Cell-mediated contraction of collagen lattices in serum-free medium: effect of serum and nonserum factors

In Vitro Cell Dev Biol. 1990 Jan;26(1):61-6. doi: 10.1007/BF02624156.

Abstract

This study was conducted to identify a defined, serum-free culture medium that supports cell dependent contraction of a collagen lattice. Collagen lattices were found to contract in cultures containing human foreskin fibroblasts (HFF) or rabbit aortic smooth muscle (RASM) cells incubated in serum-free medium. HFF and RASM cells required different supplements to contract the collagen gels. HFF cultured in Dulbecco's modified Eagle's (DME) medium supplemented with bovine serum albumin (BSA) and either endothelial cell growth supplement (EnGS), insulin (In), or platelet derived growth factor (PDGF) supported collagen lattice contraction. Replacement of BSA with casein without the addition of other supplements improved contraction. In contrast, RASM cells supplemented with BSA, EnGS, In, and PDGF were able to contract collagen gels only minimally. Similar to HFF, RASM cells cultured in DME medium supplemented with casein, but without the addition of other supplements, contracted collagen lattices. HFF-mediated collagen contraction was inhibited by prostaglandins E1 or E2, fibronectin, or ascorbic acid. The reported serum-free model provides a useful in vitro method to investigate the role of serum and nonserum factors regulating cell mediated-contraction of insoluble collagen fibrils.

MeSH terms

  • Animals
  • Ascorbic Acid / pharmacology
  • Cells, Cultured
  • Collagen / ultrastructure*
  • Culture Media
  • Dithiothreitol / pharmacology
  • Fibroblasts / physiology*
  • Fibronectins / pharmacology
  • Growth Substances / pharmacology
  • Hormones / pharmacology
  • Humans
  • In Vitro Techniques
  • Male
  • Muscle, Smooth, Vascular / physiology*
  • Prostaglandins E / pharmacology
  • Rabbits

Substances

  • Culture Media
  • Fibronectins
  • Growth Substances
  • Hormones
  • Prostaglandins E
  • Collagen
  • Ascorbic Acid
  • Dithiothreitol