Fibroblast mechanics in 3D collagen matrices

Citations

WEB OF SCIENCE

147
Citations

SCOPUS

160

초록

Connective tissues provide mechanical support and frameworks for the other tissues of the body. Type I collagen is the major protein component of ordinary connective tissue, and fibroblasts are the cell type primarily responsible for its biosynthesis and remodeling. Research on fibroblasts interacting with collagen matrices explores all four quadrants of cell mechanics: pro-migratory vs. pro-contractile growth factor environments on one axis; high tension vs. low tension cell-matrix interactions on the other. The dendritic fibroblast - probably equivalent to the resting tissue fibroblast - can be observed only in the low tension quadrant and generally has not been appreciated from research on cells incubated with planar culture surfaces. Fibroblasts in the low tension quadrant require micrombules for fori-nation of dendritic extensions, whereas fibroblasts in the high tension quadrant require micrombules for polarization but not for spreading. Ruffling of dendritic extensions rather than their overall protrusion or retraction provides the mechanism for remodeling of floating collagen matrices, and floating matrix remodeling likely reflects a model of tissue mechanical homeostasis. (C) 2007 Elsevier B.V. All rights reserved.

키워드

adhesion; migration; contraction; extracellular matrix; wound repair; tissue engineering; tensegrity; platelet-derived growth factor; lysophosphatidic acid; CELL-MIGRATION; EXTRACELLULAR-MATRIX; WOUND FLUID; RHO-GTPASES; CONTRACTION; ADHESION; MICROTUBULES; RESPONSES; PROTEIN; MODEL
제목
Fibroblast mechanics in 3D collagen matrices
저자
Rhee, Sangmyung; Grinnell, Frederick
DOI
10.1016/j.addr.2007.08.006
발행일
2007-11
유형
Review
저널명
Advanced Drug Delivery Reviews
권
59
호
13
페이지
1299 ~ 1305

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