Tissue-Engineered Tendon for Enthesis Regeneration in a Rat Rotator Cuff Model.

Q2 Biochemistry, Genetics and Molecular Biology BioResearch Open Access Pub Date : 2017-06-01 eCollection Date: 2017-01-01 DOI:10.1089/biores.2016.0042
Michael J Smietana, Pablo Moncada-Larrotiz, Ellen M Arruda, Asheesh Bedi, Lisa M Larkin
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引用次数: 26

Abstract

Healing of rotator cuff (RC) injuries with current suture or augmented scaffold techniques fails to regenerate the enthesis and instead forms a weaker fibrovascular scar that is prone to subsequent failure. Regeneration of the enthesis is the key to improving clinical outcomes for RC injuries. We hypothesized that the utilization of our tissue-engineered tendon to repair either an acute or a chronic full-thickness supraspinatus tear would regenerate a functional enthesis and return the biomechanics of the tendon back to that found in native tissue. Engineered tendons were fabricated from bone marrow-derived mesenchymal stem cells utilizing our well-described fabrication technology. Forty-three rats underwent unilateral detachment of the supraspinatus tendon followed by acute (immediate) or chronic (4 weeks retracted) repair by using either our engineered tendon or a trans-osseous suture technique. Animals were sacrificed at 8 weeks. Biomechanical and histological analyses of the regenerated enthesis and tendon were performed. Statistical analysis was performed by using a one-way analysis of variance with significance set at p < 0.05. Acute repairs using engineered tendon had improved enthesis structure and lower biomechanical failures compared with suture repairs. Chronic repairs with engineered tendon had a more native-like enthesis with increased fibrocartilage formation, reduced scar formation, and lower biomechanical failure compared with suture repair. Thus, the utilization of our tissue-engineered tendon showed improve enthesis regeneration and improved function in chronic RC repairs compared with suture repair. Clinical Significance: Our engineered tendon construct shows promise as a clinically relevant method for repair of RC injuries.

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组织工程肌腱用于大鼠肌腱套模型的末端再生。
目前使用缝合或增强支架技术治疗肩袖(RC)损伤时,不能使髋端再生,而是形成较弱的纤维血管疤痕,容易导致后续失败。末端再生是改善RC损伤临床结果的关键。我们假设利用我们的组织工程肌腱来修复急性或慢性全层冈上肌撕裂,可以再生功能性终端,并使肌腱的生物力学恢复到原始组织的水平。利用我们良好描述的制造技术,从骨髓来源的间充质干细胞制造工程肌腱。43只大鼠接受了单侧冈上肌腱脱离,随后采用我们的工程肌腱或经骨缝合技术进行了急性(立即)或慢性(4周)修复。8周时处死动物。对再生的骨端和肌腱进行生物力学和组织学分析。统计学分析采用单向方差分析,显著性设置为p。临床意义:我们的工程肌腱结构有望成为修复RC损伤的临床相关方法。
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来源期刊
BioResearch Open Access
BioResearch Open Access Biochemistry, Genetics and Molecular Biology-Biochemistry, Genetics and Molecular Biology (all)
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期刊介绍: BioResearch Open Access is a high-quality open access journal providing peer-reviewed research on a broad range of scientific topics, including molecular and cellular biology, tissue engineering, regenerative medicine, stem cells, gene therapy, systems biology, genetics, virology, and neuroscience. The Journal publishes basic science and translational research in the form of original research articles, comprehensive review articles, mini-reviews, rapid communications, brief reports, technology reports, hypothesis articles, perspectives, and letters to the editor.
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