Key result
Exposure of mouse embryos to short-term gestational hypoxia induced heart defects via rapid induction of the unfolded protein response and reduced FGF signaling in cardiac progenitor cells.
Why the study?
Does short-term gestational hypoxia induce heart defects in mouse embryos?
Does short-term gestational hypoxia induce heart defects in mouse embryos?
Gestational hypoxia induces congenital heart defects in mice via the unfolded protein response, providing a plausible non-genetic mechanism for environmental stress-induced congenital heart disease.
Offers non-genetic mechanism for congenital heart disease; hypothesis-generating and requires human validation before clinical relevance.
Congenital heart disease (CHD) is an enigma. It is the most common human birth defect and yet, even with the application of modern genetic and genomic technologies, only a minority of cases can be explained genetically. This is because environmental stressors also cause CHD. Here we propose a plausible non-genetic mechanism for induction of CHD by environmental stressors. We show that exposure of mouse embryos to short-term gestational hypoxia induces the most common types of heart defect. This is mediated by the rapid induction of the unfolded protein response (UPR), which profoundly reduces FGF signaling in cardiac progenitor cells of the second heart field. Thus, UPR activation during human pregnancy might be a common cause of CHD. Our findings have far-reaching consequences because the UPR is activated by a myriad of environmental or pathophysiological conditions. Ultimately, our discovery could lead to preventative strategies to reduce the incidence of human CHD.
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Shi et al. (2016) studied Congenital heart disease. Short-term gestational hypoxia was evaluated on Heart defects. Exposure of mouse embryos to short-term gestational hypoxia induced heart defects via rapid induction of the unfolded protein response and reduced FGF signaling in cardiac progenitor cells.
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