Tailoring hydrogel surface properties to modulate cellular response to shear loading.

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Bibliographic Details
Title: Tailoring hydrogel surface properties to modulate cellular response to shear loading.
Authors: Meinert C; Institute of Health and Biomedical Innovation, Queensland University of Technology, Brisbane, Queensland 4059, Australia. Electronic address: christoph.meinert@qut.edu.au., Schrobback K; Institute of Health and Biomedical Innovation, Queensland University of Technology, Brisbane, Queensland 4059, Australia. Electronic address: k.schrobback@qut.edu.au., Levett PA; Institute of Health and Biomedical Innovation, Queensland University of Technology, Brisbane, Queensland 4059, Australia. Electronic address: peter.levett@outlook.com., Lutton C; Institute of Health and Biomedical Innovation, Queensland University of Technology, Brisbane, Queensland 4059, Australia. Electronic address: cameronlutton@gmail.com., Sah RL; Department of Bioengineering, University of California-San Diego, La Jolla, CA 92093, United States. Electronic address: rsah@ucsd.edu., Klein TJ; Institute of Health and Biomedical Innovation, Queensland University of Technology, Brisbane, Queensland 4059, Australia. Electronic address: t2.klein@qut.edu.au.
Source: Acta biomaterialia [Acta Biomater] 2017 Apr 01; Vol. 52, pp. 105-117. Date of Electronic Publication: 2016 Oct 08.
Publication Type: Journal Article; Research Support, Non-U.S. Gov't; Research Support, N.I.H., Extramural
Journal Info: Publisher: Elsevier Country of Publication: England NLM ID: 101233144 Publication Model: Print-Electronic Cited Medium: Internet ISSN: 1878-7568 (Electronic) Linking ISSN: 17427061 NLM ISO Abbreviation: Acta Biomater Subsets: MEDLINE
Database: MEDLINE Ultimate
Description
ISSN:1878-7568
DOI:10.1016/j.actbio.2016.10.011