Department of Musculoskeletal Disorders, Faculty of Medicine and Surgery, University of Salerno, 84084 Baronissi, Italy.
Clinica Ortopedica, Ospedale San Giovanni di Dio e Ruggi d'Aragona, 84131 Salerno, Italy.
Cells. 2021 Nov 9;10(11):3081. doi: 10.3390/cells10113081.
The physical-chemical, structural, hydrodynamic, and biological properties of hyaluronic acid within tendons are still poorly investigated. Medical history and clinical applications of hyaluronic acid for tendinopathies are still debated. In general, the properties of hyaluronic acid depend on several factors including molecular weight. Several preclinical and clinical experiences show a good efficacy and safety profile of hyaluronic acid, despite the absence of consensus in the literature regarding the classification according to molecular weight. In in vitro and preclinical studies, hyaluronic acid has shown physical-chemical properties, such as biocompatibility, mucoadhesivity, hygroscopicity, and viscoelasticity, useful to contribute to tendon healing. Additionally, in clinical studies, hyaluronic acid has been used with promising results in different tendinopathies. In this narrative review, findings encourage the clinical application of HA in tendinopathies such as rotator cuff, epicondylitis, Achilles, and patellar tendinopathy.
肌腱中透明质酸的物理化学、结构、流体动力学和生物学特性仍未得到充分研究。透明质酸在治疗肌腱病方面的医学历史和临床应用仍存在争议。一般来说,透明质酸的性质取决于包括分子量在内的多种因素。一些临床前和临床经验表明,透明质酸具有良好的疗效和安全性,尽管在文献中缺乏根据分子量进行分类的共识。在体外和临床前研究中,透明质酸具有生物相容性、粘膜附着力、吸湿性和粘弹性等物理化学特性,有助于促进肌腱愈合。此外,在临床研究中,透明质酸在不同的肌腱病中已显示出有前途的结果。在这篇叙述性综述中,研究结果鼓励将 HA 临床应用于肩袖、肘、跟腱和髌腱等肌腱病。