TRPV4-mediates oscillatory fluid shear mechanotransduction in mesenchymal stem cells in part via the primary cilium.

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Bibliographic Details
Title: TRPV4-mediates oscillatory fluid shear mechanotransduction in mesenchymal stem cells in part via the primary cilium.
Authors: Corrigan MA; Trinity Centre for Bioengineering, Trinity Biomedical Sciences Institute, Trinity College Dublin, Dublin, 2, Ireland.; Department of Mechanical and Manufacturing Engineering, School of Engineering, Trinity College Dublin, Dublin, 2, Ireland.; Department of Mechanical, Aeronautical and Biomedical Engineering, University of Limerick, Limerick, Ireland., Johnson GP; Trinity Centre for Bioengineering, Trinity Biomedical Sciences Institute, Trinity College Dublin, Dublin, 2, Ireland.; Department of Mechanical and Manufacturing Engineering, School of Engineering, Trinity College Dublin, Dublin, 2, Ireland.; Department of Mechanical, Aeronautical and Biomedical Engineering, University of Limerick, Limerick, Ireland., Stavenschi E; Trinity Centre for Bioengineering, Trinity Biomedical Sciences Institute, Trinity College Dublin, Dublin, 2, Ireland.; Department of Mechanical and Manufacturing Engineering, School of Engineering, Trinity College Dublin, Dublin, 2, Ireland.; Department of Mechanical, Aeronautical and Biomedical Engineering, University of Limerick, Limerick, Ireland., Riffault M; Trinity Centre for Bioengineering, Trinity Biomedical Sciences Institute, Trinity College Dublin, Dublin, 2, Ireland.; Department of Mechanical and Manufacturing Engineering, School of Engineering, Trinity College Dublin, Dublin, 2, Ireland.; Advanced Materials and Bioengineering Research Centre, Trinity College Dublin & RCSI, Dublin, 2, Ireland., Labour MN; Trinity Centre for Bioengineering, Trinity Biomedical Sciences Institute, Trinity College Dublin, Dublin, 2, Ireland.; Department of Mechanical and Manufacturing Engineering, School of Engineering, Trinity College Dublin, Dublin, 2, Ireland.; Department of Mechanical, Aeronautical and Biomedical Engineering, University of Limerick, Limerick, Ireland., Hoey DA; Trinity Centre for Bioengineering, Trinity Biomedical Sciences Institute, Trinity College Dublin, Dublin, 2, Ireland. dahoey@tcd.ie.; Department of Mechanical and Manufacturing Engineering, School of Engineering, Trinity College Dublin, Dublin, 2, Ireland. dahoey@tcd.ie.; Department of Mechanical, Aeronautical and Biomedical Engineering, University of Limerick, Limerick, Ireland. dahoey@tcd.ie.; Advanced Materials and Bioengineering Research Centre, Trinity College Dublin & RCSI, Dublin, 2, Ireland. dahoey@tcd.ie.
Source: Scientific reports [Sci Rep] 2018 Feb 28; Vol. 8 (1), pp. 3824. Date of Electronic Publication: 2018 Feb 28.
Publication Type: Journal Article; Research Support, Non-U.S. Gov't
Journal Info: Publisher: Nature Publishing Group Country of Publication: England NLM ID: 101563288 Publication Model: Electronic Cited Medium: Internet ISSN: 2045-2322 (Electronic) Linking ISSN: 20452322 NLM ISO Abbreviation: Sci Rep Subsets: MEDLINE
Database: MEDLINE Ultimate
Description
ISSN:2045-2322
DOI:10.1038/s41598-018-22174-3