Eberhard D, Jockusch H. Patterns of myocardial histogenesis as revealed by mouse chimeras. Developmental Biology. 2005;278(2):336-346.In order to study the pattern of clonal myocyte distribution during mammalian heart development, we have exploited embryo aggregation chimeras using, as cellular markers, an enhanced jellyfish green fluorescent protein (eGFP) transgene and a desmin-promoter-driven, nuclear-localized beta-galactosidase (nlacZ) knock-in. In neonatal, weanling, and adult chimeric atria and ventricles, irregularly formed patches of various sizes rather than highly dispersed cardiomyocytes were observed. Most of the smaller patches and single cardiomyocytes were found in spatial neighborhood of large patches. This indicated largel...
Even though the mammalian heart has been investigated for many years, there are still uncertainties ...
International audienceWhen and how cells form and pattern the myocardium is a central issue for hear...
The cellular mechanisms driving cardiac tissue formation remain poorly understood, largely due to th...
AbstractIn order to study the pattern of clonal myocyte distribution during mammalian heart developm...
International audienceKey molecules which regulate the formation of the heart have been identified; ...
An analysis of the clonality of cardiac progenitor cells (CPCs) and myocyte turnover in vivo require...
In cardiac muscle, two major filaments, actin and myosin, are organized into a specific overlapping ...
International audienceDuring heart morphogenesis, cardiac chambers arise by differential expansion o...
International audienceDuring heart morphogenesis, cardiac chambers arise by differential expansion o...
International audienceThis chapter discusses the behavior of cells that form the myocardium, includi...
As vertebrate embryos develop to adulthood, their organs dramatically increase size and change tissu...
A clear understanding of myocardial development is es-sential not only for understanding the molecul...
International audienceEfficient contraction of the heart depends on the size and oriented architectu...
AbstractWhen and how cells form and pattern the myocardium is a central issue for heart morphogenesi...
Despite the extensive information available on the different genetic, epigenetic, and molecular feat...
Even though the mammalian heart has been investigated for many years, there are still uncertainties ...
International audienceWhen and how cells form and pattern the myocardium is a central issue for hear...
The cellular mechanisms driving cardiac tissue formation remain poorly understood, largely due to th...
AbstractIn order to study the pattern of clonal myocyte distribution during mammalian heart developm...
International audienceKey molecules which regulate the formation of the heart have been identified; ...
An analysis of the clonality of cardiac progenitor cells (CPCs) and myocyte turnover in vivo require...
In cardiac muscle, two major filaments, actin and myosin, are organized into a specific overlapping ...
International audienceDuring heart morphogenesis, cardiac chambers arise by differential expansion o...
International audienceDuring heart morphogenesis, cardiac chambers arise by differential expansion o...
International audienceThis chapter discusses the behavior of cells that form the myocardium, includi...
As vertebrate embryos develop to adulthood, their organs dramatically increase size and change tissu...
A clear understanding of myocardial development is es-sential not only for understanding the molecul...
International audienceEfficient contraction of the heart depends on the size and oriented architectu...
AbstractWhen and how cells form and pattern the myocardium is a central issue for heart morphogenesi...
Despite the extensive information available on the different genetic, epigenetic, and molecular feat...
Even though the mammalian heart has been investigated for many years, there are still uncertainties ...
International audienceWhen and how cells form and pattern the myocardium is a central issue for hear...
The cellular mechanisms driving cardiac tissue formation remain poorly understood, largely due to th...