Literature DB >> 20797586

Biomechanical evaluation of acellular collagen matrix augmented Achilles tendon repair in sheep.

Lin Song1, Raymond E Olsen, Jeffrey P Spalazzi, Twana Davisson.   

Abstract

The rate of rerupture of repaired Achilles tendon in young and athletic populations remains high despite improvement in surgical techniques, suture design, and postsurgical management. Acellular biological matrices can be used to enhance the immediate strength of repaired tendons and to serve as scaffolds for cell in-growth and constructive tissue remodeling. A number of commercially available matrices have been used clinically, albeit with varying degrees of success and failure. The disparity is likely attributable to the different physical and biochemical properties of individual matrices. In this study, we investigated the biomechanical characteristics of 2 different acellular collagen matrices, namely TissueMend and GraftJacket, using a sheep Achilles tendon repair model. Static and cyclic creep, cyclic and linear construct stiffness, maximum load to failure, and displacement at maximum load were determined at time zero. We found that the maximum load to failure, displacement, and ultimate failure mode were similar between tendons augmented with either acellular collagen matrix; however, TissueMend augmentation yielded lower creep and smaller construct elongation than did GraftJacket. The results indicated that the strength of TissueMend-augmented tendons and GraftJacket-augmented tendons was not statistically significantly different, although tendons augmented with TissueMend displayed greater stiffness, which may be clinically advantageous in the restoration of ruptured tendons. Copyright 2010 American College of Foot and Ankle Surgeons. Published by Elsevier Inc. All rights reserved.

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Year:  2010        PMID: 20797586     DOI: 10.1053/j.jfas.2010.06.009

Source DB:  PubMed          Journal:  J Foot Ankle Surg        ISSN: 1067-2516            Impact factor:   1.286


  7 in total

1.  Surgical repair of hip abductors. A new technique using Graft Jacket allograft acellular human dermal matrix.

Authors:  Biyyam M Rao; Tamer T Kamal; John Vafaye; Lee Taylor
Journal:  Int Orthop       Date:  2012-08-08       Impact factor: 3.075

2.  Incorporation of the Amniotic Membrane as an Immunomodulatory Design Element in Collagen Scaffolds for Tendon Repair.

Authors:  Rebecca A Hortensius; Jill H Ebens; Marley J Dewey; Brendan A C Harley
Journal:  ACS Biomater Sci Eng       Date:  2018-10-19

3.  Do cells contribute to tendon and ligament biomechanics?

Authors:  Niels Hammer; Daniel Huster; Sebastian Fritsch; Carsten Hädrich; Holger Koch; Peter Schmidt; Freddy Sichting; Martin Franz-Xaver Wagner; Andreas Boldt
Journal:  PLoS One       Date:  2014-08-15       Impact factor: 3.240

Review 4.  Immunological challenges associated with artificial skin grafts: available solutions and stem cells in future design of synthetic skin.

Authors:  Saurabh Dixit; Dieudonné R Baganizi; Rajnish Sahu; Ejowke Dosunmu; Atul Chaudhari; Komal Vig; Shreekumar R Pillai; Shree R Singh; Vida A Dennis
Journal:  J Biol Eng       Date:  2017-12-13       Impact factor: 4.355

Review 5.  Orthopaedic regenerative tissue engineering en route to the holy grail: disequilibrium between the demand and the supply in the operating room.

Authors:  Ibrahim Fatih Cengiz; Hélder Pereira; Laura de Girolamo; Magali Cucchiarini; João Espregueira-Mendes; Rui L Reis; Joaquim Miguel Oliveira
Journal:  J Exp Orthop       Date:  2018-05-22

Review 6.  Bioaugmentation in the surgical treatment of anterior cruciate ligament injuries: A review of current concepts and emerging techniques.

Authors:  Austin MacFarland Looney; Joseph Daniel Leider; Andrew Ryan Horn; Blake Michael Bodendorfer
Journal:  SAGE Open Med       Date:  2020-05-12

Review 7.  Engineering Tendon: Scaffolds, Bioreactors, and Models of Regeneration.

Authors:  Daniel W Youngstrom; Jennifer G Barrett
Journal:  Stem Cells Int       Date:  2015-12-28       Impact factor: 5.443

  7 in total

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