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Development of the coronary arteries in the embryonic human heart

G M Hutchins1, A Kessler-Hanna, G W Moore

  • 1Department of Pathology, Johns Hopkins Medical Institutions, Baltimore, MD 21205.

Circulation
|June 1, 1988
PubMed

Insights

The origin of coronary arteries from specific aortic sinuses is explained by their unique shape. Embryonic development shows these sinuses develop a saddle-like curvature, influencing coronary artery formation.

Area of Science:

  • Embryology
  • Cardiovascular Development
  • Developmental Biology

Background:

  • The consistent origin of coronary arteries from the right and left aortic sinuses of Valsalva remains unexplained.
  • All six aortic sinuses of Valsalva share similar structures and embryonic conditions.

Purpose of the Study:

  • To investigate a potential mechanical explanation for the specific origin of coronary arteries.
  • To analyze the developmental process of coronary vasculature in human embryos.

Main Methods:

  • Study of 351 serially sectioned human embryos (Carnegie stages 9-23).
  • Serial section reconstructions to analyze the morphology of aortic sinuses.
  • Histological examination of embryonic cardiac tissues.

Main Results:

  • Epicardial capillaries form a plexus by Carnegie stage 14-15, connecting to the coronary sinus by stage 15-17.
  • Proximal coronary artery connections to the aorta appear at stage 18.
  • The two sinuses giving rise to coronary arteries develop a catenoidal (saddle) shape before coronary artery formation, unlike the other four sinuses.

Conclusions:

  • The unique catenoidal curvature of specific aortic sinuses of Valsalva is proposed as the mechanical factor driving coronary artery origin.
  • This geometric configuration may increase wall tension, influencing the development and attachment of coronary arteries.

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