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1.
Stem Cells Dev ; 25(3): 277-84, 2016 Feb 01.
Artículo en Inglés | MEDLINE | ID: mdl-26573225

RESUMEN

ATP-binding cassette transporter subfamily G member 2 (Abcg2)-expressing cardiac-side population cells have been identified in the developing and adult heart, although the role they play in mammalian heart growth and regeneration remains unclear. In this study, we use genetic lineage tracing to follow the cell fate of Abcg2-expressing cells in the embryonic and adult heart. During cardiac embryogenesis, the Abcg2 lineage gives rise to multiple cardiovascular cell types, including cardiomyocytes, endothelial cells, and vascular smooth muscle cells. This capacity for Abcg2-expressing cells to contribute to cardiomyocytes decreases rapidly during the postnatal period. We further tested the role of the Abcg2 lineage following myocardial injury. One month following ischemia reperfusion injury, Abcg2-expressing cells contributed significantly to the endothelial cell lineage, however, there was no contribution to regenerated cardiomyocytes. Furthermore, consistent with previous results showing that Abcg2 plays an important cytoprotective role during oxidative stress, we show an increase in Abcg2 labeling of the vasculature, a decrease in the scar area, and a moderate improvement in cardiac function following myocardial injury. We have uncovered a difference in the capacity of Abcg2-expressing cells to generate the cardiovascular lineages during embryogenesis, postnatal growth, and cardiac regeneration.


Asunto(s)
Transportadoras de Casetes de Unión a ATP/metabolismo , Linaje de la Célula , Corazón Fetal/citología , Daño por Reperfusión Miocárdica/metabolismo , Miocitos Cardíacos/citología , Transportador de Casetes de Unión a ATP, Subfamilia G, Miembro 2 , Transportadoras de Casetes de Unión a ATP/genética , Animales , Corazón Fetal/metabolismo , Ratones , Ratones Endogámicos C57BL , Daño por Reperfusión Miocárdica/patología , Miocitos Cardíacos/metabolismo , Estrés Oxidativo
2.
Am J Physiol Heart Circ Physiol ; 306(12): H1610-8, 2014 Jun 15.
Artículo en Inglés | MEDLINE | ID: mdl-24727496

RESUMEN

Due to their specialized location, stem and progenitor cells are often exposed to oxidative stress. Although ATP-binding cassette transporter subfamily G member 2 (Abcg2)-expressing cells have been implicated in cardiac protective mechanisms involving oxidative stress, there remains a lack of understanding regarding the behavior of cardiac Abcg2-expressing cells when exposed to ROS. The aim of the present study was to characterize the response of the cardiac Abcg2 lineage to oxidative stress. In vitro analysis demonstrated that the antioxidant program regulated by Abcg2 is dependent on a functional transporter. Delivery of paraquat dichloride (PQ), a systemic oxidative stress-inducing agent, to mice confirmed that Abcg2 provides a survival benefit. When exposed to PQ, reporter mice showed an increase in the Abcg2 lineage. Transcriptional and immunohistochemical analysis of Abcg2 lineage-positive cells revealed an enhanced vascular commitment after stress. Finally, preconditioning with PQ demonstrated a reduction in scar size and an increase in angiogenesis after permanent left coronary artery ligation. In conclusion, the data suggest that Abcg2 plays a cytoprotective role in response to in vivo oxidative stress. The contribution of the Abcg2 lineage to the vasculature in the heart is increased after PQ delivery.


Asunto(s)
Transportadoras de Casetes de Unión a ATP/fisiología , Circulación Coronaria/fisiología , Vasos Coronarios/fisiología , Neovascularización Fisiológica/fisiología , Estrés Oxidativo/fisiología , Transportador de Casetes de Unión a ATP, Subfamilia G, Miembro 2 , Transportadoras de Casetes de Unión a ATP/deficiencia , Transportadoras de Casetes de Unión a ATP/genética , Animales , Linaje de la Célula , Técnicas In Vitro , Ratones , Ratones Endogámicos C57BL , Ratones Noqueados , Modelos Animales , Miocardio/citología , Neovascularización Fisiológica/efectos de los fármacos , Paraquat/farmacología , Especies Reactivas de Oxígeno/farmacología
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