Restoring disc matrix homeostasis: Dual-miRNA and human platelet lysate as a novel therapeutic strategy.

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Title: Restoring disc matrix homeostasis: Dual-miRNA and human platelet lysate as a novel therapeutic strategy.
Authors: Ní Néill T; Trinity Centre for Biomedical Engineering, Trinity Biomedical Sciences Institute, Trinity College Dublin, The University of Dublin, Ireland.; Discipline of Mechanical, Manufacturing and Biomedical Engineering, School of Engineering, Trinity College Dublin, The University of Dublin, Ireland.; Advanced Materials and Bioengineering Research (AMBER) Centre, Royal College of Surgeons in Ireland & Trinity College Dublin, The University of Dublin, Dublin, Ireland., Wilson N; Trinity Centre for Biomedical Engineering, Trinity Biomedical Sciences Institute, Trinity College Dublin, The University of Dublin, Ireland.; Discipline of Mechanical, Manufacturing and Biomedical Engineering, School of Engineering, Trinity College Dublin, The University of Dublin, Ireland.; Advanced Materials and Bioengineering Research (AMBER) Centre, Royal College of Surgeons in Ireland & Trinity College Dublin, The University of Dublin, Dublin, Ireland., Thomas J; Trinity Centre for Biomedical Engineering, Trinity Biomedical Sciences Institute, Trinity College Dublin, The University of Dublin, Ireland.; Discipline of Mechanical, Manufacturing and Biomedical Engineering, School of Engineering, Trinity College Dublin, The University of Dublin, Ireland.; Advanced Materials and Bioengineering Research (AMBER) Centre, Royal College of Surgeons in Ireland & Trinity College Dublin, The University of Dublin, Dublin, Ireland., McDonnell J; Trinity Centre for Biomedical Engineering, Trinity Biomedical Sciences Institute, Trinity College Dublin, The University of Dublin, Ireland.; Discipline of Mechanical, Manufacturing and Biomedical Engineering, School of Engineering, Trinity College Dublin, The University of Dublin, Ireland.; Advanced Materials and Bioengineering Research (AMBER) Centre, Royal College of Surgeons in Ireland & Trinity College Dublin, The University of Dublin, Dublin, Ireland.; National Spinal Injuries Unit, Mater Misericordiae University Hospital, Dublin, Ireland., Darwish SL; Advanced Materials and Bioengineering Research (AMBER) Centre, Royal College of Surgeons in Ireland & Trinity College Dublin, The University of Dublin, Dublin, Ireland.; National Spinal Injuries Unit, Mater Misericordiae University Hospital, Dublin, Ireland.; School of Medicine, University College Dublin, Ireland.; Department of Orthopaedics, St Vincent's University Hospital, Dublin, Ireland., Butler JS; Trinity Centre for Biomedical Engineering, Trinity Biomedical Sciences Institute, Trinity College Dublin, The University of Dublin, Ireland.; National Spinal Injuries Unit, Mater Misericordiae University Hospital, Dublin, Ireland.; School of Medicine, University College Dublin, Ireland., O'Brien FJ; Trinity Centre for Biomedical Engineering, Trinity Biomedical Sciences Institute, Trinity College Dublin, The University of Dublin, Ireland.; Discipline of Mechanical, Manufacturing and Biomedical Engineering, School of Engineering, Trinity College Dublin, The University of Dublin, Ireland.; Advanced Materials and Bioengineering Research (AMBER) Centre, Royal College of Surgeons in Ireland & Trinity College Dublin, The University of Dublin, Dublin, Ireland.; Tissue Engineering Research Group, Department of Anatomy and Regenerative Medicine, Royal College of Surgeons in Ireland, Dublin, Ireland., Dixon JE; Regenerative Medicine and Cellular Therapies, The University of Nottingham Biodiscovery Institute (BDI), School of Pharmacy, University of Nottingham, Nottingham, UK.; NIHR Nottingham Biomedical Research Centre, University of Nottingham, Nottingham, UK., Curtin CM; Trinity Centre for Biomedical Engineering, Trinity Biomedical Sciences Institute, Trinity College Dublin, The University of Dublin, Ireland.; Discipline of Mechanical, Manufacturing and Biomedical Engineering, School of Engineering, Trinity College Dublin, The University of Dublin, Ireland.; Advanced Materials and Bioengineering Research (AMBER) Centre, Royal College of Surgeons in Ireland & Trinity College Dublin, The University of Dublin, Dublin, Ireland.; Tissue Engineering Research Group, Department of Anatomy and Regenerative Medicine, Royal College of Surgeons in Ireland, Dublin, Ireland., Buckley CT; Trinity Centre for Biomedical Engineering, Trinity Biomedical Sciences Institute, Trinity College Dublin, The University of Dublin, Ireland.; Discipline of Mechanical, Manufacturing and Biomedical Engineering, School of Engineering, Trinity College Dublin, The University of Dublin, Ireland.; Advanced Materials and Bioengineering Research (AMBER) Centre, Royal College of Surgeons in Ireland & Trinity College Dublin, The University of Dublin, Dublin, Ireland.; Tissue Engineering Research Group, Department of Anatomy and Regenerative Medicine, Royal College of Surgeons in Ireland, Dublin, Ireland.
Source: Materials today. Bio [Mater Today Bio] 2026 May 03; Vol. 38, pp. 103190. Date of Electronic Publication: 2026 May 03 (Print Publication: 2026).
Publication Type: Journal Article
Journal Info: Publisher: Elsevier Ltd Country of Publication: England NLM ID: 101757228 Publication Model: eCollection Cited Medium: Internet ISSN: 2590-0064 (Electronic) Linking ISSN: 25900064 NLM ISO Abbreviation: Mater Today Bio Subsets: PubMed not MEDLINE
Database: MEDLINE Ultimate
Description
ISSN:2590-0064
DOI:10.1016/j.mtbio.2026.103190