Contraction of collagen gels by intestinal epithelial cells depends on microfilament function
- 1 March 1993
- journal article
- research article
- Published by Springer Nature in Digestive Diseases and Sciences
- Vol. 38 (3) , 388-395
- https://doi.org/10.1007/bf01316489
Abstract
We have developed a model system to quantify the tractional forces generated by intestinal epithelial cells during organization into a confluent epithelial cell sheet. In this model system, IEC-6 cells, a rat intestinal crypt cell line, rapidly contracted collagen gels reducing the gel surface area by 97% at 24 hr. The tractional forces measured by gel contraction were directly related to the number of cells added and were inversely related to the collagen concentration of the gel. Actin microfilament function was required for gel contraction, but microtubular function was not. Fetal bovine serum and protein synthesis were required for maximal gel contraction. IEC-6 (5×105) cells per gel and fibroblasts (5 ×104) cells added to collagen gels resulted in contraction of the gels by 50% at 24 hr. Therefore, intestinal epithelial cells and fibroblasts generate tractional forces of similar strength capable of organizing the surrounding extracellular matrix, which should be considered in models of intestinal morphogenesis and repair.Keywords
This publication has 27 references indexed in Scilit:
- Organization of intestinal epithelial cells into multicellular structures requires laminin and functional actin microfilamentsExperimental Cell Research, 1991
- The Activated KeratinocytePublished by Wolters Kluwer Health ,1990
- Spatial organization of extracellular matrix and fibroblast activity: Effects of serum, transforming growth factor β, and fibronectinExperimental Cell Research, 1990
- The interaction of human papillary and reticular fibroblasts and human keratinocytes in the contraction of three-dimensional floating collagen latticesExperimental Cell Research, 1989
- Collagen processing, crosslinking, and fibril bundle assembly in matrix produced by fibroblasts in long-term cultures supplemented with ascorbic acidExperimental Cell Research, 1989
- Contraction of Hydrated Collagen Gels by Fibroblasts: Evidence for Two Mechanisms by which Collagen Fibrils are StabilizedCollagen and Related Research, 1987
- The contraction of collagen matrices by dermal fibroblastsJournal of Ultrastructure Research, 1983
- Establishment and transformation diminish the ability of fibroblasts to contract a native collagen gel.The Journal of cell biology, 1980
- Contact guidance on oriented collagen gelsExperimental Cell Research, 1978
- A new hypothesis of contact guidance in tissue cellsExperimental Cell Research, 1976