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Sympathetic Neurons Regulate Cardiomyocyte Maturation in Culture.


ABSTRACT: Embryos devoid of autonomic innervation suffer sudden cardiac death. However, whether autonomic neurons have a role in heart development is poorly understood. To investigate if sympathetic neurons impact cardiomyocyte maturation, we co-cultured phenotypically immature cardiomyocytes derived from human induced pluripotent stem cells with mouse sympathetic ganglion neurons. We found that 1) multiple cardiac structure and ion channel genes related to cardiomyocyte maturation were up-regulated when co-cultured with sympathetic neurons; 2) sarcomere organization and connexin-43 gap junctions increased; 3) calcium imaging showed greater transient amplitudes. However, sarcomere spacing, relaxation time, and level of sarcoplasmic reticulum calcium did not show matured phenotypes. We further found that addition of endothelial and epicardial support cells did not enhance maturation to a greater extent beyond sympathetic neurons, while administration of isoproterenol alone was insufficient to induce changes in gene expression. These results demonstrate that sympathetic neurons have a significant and complex role in regulating cardiomyocyte development.

SUBMITTER: Kowalski WJ 

PROVIDER: S-EPMC8961983 | biostudies-literature | 2022

REPOSITORIES: biostudies-literature

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Sympathetic Neurons Regulate Cardiomyocyte Maturation in Culture.

Kowalski William J WJ   Garcia-Pak Iris H IH   Li Wenling W   Uosaki Hideki H   Tampakakis Emmanouil E   Zou Jizhong J   Lin Yongshun Y   Patterson Kira K   Kwon Chulan C   Mukouyama Yoh-Suke YS  

Frontiers in cell and developmental biology 20220311


Embryos devoid of autonomic innervation suffer sudden cardiac death. However, whether autonomic neurons have a role in heart development is poorly understood. To investigate if sympathetic neurons impact cardiomyocyte maturation, we co-cultured phenotypically immature cardiomyocytes derived from human induced pluripotent stem cells with mouse sympathetic ganglion neurons. We found that 1) multiple cardiac structure and ion channel genes related to cardiomyocyte maturation were up-regulated when  ...[more]

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