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Published on: July 18, 2014
FGF10 Signaling in Heart Development, Homeostasis, Disease and Repair
Fabien Hubert1, Sandy M Payan1, Francesca Rochais1
1Aix-Marseille Univ, INSERM, MMG, U1251, Marseille, France.
Insights
Fibroblast Growth Factor 10 (FGF10) is vital for heart development and repair. FGF10 promotes cardiomyocyte proliferation and directs stem cell differentiation, offering new therapeutic strategies for cardiac regeneration.
Area of Science:
- Cardiovascular Biology
- Developmental Biology
- Regenerative Medicine
Background:
- Cardiovascular diseases are a leading cause of mortality globally.
- Fibroblast Growth Factors (FGFs) regulate crucial cellular processes.
- FGF10 plays a key role in cardiac development, homeostasis, and disease.
Purpose of the Study:
- To explore the role of FGF10 in cardiac development and regeneration.
- To investigate FGF10's potential in therapeutic strategies for heart repair.
- To understand FGF10's influence on cardiomyocyte proliferation and stem cell differentiation.
Main Methods:
- Analysis of FGF10's function in cardiac progenitor cells.
- Investigating FGF10's downstream signaling pathways.
- Evaluating FGF10's effect on adult cardiomyocyte cell cycle reentry.
Main Results:
- FGF10 is a critical marker for early cardiac progenitor cells.
- FGF10 regulates differentiated cardiomyocyte proliferation during embryonic development.
- FGF10 promotes adult cardiomyocyte cell cycle reentry and directs stem cell differentiation towards cardiogenesis.
Conclusions:
- Understanding FGF10's role is essential for developing cardiac repair and regeneration therapies.
- FGF10 activation of cardiomyocyte proliferation and stem cell reprogramming offers promising therapeutic avenues.
- FGF10 is a key factor in advancing cardiac regenerative medicine.
Abstract:
Essential muscular organ that provides the whole body with oxygen and nutrients, the heart is the first organ to function during embryonic development. Cardiovascular diseases, including acquired and congenital heart defects, are the leading cause of mortality in industrialized countries. Fibroblast Growth Factors (FGFs) are involved in a variety of cellular responses including proliferation, differentiation, and migration. Among the 22 human/mouse FGFs, the secreted FGF10 ligand through the binding of its specific receptors (FGFR1b and FGFR2b) and subsequent activation of downstream signaling is known to play essential role in cardiac development, homeostasis and disease. FGF10 is one of the major marker of the early cardiac progenitor cells and a crucial regulator of differentiated cardiomyocyte proliferation in the developing embryo. Increasing evidence support the hypothesis that a detailed understanding of developmental processes is essential to identify targets for cardiac repair and regeneration. Indeed the activation of resident cardiomyocyte proliferation together with the injection of cardiac progenitors represent the most promising therapeutical strategies for cardiac regenerative medicine. The recent findings showing that FGF10 promotes adult cardiomyocyte cell cycle reentry and directs stem cell differentiation and cell reprogramming toward the cardiogenic lineage provide new insights into therapeutical strategies for cardiac regeneration and repair.
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