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Rotator cuff bridging repair using acellular dermal matrix in large to massive rotator cuff tears: histologic and clinical analysis

  • Jong Ok Kim
  • , Jong Ho Lee
  • , Kwang Sup Kim
  • , Jong Hun Ji
  • , Sung Jun Koh
  • , Jae Ho Lee
  • Daejeon St. Mary's Hospital

Research output: Contribution to journalArticlepeer-review

35 Scopus citations

Abstract

Background: This study investigated the efficacy of the bridging repair using an acellular dermal matrix (ADM) and an ADM with stem cells in rabbits. Also investigated were clinical outcomes of ADM bridging repair for large to massive rotator cuff tears. Materials and methods ADM, with and without stem cells, was used to cover a 5- × 5-mm-sized cuff defect in 17 rabbits, and biomechanical, histologic, and immunohistochemical analyses were conducted. Also evaluated were 24 patients with large to massive rotator cuff tears after ADM bridging repair. Results In the biomechanical test, the normal rotator cuff, cuff with ADM plus stem cells, and cuff with ADM in the rabbit model showed a maximum load (N) of 287.3, 217.5, and 170.3 and ultimate tensile strength (N/mm2) of 11.1, 8.0, and 5.2, respectively. Histologically, the cuff tendons with the ADM or ADM plus stem cells showed characteristically mature tendons as time passed. In the clinical study, the mean American Shoulder and Elbow Surgeons score improved from preoperative 50 to postoperative 83, the University of California Los Angeles Shoulder Rating Scale from 17 to 30, and the Simple Shoulder Test from 4 to 8, respectively. No further fatty deteriorations or muscle atrophy were observed on follow-up magnetic resonance imaging. A retear was found in 5 of 24 patients (21%). Conclusions Bridging repair with ADM or stem cells in the rabbit model showed cellular infiltration into the graft and some evidence of neotendon formation. Clinically, ADM repair was a safe alternative that did not show any further fatty deterioration nor muscle atrophy in large to massive rotator cuff tears.

Original languageEnglish
Pages (from-to)1897-1907
Number of pages11
JournalJournal of Shoulder and Elbow Surgery
Volume26
Issue number11
DOIs
StatePublished - Nov 2017

Bibliographical note

Publisher Copyright:
© 2017 Journal of Shoulder and Elbow Surgery Board of Trustees

Keywords

  • Acellular dermal matrix
  • bridging repair
  • fatty deteriorations
  • massive rotator cuff tear
  • mature tendon
  • muscle atrophy

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