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Dive into the research topics where Peter Dunbar is active.

Publication


Featured researches published by Peter Dunbar.


Journal of Orthopaedic Surgery and Research | 2015

Augmentation with an ovine forestomach matrix scaffold improves histological outcomes of rotator cuff repair in a rat model.

Matthew Street; Ashvin Thambyah; Michael Dray; Satya Amirapu; Donna Tuari; Karen E. Callon; Julie McIntosh; Kristina Burkert; Peter Dunbar; Brendan Coleman; Jillian Cornish; David Musson

BackgroundRotator cuff tears can cause significant pain and functional impairment. Without surgical repair, the rotator cuff has little healing potential, and following surgical repair, they are highly prone to re-rupture. Augmenting such repairs with a biomaterial scaffold has been suggested as a potential solution. Extracellular matrix (ECM)-based scaffolds are the most commonly used rotator cuff augments, although to date, reports on their success are variable. Here, we utilize pre-clinical in vitro and in vivo assays to assess the efficacy of a novel biomaterial scaffold, ovine forestomach extracellular matrix (OFM), in augmenting rotator cuff repair.MethodsOFM was assessed in vitro for primary tenocyte growth and adherence, and for immunogenicity using an assay of primary human dendritic cell activation. In vivo, using a murine model, supraspinatus tendon repairs were carried out in 34 animals. Augmentation with OFM was compared to sham surgery and unaugmented control. At 6- and 12-week time points, the repairs were analysed biomechanically for strength of repair and histologically for quality of healing.ResultsOFM supported tenocyte growth in vitro and did not cause an immunogenic response. Augmentation with OFM improved the quality of healing of the repaired tendon, with no evidence of excessive inflammatory response. However, there was no biomechanical advantage of augmentation.ConclusionsThe ideal rotator cuff tendon augment has not yet been identified or clinically implemented. ECM scaffolds offer a promising solution to a difficult clinical problem. Here, we have shown improved histological healing with OFM augmentation. Identifying materials that offset the poorer mechanical properties of the rotator cuff post-injury/repair and enhance organised tendon healing will be paramount to incorporating augmentation into surgical treatment of the rotator cuff.


Archive | 2014

AMINO ACID AND PEPTIDE CONJUGATES AND CONJUGATION PROCESS

Margaret A. Brimble; Tom H. Wright; Peter Dunbar; Geoffrey M. Williams


Archive | 2016

Tissue culture apparatus and method

Peter Dunbar; Vaughan Feisst; Reece N. Oosterbeek; Miriam Cather Simpson; Yuen Sze Tong


Archive | 2017

Amino Acid and Peptide Conjugates and Uses Thereof

Margaret A. Brimble; Peter Dunbar; Geoffrey M. Williams; Daniel Verdon


Archive | 2013

Characterisation of Mesenchymal Stem Cell Populations Directly Derived from Human Dermis

Hilary Sheppard; Vaughan Feisst; Anna Brooks; Ji-Li Chen; Peter Dunbar; R Dunbar


Archive | 2011

Targeting synthetic glycopeptides to MGL on Dermal Dendritic cells

Julie McIntosh; Catherine E. Angel; Cjj Chen; Kristy Manning; Claudia Mansell; S Agrawai; Paul William Richard Harris; Geoffrey Williams; Christopher J. Squire; Margaret A. Brimble; Peter Dunbar


Archive | 2011

Comprehensive 3D imaging of blood vascular networks in lymph nodes

Inken Kelch; Anthony R. J. Phillips; Miles Bogle; L LeGrice; D Sands; Dane Gerneke; Claudia Mansell; Peter Dunbar


Archive | 2010

MGL as a Target for Vaccine Design

Julie McIntosh; Catherine E. Angel; Cjj Chen; Kristy Manning; Claudia Mansell; Paul William Richard Harris; Geoffrey Williams; Margaret A. Brimble; Peter Dunbar


Archive | 2010

Improved Method for Conditioning Cancer Killing T Cells

Anna Brooks; Daniel Verdon; Yu-Yu Ho; Peter Dunbar


Archive | 2010

Effects of a self-adjuvanting Synthetic Long Peptide targeting TLR2 on human immune cells

Kristina Burkert; Claudia Mansell; Julie McIntosh; Anna Brooks; Catherine E. Angel; S Winkler; Paul William Richard Harris; Geoffrey Williams; Margaret A. Brimble; Peter Dunbar

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Anna Brooks

University of Auckland

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