JORGE NICOLÁS
DOMÍNGUEZ MACÍAS
TITULAR DE UNIVERSIDAD
Publications (30) JORGE NICOLÁS DOMÍNGUEZ MACÍAS publications
2023
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Cre recombinase microinjection for single-cell tracing and localised gene targeting
Development (Cambridge, England), Vol. 150, Núm. 3
2022
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Dissecting the complexity of early heart progenitor cells
Journal of Cardiovascular Development and Disease, Vol. 9, Núm. 1
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Identification of atrial-enriched lncRNA Walras linked to cardiomyocyte cytoarchitecture and atrial fibrillation
FASEB Journal, Vol. 36, Núm. 1
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Live Imaging of Early Cardiac Progenitors in the Mouse Embryo
Journal of Visualized Experiments, Vol. 2022, Núm. 185
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Pitx2 Differentially Regulates the Distinct Phases of Myogenic Program and Delineates Satellite Cell Lineages During Muscle Development
Frontiers in Cell and Developmental Biology, Vol. 10
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Regulation of Epicardial Cell Fate during Cardiac Development and Disease: An Overview
International Journal of Molecular Sciences, Vol. 23, Núm. 6
2021
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Differential spatio-temporal regulation of t-box gene expression by micrornas during cardiac development
Journal of Cardiovascular Development and Disease, Vol. 8, Núm. 5
2020
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MiR-195 enhances cardiomyogenic differentiation of the proepicardium/septum transversum by Smurf1 and Foxp1 modulation
Scientific Reports, Vol. 10, Núm. 1
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Non-coding RNAs and Atrial Fibrillation
Advances in Experimental Medicine and Biology (Springer), pp. 311-325
2019
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Contribución del factor de transcripción Pitx2 durante el desarrollo y la regeneración del músculo estriado
Biología molecular y celular (Servicio de Publicaciones), pp. 11-33
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Differential chamber-specific expression and regulation of long non-coding RNAs during cardiac development
Biochimica et Biophysica Acta - Gene Regulatory Mechanisms, Vol. 1862, Núm. 10
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Novel regulatory pathways modulating cardiac contractile function: fibroblast to myocardial crosstalk via extracellular vesicles and non-coding RNAs
Non-Coding RNA Investigation
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Papel funcional de ARN no codificantes en el desarrollo y la patología cardiovascular
Biología molecular y celular (Servicio de Publicaciones), pp. 93-121
2018
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Embryonic Tbx3+ cardiomyocytes form the mature cardiac conduction system by progressive fate restriction
Development (Cambridge), Vol. 145, Núm. 17
2017
2014
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Arid3b is essential for second heart field cell deployment and heart patterning
Development (Cambridge), Vol. 141, Núm. 21, pp. 4168-4181
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Tbx1 coordinates addition of posterior second heart field progenitor cells to the arterial and venous poles of the heart
Circulation Research, Vol. 115, Núm. 9, pp. 790-799
2013
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Functional suppression of Kcnq1 leads to early sodium channel remodelling and cardiac conduction system dysmorphogenesis
Cardiovascular Research, Vol. 98, Núm. 3, pp. 504-514
2012
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Asymmetric fate of the posterior part of the second heart field results in unexpected left/right contributions to both poles of the heart.
Circulation research, Vol. 111, Núm. 10, pp. 1323-1335
2011
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Modulation of conductive elements by Pitx2 and their impact on atrial arrhythmogenesis
Cardiovascular Research, Vol. 91, Núm. 2, pp. 223-231