Related Experiment Videos

Microinjection of glycosaminoglycan-degrading enzymes in the chicken blastoderm. An ultrastructural study

Insights

Glycosaminoglycans, specifically hyaluronate, are crucial for cell migration during embryonic development. Removing hyaluronate causes middle-layer cells to compact, losing their mesenchymal characteristics.

Area of Science:

  • Developmental Biology
  • Cell Biology
  • Biochemistry

Background:

  • Glycosaminoglycans (GAGs) play vital roles in cellular processes.
  • The mesoblast's morphology during gastrulation is not fully understood.
  • Hyaluronate's role in cell-cell interactions requires further investigation.

Purpose of the Study:

  • To investigate the relationship between GAGs and mesoblast morphology.
  • To determine hyaluronate's function in cell detachment and migration during gastrulation.

Main Methods:

  • Transmission electron microscopy of chicken blastoderms.
  • Microinjection of GAG-degrading enzymes (hyaluronidases) and controls (saline, trypsin).
  • Analysis of cell shape, intercellular junctions, and cell processes.

Main Results:

  • Middle-layer cells are rounded with small junctions in the primitive streak.
  • Laterally migrating cells exhibit mesenchymal characteristics with large intercellular spaces.
  • Hyaluronidase treatment caused cell compaction and loss of mesenchymal features.
  • Proteolytic activity in enzyme preparations did not affect results.

Conclusions:

  • Hyaluronate's space-creating properties facilitate primitive-streak cell detachment.
  • Hyaluronate preserves the mesenchymal state of migrating middle-layer cells.
  • Hyaluronate modulates tissue interactions during gastrulation.

Related Concept Videos