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Synthetic and degradable patches: an emerging solution for rotator cuff repair

机译:合成和可降解贴剂:修复肩袖的新兴解决方案

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摘要

The use of rotator cuff augmentation has increased dramatically over the last 10 years in response to the high rate of failure observed after non-augmented surgery. However, although augmentations have been shown to reduce shoulder pain, there is no consensus or clear guideline as to what is the safest or most efficacious material. Current augmentations, either available commercially or in development, can be classified into three categories: non-degradable structures, extra cellular matrix (ECM)-based patches and degradable synthetic scaffolds. Non-degradable structures have excellent mechanical properties, but can cause problems of infection and loss of integrity in the long-term. ECM-based patches usually demonstrate excellent biological properties in vitro, but studies have highlighted complications in vivo due to poor mechanical support and to infection or inflammation. Degradable synthetic scaffolds represent the new generation of implants. It is proposed that a combination of good mechanical properties, active promotion of biological healing, low infection risk and bio-absorption are the ideal characteristics of an augmentation material. Among the materials with these features, those processed by electrospinning have shown great promis. However, their clinical effectiveness has yet to be proven and well conducted clinical trials are urgently required.
机译:在过去的十年中,由于非隆胸手术后观察到的高失败率,肩袖增强术的使用已大大增加。然而,尽管已经证明了增强可以减轻肩部疼痛,但是关于什么是最安全或最有效的材料尚无共识或明确的指导原则。目前可商购的或正在开发中的增强剂可分为三类:不可降解的结构,基于细胞外基质(ECM)的贴片和可降解的合成支架。不可降解的结构具有出色的机械性能,但长期会引起感染和完整性丧失的问题。基于ECM的贴剂通常在体外表现出优异的生物学特性,但是研究强调由于不良的机械支持以及感染或炎症而导致的体内并发症。可降解的合成支架代表了新一代的植入物。提出了良好的机械性能,积极促进生物愈合,低感染风险和生物吸收的组合是增强材料的理想特征。在具有这些特征的材料中,通过静电纺丝加工的材料已显示出巨大的前景。然而,它们的临床有效性尚未得到证实,迫切需要进行良好的临床试验。

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