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Published on: October 27, 2010
Formation of the primitive myo- and endocardial tubes in the chicken embryo
S Virágh1, E Szabó, C E Challice
1Department of Pathology, Postgraduate Medical School, Budapest, Hungary.
Insights
Early chick embryo heart development involves forming heart tubes from mesenchymal cells. Proendocardial cells migrate and form endocardial tubes, crucial for cardiac morphogenesis and function.
Area of Science:
- Developmental Biology
- Embryology
- Cardiovascular Science
Background:
- The early stages of heart formation are critical for embryonic development.
- Understanding the precise sequence of events in cardiac morphogenesis is essential.
Purpose of the Study:
- To investigate the morphogenesis of the heart tube and endocardial tube in early chick embryos.
- To correlate morphological development with electrophysiological studies of cardiac action potentials.
Main Methods:
- Morphological analysis of chick embryos (1-13 somite stages).
- Comparison with existing electrophysiological data on cardiac action potentials.
Main Results:
- Heart chamber primordia are identifiable before myosin filaments and Z bands appear, coinciding with the first action potentials.
- Fusion of heart primordia and pacemaker site migration occur concurrently with mesenchymal-to-cardiomyocyte transformation.
- Proendocardial cells migrate from the cardiogenic plate, forming endocardial tubes that fuse into a single structure.
Conclusions:
- The ventral mesocardium and its foregut attachment play a key role in guiding proendocardial cell and capillary migration.
- This process is vital for establishing the primitive heart and endocardial tubes from lateral splanchnic mesoderm.
Abstract:
The morphogenesis of the mesenchymal cardiogenic plate, the formation of the bilateral heart primordia leading to the primitive heart tube, and also the genesis of the endocardial tube, have been studied in 1 to 13 somite chick embryos. The morphological data were compared with those obtained in electrophysiological studies of the development of the cardiac action potentials (Fujii et al., 1981a). The primordia of the consecutive heart chambers are definable before the appearance of myosin-type filaments and primitive Z bands, which occurs simultaneously with the first spontaneous action potentials in the 7 somite embryo. At the 8 to 9 somite stage, fusion of the lateral heart primordia proceeds to include the outflow tract and atrial primordia; the pacemaker site migrates into the atrial wall and subsequently into the sinus venosus, this process occurring simultaneously with the progressive transformation of mesenchymal cells into cardiomyocytes. Proendocardial cells are first detected detaching individually or in small groups from the cardiogenic plate to become attached by fine filamentous material to the basal surface of the foregut endoderm, on which they "stream", establishing an anastomosing V-shaped array with respect to the ventral mesoderm. This array coalesces first at the atrioventricular groove to form double endocardial tubes, which in turn fuse into a single tube with the establishment of the single myocardial tube. Evidence suggests a key role for the ventral mesocardium and its transient attachment zone with the foregut, in providing a line focus for migration of proendocardial cells and primitive capillaries from the lateral splanchnic mesoderm, from which they derive.
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