Close dependence of fibroblast proliferation on collagen scaffold matrix stiffness

被引:239
作者
Hadjipanayi, E. [1 ]
Mudera, V. [1 ]
Brown, R. A. [1 ]
机构
[1] UCL, Tissue Repair & Engn Ctr, Inst Orthopaed, London HA7 4LP, England
基金
英国生物技术与生命科学研究理事会;
关键词
collagen; 3D; matrix stiffness; fibroblast proliferation; plastic compression; HUMAN DERMAL FIBROBLASTS; SUBSTRATE STIFFNESS; QUIESCENT STATE; CELL ADAPTATION; TISSUE; APOPTOSIS; DECREASE; MYOFIBROBLASTS; TRANSDUCTION; CELLULARITY;
D O I
10.1002/term.136
中图分类号
Q813 [细胞工程];
学科分类号
100113 [医学细胞生物学];
摘要
Human dermal fibroblasts (HDFs) in free-floating collagen matrices show minimal proliferation, although this may increase when the matrix is 'under tension'. We have investigated the detailed mechanics underlying one of the possible controls of this important cell behaviour, in particular the hypothesis that this is a response to substrate stiffness. Hyperhydrated collagen gels were plastic-compressed (PC) to give a predetermined collagen density and stiffness. Mechanical properties were tested using a dynamic mechanical analyser; cell number by Alamar blue assay. In the stiffest PC matrices, cell proliferation was rapid and seeding density-dependent, with a population doubling time of 2 days. In contrast, compliant attached matrices showed a 4 day lag period and a doubling time of 6 days. HDF growth was directly related to matrix stiffness, such that increasing stiffness using a range of compression levels (0-75% fluid removal) supported increasing proliferation rate, doubling times and matrix elastic modulus. HDF quiescence in compliant matrices was reversible, such that increasing stiffness in situ by compression at 1 and 5 days initiated proliferation. We conclude that collagen matrix stiffness regulates proliferation of fibroblasts (a duro-response), with important implications for understanding fibroblast-matrix feedback controls during wound healing and the design and regulation of engineered connective tissues based on collagen and other hydrogel-based scaffolds. Copyright (C) 2008 John Wiley & Sons, Ltd.
引用
收藏
页码:77 / 84
页数:8
相关论文
共 44 条
[1]
The use of Alamar Blue assay for quantitative analysis of viability, migration and invasion of choriocarcinoma cells [J].
Al-Nasiry, S. ;
Geusens, N. ;
Hanssens, M. ;
Luyten, C. ;
Pijnenborg, R. .
HUMAN REPRODUCTION, 2007, 22 (05) :1304-1309
[2]
PRODUCTION OF A TISSUE-LIKE STRUCTURE BY CONTRACTION OF COLLAGEN LATTICES BY HUMAN-FIBROBLASTS OF DIFFERENT PROLIFERATIVE POTENTIAL INVITRO [J].
BELL, E ;
IVARSSON, B ;
MERRILL, C .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1979, 76 (03) :1274-1278
[3]
Influence of external uniaxial cyclic strain on oriented fibroblast-seeded collagen gels [J].
Berry, CC ;
Shelton, JC ;
Bader, DL ;
Lee, DA .
TISSUE ENGINEERING, 2003, 9 (04) :613-624
[4]
In vivo characterization of viscoelastic properties of human skin using dynamic micro-indentation [J].
Boyer, G. ;
Zahouani, H. ;
Le, Bot A. ;
Laquieze, L. .
2007 ANNUAL INTERNATIONAL CONFERENCE OF THE IEEE ENGINEERING IN MEDICINE AND BIOLOGY SOCIETY, VOLS 1-16, 2007, :4584-4587
[5]
Brown RA, 1998, J CELL PHYSIOL, V175, P323, DOI 10.1002/(SICI)1097-4652(199806)175:3<323::AID-JCP10>3.0.CO
[6]
2-6
[7]
Ultrarapid engineering of biomimetic materials and tissues: Fabrication of nano- and microstructures by plastic compression [J].
Brown, RA ;
Wiseman, M ;
Chuo, CB ;
Cheema, U ;
Nazhat, SN .
ADVANCED FUNCTIONAL MATERIALS, 2005, 15 (11) :1762-1770
[8]
BIOLOGY OF DERMAL WOUND REPAIR [J].
CLARK, RAF .
DERMATOLOGIC CLINICS, 1993, 11 (04) :647-666
[9]
Apoptosis during wound healing, fibrocontractive diseases and vascular wall injury [J].
Desmouliere, A ;
Badid, C ;
BochatonPiallat, ML ;
Gabbiani, G .
INTERNATIONAL JOURNAL OF BIOCHEMISTRY & CELL BIOLOGY, 1997, 29 (01) :19-30
[10]
DESMOULIERE A, 1995, AM J PATHOL, V146, P56