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Anatomical Reconstructions of the Human Cardiac Venous System using Contrast-computed Tomography of Perfusion-fixed Specimens
Published on: April 18, 2013
Three-dimensional and molecular analysis of the venous pole of the developing human heart
Aleksander Sizarov1, Robert H Anderson, Vincent M Christoffels
1Heart Failure Research Center, Academic Medical Center, Amsterdam, the Netherlands.
Insights
Human heart development reveals distinct origins for systemic and pulmonary venous myocardium. Gene expression similarities between humans and mice allow for applying mouse study findings to human embryonic development.
Area of Science:
- Cardiovascular Development
- Human Embryology
- Molecular Cardiology
Background:
- Congenital heart malformations and arrhythmias often arise from the venous pole of the heart.
- Human venous pole development is complex due to rapid morphogenesis and limited molecular data.
- Understanding this region is crucial for addressing cardiac birth defects.
Purpose of the Study:
- To investigate the developmental origins of human heart venous pole myocardium.
- To compare human venous pole development with that of the mouse.
- To identify distinct myocardial lineages in the developing human heart.
Main Methods:
- Immunohistochemical analysis of human embryos (22–40 days gestation).
- Three-dimensional reconstruction and analysis of serial embryonic heart sections.
- Comparative analysis of gene expression patterns (TBX18, NKX2-5) with mouse models.
Main Results:
- Systemic venous myocardium expresses TBX18; pulmonary venous myocardium expresses NKX2-5, similar to mice.
- A systemic venous sinus forms upstream of the atria, initially lacking myocardial walls.
- Pulmonary veins connect to atrial-like chambers, and the vestibular spine is prominent.
- Interactive 3D models facilitated spatial interpretation of complex morphogenetic changes.
Conclusions:
- Distinct developmental lineages give rise to systemic and pulmonary venous myocardial sleeves in humans.
- Similarities in gene expression support extrapolating mouse lineage and transgenic study findings to human development.
- This research clarifies the origins of myocardial structures in the human heart's venous pole.
Background:
Various congenital malformations and many abnormal rhythms originate from the venous pole of the heart. Because of rapid changes during morphogenesis, lack of molecular and lineage data, and difficulties in presenting complex morphogenetic changes in the developing heart in a clear fashion, the development of this region in human has been difficult to grasp.
Methods And Results:
To gain insight into the development of the different types of myocardium forming the venous pole of the human heart, we performed an immunohistochemical and 3-dimensional analysis of serial sections of human embryos ranging from 22 through 40 days of development. Three-dimensional models were prepared in a novel interactive portable format providing crucial spatial information and facilitating interpretation. As in the mouse, the systemic venous myocardium expresses the transcription factor TBX18, whereas the pulmonary venous myocardium expresses NKX2-5. In contrast to the mouse, a systemic venous sinus is identified upstream from the atrial chambers, albeit initially with nonmyocardial walls. From the outset, as in the mouse, the pulmonary vein empties to a chamber with atrial, rather than systemic venous, characteristics. Compared with the mouse, the vestibular spine is a more prominent structure.
Conclusions:
The similarities in gene expression in the distinctive types of myocardium surrounding the systemic and pulmonary venous tributaries in man and mouse permit extrapolation of the conclusions drawn from transgenic and lineage studies in the mouse to the human, showing that the systemic and pulmonary venous myocardial sleeves are derived from distinct developmental lineages.
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