Literature DB >> 14668510

Chronic rotator cuff injury and repair model in sheep.

Struan H Coleman1, Stephen Fealy, John R Ehteshami, John D MacGillivray, David W Altchek, Russell F Warren, A Simon Turner.   

Abstract

BACKGROUND: Most rotator cuff surgery is performed on chronic tears. As there is no animal model in which to examine the physiology of muscle and tendon injury and repair in this setting, we developed a chronic rotator cuff injury model in sheep.
METHODS: The infraspinatus tendon was released in thirty-six female sheep. Biopsy specimens were obtained from the muscle and were analyzed for fat content. The force generated by the muscle with supramaximal stimulation was recorded intraoperatively. A control group (twelve sheep) underwent an immediate tendon repair. In the remaining twenty-four sheep, the tendon was wrapped in a dura substitute to prevent scarring and was repaired at six weeks (eight sheep) and eighteen weeks (sixteen sheep) after release. In the immediate repair group, four animals were killed at six weeks; four, at twelve weeks; and four, at twenty weeks. In the six-week delayed repair group, four animals were killed at twelve weeks and four were killed at twenty weeks after the repair. In the eighteen-week delayed repair group, eight animals were killed at twelve weeks; four, at twenty weeks; and four, at thirty weeks after the repair. Muscle biopsies and testing were repeated prior to killing of the animals.
RESULTS: The average force of muscle contraction decreased 3.6 lb (1.6 kg) by six weeks after the injury and 3.9 lb (1.8 kg) by eighteen weeks after the injury. After the repair, the force of contraction in the six-week group improved by 0.8 lb (0.4 kg) at twelve weeks postoperatively and by 1.3 lb (0.6 kg) at twenty weeks postoperatively. In contrast, no improvement occurred in the eighteen-week group until thirty weeks after the repair, at which time a 0.9-lb (0.4-kg) improvement was noted. There was a twelvefold increase in intramuscular fat concentration; this lipid infiltration was partially reversed after the tendon repair. Isolated tendon samples demonstrated an increase in the modulus of elasticity after chronic detachment that partially corrected after the tendon repair in the earlier (six-week) repair group.
CONCLUSIONS: We found that earlier repair of the tendon results in a more rapid recovery of both muscle function and tendon elasticity compared with a more delayed repair. We concluded that there may be a "point of no return" in rotator cuff injury after which the elasticity of the muscle-tendon unit does not return to normal.

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Year:  2003        PMID: 14668510     DOI: 10.2106/00004623-200312000-00018

Source DB:  PubMed          Journal:  J Bone Joint Surg Am        ISSN: 0021-9355            Impact factor:   5.284


  45 in total

1.  Development of fatty atrophy after neurologic and rotator cuff injuries in an animal model of rotator cuff pathology.

Authors:  Kasra Rowshan; Scott Hadley; Khoa Pham; Vince Caiozzo; Thay Q Lee; Ranjan Gupta
Journal:  J Bone Joint Surg Am       Date:  2010-10-06       Impact factor: 5.284

2.  The use of mesenchymal stem cells in collagen-based scaffolds for tissue-engineered repair of tendons.

Authors:  David L Butler; Cynthia Gooch; Kirsten R C Kinneberg; Gregory P Boivin; Marc T Galloway; V Sanjit Nirmalanandhan; Jason T Shearn; Nathaniel A Dyment; Natalia Juncosa-Melvin
Journal:  Nat Protoc       Date:  2010-04-15       Impact factor: 13.491

3.  The effect of tear size and nerve injury on rotator cuff muscle fatty degeneration in a rodent animal model.

Authors:  H Mike Kim; Leesa M Galatz; Chanteak Lim; Necat Havlioglu; Stavros Thomopoulos
Journal:  J Shoulder Elbow Surg       Date:  2011-08-10       Impact factor: 3.019

4.  Assessment of the canine model of rotator cuff injury and repair.

Authors:  Kathleen A Derwin; Andrew R Baker; Michael J Codsi; Joseph P Iannotti
Journal:  J Shoulder Elbow Surg       Date:  2007-06-08       Impact factor: 3.019

5.  Relative fixation strength of rabbit subscapularis repair is comparable to human supraspinatus repair at time 0.

Authors:  Karimdad Otarodifard; Jeffrey Wong; Charles F Preston; James E Tibone; Thay Q Lee
Journal:  Clin Orthop Relat Res       Date:  2014-08       Impact factor: 4.176

6.  Biomechanical evaluation of four different transosseous-equivalent/suture bridge rotator cuff repairs.

Authors:  Michael Maguire; Jerome Goldberg; Desmond Bokor; Nicky Bertollo; Matthew Henry Pelletier; Wade Harper; William R Walsh
Journal:  Knee Surg Sports Traumatol Arthrosc       Date:  2011-02-24       Impact factor: 4.342

7.  Animal model for chronic massive rotator cuff tear: behavioural and histologic analysis.

Authors:  N Sevivas; S C Serra; R Portugal; F G Teixeira; M M Carvalho; N Silva; J Espregueira-Mendes; N Sousa; A J Salgado
Journal:  Knee Surg Sports Traumatol Arthrosc       Date:  2014-11-22       Impact factor: 4.342

Review 8.  Advances in biology and mechanics of rotator cuff repair.

Authors:  Olaf Lorbach; Mike H Baums; Tanja Kostuj; Stephan Pauly; Markus Scheibel; Andrew Carr; Nasim Zargar; Maristella F Saccomanno; Giuseppe Milano
Journal:  Knee Surg Sports Traumatol Arthrosc       Date:  2015-01-09       Impact factor: 4.342

9.  Reliability of supraspinatus intramuscular fatty infiltration estimates on T1-weighted MRI in potential candidates for rotator cuff repair surgery: full-thickness tear versus high-grade partial-thickness tear.

Authors:  Derik L Davis; Mohit N Gilotra; Rodolfo Calderon; Andrew Roberts; S Ashfaq Hasan
Journal:  Skeletal Radiol       Date:  2021-05-06       Impact factor: 2.199

Review 10.  Mechanisms of tendon injury and repair.

Authors:  Stavros Thomopoulos; William C Parks; Daniel B Rifkin; Kathleen A Derwin
Journal:  J Orthop Res       Date:  2015-03-02       Impact factor: 3.494

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