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Strategies in biologic augmentation of rotator cuff repair: a review.

机译:肩袖修复的生物增强策略:综述。

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BACKGROUND: Degenerative rotator cuff tears are increasing with the aging population, and healing is not uniform after surgery. Rotator cuffs may show improved healing when biologic factors are added during surgery. QUESTIONS/PURPOSES: We asked: (1) What cellular processes are involved in normal bone-to-tendon healing? (2) What approaches are being developed in tendon augmentation? (3) What approaches are being developed with the addition of growth factors? METHODS: We reviewed research in relating to biologic augmentation and cellular processes involved in rotator cuff repair, focusing on animal models of rotator cuff repair and nonrandomized human trials. RESULTS: Regular bone-to-tendon healing forms a fibrous junction between tendon and bone that is distinct from the original bone-to-tendon junction. Tendon augmentation with cellular components serves as scaffolding for fibroblastic cells and a possible source of growth factors and fibroblastic cells. Extracellular matrices provide a scaffold for incoming fibroblastic cells, although current research does not conclusively confirm which if any of these scaffolds enhance repair owing in part to intermanufacturer variations and the limited human research. Growth factors and platelet-rich-plasma are established in other fields of research and may enhance repair but have not been rigorously tested. CONCLUSIONS: There is potential application of biologic augmentation to improve healing after rotator cuff repair. However, research in this field is still inconclusive and has not been sufficiently demonstrated to merit regular clinical use. Future human trials can elucidate the use of biologic augmentation in rotator cuff repairs.
机译:背景:退行性肩袖撕裂随着人口的老龄化而增加,并且手术后愈合不均匀。如果在手术过程中添加生物学因素,肩袖可能会显示出更好的愈合效果。问题/目的:我们问:(1)正常的骨腱修复涉及哪些细胞过程? (2)肌腱增大中正在开发哪些方法? (3)在增加生长因子的情况下正在开发哪些方法?方法:我们回顾了与肩袖修复相关的生物学增强和细胞过程相关的研究,重点研究了肩袖修复的动物模型和非随机人体试验。结果:正常的骨骼到肌腱愈合形成了肌腱和骨骼之间的纤维连接,这与原始的骨骼到肌腱连接不同。具有细胞成分的肌腱增强充当成纤维细胞的支架,并可能是生长因子和成纤维细胞的来源。细胞外基质为传入的成纤维细胞提供了一个支架,尽管目前的研究尚不能最终证实这些支架中的任何一种是否会增强修复,这部分是由于制造商之间的差异和有限的人类研究。生长因子和富含血小板的血浆在其他研究领域已确立,可能会增强修复作用,但尚未经过严格测试。结论:潜在的应用生物增强以改善肩袖修复后的愈合。但是,该领域的研究仍未得出结论,还没有充分证明值得定期临床使用。未来的人体试验可以阐明在肩袖修复中使用生物增强技术的可能性。

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