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Extracellular matrix of the developing heart in normal and cardiac lethal mutant axolotls, Ambystoma mexicanum

M E Fransen1, L F Lemanski

  • 1Department of Anatomy and Cell Biology, College of Medicine, State University of New York, Syracuse 13210.

Insights

The extracellular matrix (ECM) in axolotl hearts, including cardiac jelly, develops striated fibrils and matrix proteins like laminin and fibronectin. Mutant hearts show reduced ECM density during development.

Area of Science:

  • Developmental Biology
  • Extracellular Matrix Research
  • Axolotl Cardiac Development

Background:

  • The extracellular matrix (ECM) plays a crucial role in tissue development and morphogenesis.
  • Understanding ECM composition and organization is vital for studying cardiac development and congenital heart defects.

Purpose of the Study:

  • To investigate the temporal and spatial distribution of the ECM during axolotl heart development.
  • To compare ECM in normal and cardiac lethal mutant axolotls to identify developmental abnormalities.

Main Methods:

  • Scanning electron microscopy (SEM) for ultrastructural analysis of ECM.
  • Indirect immunofluorescent microscopy to detect specific matrix proteins (laminin, fibronectin).

Main Results:

  • ECM is initially sparse, with basal lamina (BL) forming later on endoderm and developing heart tubes.
  • Striated collagen-like fibrils and potential elastin appear in the cardiac jelly and subepicardial space.
  • Mutant hearts exhibit significantly lower fibril density compared to normal hearts.
  • Laminin and fibronectin are localized to BLs and cardiac jelly, with distinct staining patterns.

Conclusions:

  • The axolotl heart ECM undergoes dynamic changes during development, characterized by the deposition of collagenous and elastic fibers.
  • Differences in ECM density in mutants suggest a role for ECM in cardiac morphogenesis and potential implications for heart defects.

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