Mechanically tunable elastomer and cellulose nanocrystal composites as scaffolds for in vitro cell studies

Author:

Ustunel Senay12345ORCID,Prévôt Marianne E.12345ORCID,Rohaley Grace A. R.12345ORCID,Webb Caitlyn R.12345ORCID,Yavitt Benjamin6785ORCID,Freychet Guillaume6785ORCID,Zhernenkov Mikhail6785ORCID,Pindak Ron6785ORCID,Schaible Eric910115ORCID,Zhu Chenhui910115ORCID,Hegmann Torsten12345ORCID,Clements Robert J.1234513ORCID,Hegmann Elda12345ORCID

Affiliation:

1. Materials Science Graduate Program

2. Advanced Materials and Liquid Crystal Institute

3. Kent State University

4. Kent (OH) 44242-0001

5. USA

6. Brookhaven National Laboratory

7. National Synchrotron Light Source-II

8. Upton

9. Advanced Light Source

10. Lawrence Berkeley National Laboratory

11. Berkeley

12. Department of Biological Sciences

13. Brain Health Research Institute

Abstract

Composites based on ε-caprolactone-d,l-lactide-based elastomer with cellulose nanocrystals (CNC) are investigated to understand how matching cells with appropriate mechanical environments can provide important insights into fundamental cell behaviors.

Funder

National Science Foundation

Publisher

Royal Society of Chemistry (RSC)

Subject

Microbiology

Reference123 articles.

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2. A tough biodegradable elastomer

3. Stimuli-responsive liquid crystal elastomers for dynamic cell culture

4. Tissue Cells Feel and Respond to the Stiffness of Their Substrate

5. Cell responses to the mechanochemical microenvironment—Implications for regenerative medicine and drug delivery☆

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