division and migration. Further examination of mosaic mutant hearts confirmed alterations in cellular behaviors in a cell autonomous manner. Thus, our work offers a framework for continuous live imaging and digital cell lineage analysis to better understand subtle pathological alterations in congenital heart disease. Keywords: Cell behaviors; Congenital heart disease; Heart development; Live imaging; Trabeculation.

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