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肽纳米纤维和透明质酸混合膜在体内骨关节炎模型中的保护治疗作用。

Protective therapeutic effects of peptide nanofiber and hyaluronic acid hybrid membrane in in vivo osteoarthritis model.

机构信息

Institute of Materials Science and Nanotechnology, Nanotechnology Research Center (UNAM), Bilkent University, Ankara 06800, Turkey.

Department of Orthopedics and Traumatology, Gulhane Military Medical Academy, Ankara 06010, Turkey.

出版信息

Acta Biomater. 2018 Jun;73:263-274. doi: 10.1016/j.actbio.2018.04.015. Epub 2018 Apr 12.

Abstract

UNLABELLED

Osteoarthritis (OA) is a condition where tissue function is lost through a combination of secondary inflammation and deterioration in articular cartilage. One of the most common causes of OA is age-related tissue impairment because of wear and tear due to mechanical erosion. Hyaluronic acid-based viscoelastic supplements have been widely used for the treatment of knee injuries. However, the current formulations of hyaluronic acid are unable to provide efficient healing and recovery. Here, a nanofiber-hyaluronic acid membrane system that was prepared by using a quarter of the concentration of commercially available hyaluronic acid supplement, Hyalgan®, was used for the treatment of an osteoarthritis model, and Synvisc®, which is another commercially available hyaluronic acid containing viscoelastic supplement, was used as a control. The results show that this system provides efficient protection of arthritic cartilage tissue through the preservation of cartilage morphology with reduced osteophyte formation, protection of the subchondral region from deterioration, and maintenance of cartilage specific matrix proteins in vivo. In addition, the hybrid nanofiber membrane enabled chondrocyte encapsulation and provided a suitable culturing environment for stem cell growth in vitro. Overall, our results suggest that this hybrid nanofibrous scaffold provides a potential platform the treatment of OA.

STATEMENT OF SIGNIFICANCE

Osteoarthritis is a debilitating joint disease affecting millions of people worldwide. It occurs especially in knees due to aging, sport injuries or obesity. Although hyaluronic acid-based viscoelastic supplements are widely used, there is still no effective treatment method for osteoarthritis, which necessitates surgical operation as an only choice for severe cases. Therefore, there is an urgent need for efficient therapeutics. In this study, a nanofiber-HA membrane system was developed for the efficient protection of arthritic cartilage tissue from degeneration. This hybrid nanofiber system provided superior therapeutic activity at a relatively lower concentration of hyaluronic acid than Hyalgan® and Synvisc® gels, which are currently used in clinics. This work demonstrates for the first time that this hybrid nanofiber membrane scaffold can be utilized as a potential candidate for osteoarthritis treatment.

摘要

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骨关节炎(OA)是一种由于继发性炎症和关节软骨恶化导致组织功能丧失的疾病。OA 最常见的原因之一是由于机械侵蚀导致的磨损,与年龄相关的组织损伤。基于透明质酸的粘弹性补充剂已被广泛用于治疗膝关节损伤。然而,目前的透明质酸配方无法提供有效的治疗和恢复。在这里,使用商业化透明质酸补充剂 Hyalgan®的四分之一浓度制备了纳米纤维-透明质酸膜系统,用于治疗骨关节炎模型,并用另一种商业化的含粘弹性补充剂 Synvisc®作为对照。结果表明,该系统通过保持软骨形态、减少骨赘形成、保护软骨下区域免受恶化以及维持体内软骨特异性基质蛋白,为关节炎软骨组织提供了有效的保护。此外,杂交纳米纤维膜能够包封软骨细胞,并为干细胞在体外生长提供合适的培养环境。总的来说,我们的结果表明,这种杂交纳米纤维支架为 OA 的治疗提供了一个潜在的平台。

意义声明

骨关节炎是一种使人衰弱的关节疾病,影响着全世界数以百万计的人。它尤其发生在膝盖,由于衰老、运动损伤或肥胖。尽管基于透明质酸的粘弹性补充剂被广泛使用,但对于骨关节炎,仍然没有有效的治疗方法,这使得手术成为严重病例的唯一选择。因此,迫切需要有效的治疗方法。在这项研究中,开发了一种纳米纤维-HA 膜系统,用于有效保护关节炎软骨组织免受退化。与目前在临床上使用的 Hyalgan®和 Synvisc®凝胶相比,这种混合纳米纤维系统以相对较低的透明质酸浓度提供了更好的治疗效果。这项工作首次证明,这种混合纳米纤维膜支架可以作为骨关节炎治疗的潜在候选物。

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