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PMID: 9572477 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Tensional homeostasis in dermal fibroblasts: mechanical responses to mechanical loading in three-dimensional substrates.

Journal of cellular physiology ·Vol. 175 ·No. 3 ·1998-06-00 ·Pages 323-32

Brown RA, Prajapati R, McGrouther DA, Yannas IV, Eastwood M

Abstract

Many soft connective tissues are under endogenous tension, and their resident cells generate considerable contractile forces on the extracellular matrix. The present work was aimed to determine quantitatively how fibroblasts, grown within three-dimensional collagen lattices, respond mechanically to precisely defined tensional loads. Forces generated in response to changes in applied load were measured using a tensional culture force monitor. In a number of variant systems, resident cells consistently reacted to modify the endogenous matrix tension in the opposite direction to externally applied loads. That is, increased external loading was followed immediately by a reduction in cell-mediated contraction whilst decreased external loading elicited increased contraction. Responses were cell-mediated and not a result of material properties of the matrices. This is the first detailed characterisation of a tensional homeostatic response in cells. The maintained force, after 8 h in culture, was typically around 40-60 dynes/million cells). Maintenance of an active tensional homeostasis has widespread implications for cells in culture and for whole tissue function.

MeSH Terms
Cells, Cultured Collagen/physiology Fibroblasts/physiology Homeostasis/physiology Humans Skin/cytology Stress, Mechanical
Chemicals
Collagen
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Brown R A
Division of Plastic Surgery, Rayne Institute, University College London, United Kingdom. rehkrab@ucl.ac.uk
Prajapati R
McGrouther D A
Yannas I V
Eastwood M
Article Info
Journal
Journal of cellular physiology
Abbr.
J Cell Physiol
ISSN
0021-9541
Published
1998-06-00
Pages
323-32
Language
English
Region
United States
NLM ID
0050222
Subset
IM
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