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Sustained release of magnesium ions mediated by injectable self-healing adhesive hydrogel promotes fibrocartilaginous interface regeneration in the rabbit rotator cuff tear model

机译:由可注射的自愈合粘合剂水凝胶介导的镁离子的持续释放促进了兔子旋转器袖带撕裂模型中的纤维纤维界面再生

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The fibrocartilaginous enthesis regeneration after rotator repair is still a major challenge. Although magnesium-based alloy orthopedic implant is effective to promote fibrocartilage formation at the tendon-bone interface in the anterior cruciate ligament reconstruction model, it was limited in the rotator cuff repair for its special anatomical structure. Herein, we developed a multifunctional self-healing magnesium ions-quaternized chitosan/Pluronic (R) F127 (Mg-QCS/PF) hydrogels to achieve in-situ and customized release of Mg2+, and demonstrated the sustained release of Mg2+ from the hydrogel to significantly promote the rotator cuff repair in the rabbit rotator cuff tear model. The obtained hydrogels showed excellent self-healing and anti-compressive performance. Additionally, the good injectability and adhesive properties of the hydrogels make it easier and stable to deliver Mg2+ at the tendon-bone interface with irregular shapes. The release of Mg2+ from Mg-QCS/PF hydrogels improved the adhesion, proliferation and migration of bone mesenchymal stem cells (BMSCs) and MC3T3 cells in vitro compared with QCS/PF without Mg2+. Furthermore, the composite hydrogels significantly enhanced the fibrocartilaginous interface regeneration in the rabbit rotator cuff tear model in terms of repaired tendon mature scores, fibrocartilage regeneration, collagen remodeling and biomechanical properties. This is the first study to demonstrate the positive effects of Mg2+ for the rotator cuff healing in the rabbit preclinical model, and the results indicate that the acellular injectable self-healing Mg-doped hydrogels are candidates to effectively promote in situ regeneration of rotator cuff.
机译:旋转器修复后的纤维纤维肠道再生仍然是一项重大挑战。虽然镁基合金整形面植入物有效地促进在前十字韧带重建模型中的肌腱骨界面处的纤维覆盖物形成,但它在其特殊解剖结构中受到旋转器袖带修复的限制。在此,我们开发了一种多功能的自愈镁离子 - 季铵化壳聚糖/ PLURONIC(R)F127(Mg-QCS / PF)水凝胶,以实现原位和定制的Mg2 +释放,并证明了来自水凝胶的持续释放Mg2 +至显着促进兔子肩带齿状撕裂模型中的旋转器袖带修复。所得水凝胶显示出优异的自我愈合和抗压缩性能。另外,水凝胶的良好可注射性和粘合性能使得在具有不规则形状的肌腱骨界面处递送Mg2 +更容易稳定。与Mg-QCS / PF水凝胶的Mg2 +释放来自Mg-QCS / PF水凝胶的粘附,增殖和迁移,与没有Mg2 +的QCS / PF的体外骨髓间充质干细胞(BMSC)和MC3T3细胞的粘附性,增殖和迁移。此外,复合水凝胶在修复的肌腱成熟分数,纤维覆物质再生,胶原重塑和生物力学特性方面显着增强了兔子旋转杆撕裂模型中的纤维纤维界面再生。这是第一项研究,用于证明兔临床前模型中的旋转器袖带愈合的Mg2 +的正效应,结果表明,无细胞内注射的自愈式Mg掺杂的水凝胶是有效促进转子袖带的原位再生的候选物。

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