Cardiogenesis is one of the earliest and most important steps during human development and is orchestrated by discrete families of heart progenitors, which build distinct regions of the fetal heart. For the past decade, a lineage map for the distinct subsets of progenitors that generate the embryonic mammalian heart has begun to lay a foundation for the development of new strategies for rebuilding the adult heart after injury, an unmet clinical need for the vast majority of patients with end-stage heart failure who are not heart transplant recipients. The studies also have implications for the root causes of congenital heart disease, which affects 1 in 50 live births, the most prevalent malformations in children. Although much of this insight has been generated in murine models, it is becoming increasingly clear that there can be important divergence with principles and pathways for human cardiogenesis, as well as for regenerative pathways. The development of human stem cell models, coupled with recent advances in genome editing with RNA-guided endonucleases, offers a new approach for the primary study of human cardiogenesis. In addition, application of the technology to the in vivo setting in large animal models, including nonhuman primates, has opened the door to genome-edited large animal models of adult and congenital heart disease, as well as a detailed mechanistic dissection of the more diverse and complex set of progenitor families and pathways, which guide human cardiogenesis. Implications of this new technology for a new generation of human-based, genetically tractable systems are discussed, along with potential therapeutic applications.
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FEM, Genom & Biol Fruit Crop Dept, Res & Innovat Ctr, Via Mach 1, I-38010 San Michele All Adige, TN, ItalyFEM, Genom & Biol Fruit Crop Dept, Res & Innovat Ctr, Via Mach 1, I-38010 San Michele All Adige, TN, Italy
Kanchiswamy, Chidananda Nagamangala
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Maffei, Massimo
Malnoy, Mickael
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FEM, Genom & Biol Fruit Crop Dept, Res & Innovat Ctr, Via Mach 1, I-38010 San Michele All Adige, TN, ItalyFEM, Genom & Biol Fruit Crop Dept, Res & Innovat Ctr, Via Mach 1, I-38010 San Michele All Adige, TN, Italy
Malnoy, Mickael
Velasco, Riccardo
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FEM, Genom & Biol Fruit Crop Dept, Res & Innovat Ctr, Via Mach 1, I-38010 San Michele All Adige, TN, ItalyFEM, Genom & Biol Fruit Crop Dept, Res & Innovat Ctr, Via Mach 1, I-38010 San Michele All Adige, TN, Italy
Velasco, Riccardo
Kim, Jin-Soo
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Inst for Basic Sci Korea, Ctr Genome Engn, Gwanak Ro 1, Seoul 151747, South Korea
Seoul Natl Univ, Dept Chem, Gwanak Ro 1, Seoul 151747, South KoreaFEM, Genom & Biol Fruit Crop Dept, Res & Innovat Ctr, Via Mach 1, I-38010 San Michele All Adige, TN, Italy
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Univ Illinois, Dept Bioengn, Urbana, IL 61801 USA
Univ Illinois, Dept Mol & Integrat Physiol, Urbana, IL 61801 USA
Univ Illinois, Carl R Woese Inst Genom Biol, Urbana, IL 61801 USA
Univ Illinois, Carle Illinois Coll Med, Dept Biomed & Translat Sci, Urbana, IL 61801 USA
Univ Illinois, Canc Ctr Illinois, Urbana, IL 61801 USAUniv Illinois, Dept Bioengn, Urbana, IL 61801 USA
Perez-Pinera, Pablo
Gaj, Thomas
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Univ Illinois, Dept Bioengn, Urbana, IL 61801 USA
Univ Illinois, Carl R Woese Inst Genom Biol, Urbana, IL 61801 USA
Univ Illinois Champaign Urbana, Carl R Woese Inst Genom Biol, Urbana, IL 61801 USAUniv Illinois, Dept Bioengn, Urbana, IL 61801 USA