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Cellular and Molecular Life Sciences: CMLS logoLink to Cellular and Molecular Life Sciences: CMLS
. 2007 Feb 13;64(6):674–682. doi: 10.1007/s00018-007-6520-5

Cardiovascular development: towards biomedical applicability

Biology of Isl1+ cardiac progenitor cells in development and disease

A Moretti 1, J Lam 1, S M Evans 2,, K -L Laugwitz 1,
PMCID: PMC11138427  PMID: 17380308

Abstract.

The LIM-homeodomain transcription factor Islet-1 (Isl1) marks a cell population which makes a substantial contribution to the embryonic heart. Isl1 expression is downregulated as soon as the cells adopt a differentiated phenotype, suggesting that this transcription factor delineates a cardiogenic progenitor cell population. Taking advantage of this developmental lineage marker, we have identified in the postnatal heart a novel cardiac cell type, which is capable of self-renewal and readily differentiates into mature cardiomyocytes. Utilization of embryonic stem (ES) cells that harbour knock-ins of reporter genes into the endogenous Isl1 locus will enable us to isolate Isl1 + cardiac progenitors from mouse and human ES cell systems during in vitro cardiogenesis. These genetic cell-based systems should allow the direct identification of signalling pathways which guide formation, renewal and diversification of Isl1 + cardiogenic progenitors into distinct heart cell lineages, and would complement in vitro studies in the mouse embryo during cardiac development.

Keywords. Cardiac development, embryonic stem cells, isl1+ cardiac progenitors, second heart field, heart lineages


Articles from Cellular and Molecular Life Sciences: CMLS are provided here courtesy of Springer

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