Recent studies utilizing compliant culture substrates clearly demonstrate that many cell behaviors such as migration and contraction are strongly influenced by the stiffness of the local environment. The goal of this work was to develop a method for studying stiffness-dependent biology within 3D cell-populated gels without altering the biochemical environment of the gel. A device was developed utilizing compliant anchors to tune the boundary stiffness of suspended collagen gels. Human fibroblasts compacted the gels to a greater extent as the stiffness of the anchors was decreased. Further, the force generated by the cells increased with increased boundary stiffness, and the response of the cells to TGF-β1 was accentuated as the stiffness increased. This new method represents a promising tool for the controlled study of stiffness-dependent biology within tissuelike 3D environments.
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ASME 2008 Summer Bioengineering Conference
June 25–29, 2008
Marco Island, Florida, USA
Conference Sponsors:
- Bioengineering Division
ISBN:
978-0-7918-4321-5
PROCEEDINGS PAPER
Boundary Stiffness Regulates Fibroblast Behavior in Collagen Gels Available to Purchase
Jeffrey John,
Jeffrey John
Worcester Polytechnic Institute, Worcester, MA
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Kristen L. Billiar
Kristen L. Billiar
Worcester Polytechnic Institute, Worcester, MA
Search for other works by this author on:
Jeffrey John
Worcester Polytechnic Institute, Worcester, MA
Kristen L. Billiar
Worcester Polytechnic Institute, Worcester, MA
Paper No:
SBC2008-192476, pp. 307-308; 2 pages
Published Online:
March 13, 2014
Citation
John, J, & Billiar, KL. "Boundary Stiffness Regulates Fibroblast Behavior in Collagen Gels." Proceedings of the ASME 2008 Summer Bioengineering Conference. ASME 2008 Summer Bioengineering Conference, Parts A and B. Marco Island, Florida, USA. June 25–29, 2008. pp. 307-308. ASME. https://doi.org/10.1115/SBC2008-192476
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