Department of Joint Surgery and Sports Medicine, Zhongshan Hospital of Xiamen University, School of Medicine, Xiamen University, Xiamen, China.
Department of Orthopaedic Surgery, Xin Hua Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai, China.
Am J Sports Med. 2024 Dec;52(14):3520-3535. doi: 10.1177/03635465241296141. Epub 2024 Nov 20.
The insufficient regeneration of fibrocartilage at the tendon enthesis is the primary cause of retearing after surgical reattachment of the rotator cuff. Exosomes derived from bone marrow-derived mesenchymal stem cells (BMSC-Exos) and kartogenin (KGN) have been demonstrated to induce fibrocartilage formation. Loading drugs into exosomes may lead to a synergistic effect, significantly enhancing the inherent activity of both components. However, further investigation is necessary to determine whether loading KGN into BMSC-Exos could yield superior efficacy in promoting tendon enthesis healing.
To study the effect and mechanism of KGN-loaded BMSC-Exos (Kl-BMSC-Exos) on tendon enthesis repair and biomechanical properties in a rat rotator cuff injury (RCI) model.
Controlled laboratory study.
The characteristics and in vivo retention of exosomes were demonstrated using nanoflow cytometry, transmission electron microscopy, and in vivo imaging of a small animal. The differentiation markers of BMSCs were assessed through quantitative polymerase chain reaction and immunofluorescence assays. Unilateral supraspinatus tenotomy and repair were performed in rats to establish the RCI model. Gelatin sponges were utilized to contain and deliver exosomes. In total, 44 rats were randomly assigned to 4 groups: sham, RCI, BMSC-Exos, and Kl-BMSC-Exos. Tendon enthesis regeneration and biomechanical properties were evaluated 8 weeks after surgery. RNA sequencing of BMSCs was performed to elucidate the underlying mechanism through which Kl-BMSC-Exos enhance tendon enthesis healing.
No discernible disparities in fundamental characteristics were evident between BMSC-Exos and Kl-BMSC-Exos. Incorporating exosomes into a gelatin sponge extended the in vivo retention time from 7 to 14 days. Kl-BMSC-Exos were more effective in inducing differentiation markers of BMSCs, improving fibrocartilage regeneration, organizing collagen fiber arrangement, and enhancing the biomechanical properties of tendon enthesis. Furthermore, transcriptomics suggested that was involved in Kl-BMSC-Exos-mediated tendon enthesis healing by enhancing fibrocartilage regeneration.
The incorporation of exosomes into a gelatin sponge significantly enhances their in vivo retention time. Kl-BMSC-Exos can expedite the healing of RCI by enhancing chondrogenesis and fibrocartilage regeneration, providing more organized collagen fiber arrangement and superior biomechanical properties of the rotator cuff enthesis. The promotion of rotator cuff enthesis regeneration may contribute to enhancing the chondrogenic potential in BMSCs through Kl-BMSC-Exos-mediated upregulation of .
As a cell-free therapeutic approach, Kl-BMSC-Exos displayed a better therapeutic effect on tendon enthesis healing than BMSC-Exos did, and these can be used as a biologic augmentation to enhance the healing of rotator cuff enthesis.
冈上肌腱止点处纤维软骨再生不足是冈上肌腱修复术后再撕裂的主要原因。骨髓间充质干细胞(BMSC)来源的外泌体(BMSC-Exos)和 Kartogenin(KGN)已被证明能诱导纤维软骨形成。将药物载入外泌体可能会产生协同作用,显著提高两者成分的固有活性。然而,仍需要进一步研究,以确定在 BMSC-Exos 中加载 KGN 是否能在促进冈上肌腱止点愈合方面产生更好的效果。
研究负载 KGN 的 BMSC-Exos(Kl-BMSC-Exos)在大鼠冈上肌腱损伤(RCI)模型中对腱骨结合修复和生物力学特性的影响及作用机制。
对照实验室研究。
采用纳米流式细胞术、透射电子显微镜和小动物体内成像来证明外泌体的特征和体内保留情况。通过定量聚合酶链反应和免疫荧光检测来评估 BMSCs 的分化标志物。在大鼠中进行单侧冈上肌切断和修复,建立 RCI 模型。利用明胶海绵容纳和输送外泌体。共 44 只大鼠随机分为 4 组:假手术组、RCI 组、BMSC-Exos 组和 Kl-BMSC-Exos 组。术后 8 周评估腱骨结合再生和生物力学特性。通过 RNA 测序来研究 BMSCs,以阐明 Kl-BMSC-Exos 增强腱骨结合愈合的潜在机制。
BMSC-Exos 和 Kl-BMSC-Exos 之间在基本特征上没有明显差异。将外泌体载入明胶海绵可将其体内保留时间从 7 天延长至 14 天。Kl-BMSC-Exos 更能有效诱导 BMSCs 的分化标志物,促进纤维软骨再生,组织胶原纤维排列,增强冈上肌腱止点的生物力学性能。此外,转录组学研究表明,通过增强纤维软骨再生,在 Kl-BMSC-Exos 介导的腱骨结合愈合中涉及。
将外泌体载入明胶海绵可显著延长其体内保留时间。Kl-BMSC-Exos 通过增强软骨生成和纤维软骨再生,提供更有序的胶原纤维排列和更好的冈上肌腱止点生物力学性能,从而加速 RCI 的愈合。促进冈上肌腱止点再生可能有助于通过 Kl-BMSC-Exos 介导的上调来增强 BMSCs 的软骨形成潜力。
Kl-BMSC-Exos 作为一种无细胞治疗方法,在促进腱骨结合愈合方面比 BMSC-Exos 具有更好的治疗效果,可作为一种生物增强剂,增强冈上肌腱止点的愈合。