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用于肌腱断裂修复的载有强力霉素、胶原蛋白和布比卡因的三层聚乳酸-乙醇酸纳米纤维支架

Tri-Layered Doxycycline-, Collagen- and Bupivacaine-Loaded Poly(lactic--glycolic acid) Nanofibrous Scaffolds for Tendon Rupture Repair.

作者信息

Yu Yi-Hsun, Shen Shih-Jyun, Hsu Yung-Heng, Chou Ying-Chao, Yu Ping-Chun, Liu Shih-Jung

机构信息

Bone and Joint Research Center, Department of Orthopedic Surgery, Chang Gung Memorial Hospital at Linkou, Taoyuan 33305, Taiwan.

Department of Anesthesiology, Chang Gung Memorial Hospital at Linkou, Taoyuan 33305, Taiwan.

出版信息

Polymers (Basel). 2022 Jun 29;14(13):2659. doi: 10.3390/polym14132659.

Abstract

Achilles tendon rupture is a severe injury, and its optimal therapy remains controversial. Tissue engineering scaffolds play a significant role in tendon healing and tissue regeneration. In this study, we developed tri-layered doxycycline/collagen/bupivacaine (DCB)-composite nanofibrous scaffolds to repair injured Achilles tendons. Doxycycline, collagen, and bupivacaine were integrated into poly(lactic--glycolic acid) (PLGA) nanofibrous membranes, layer by layer, using an electrospinning technique as healing promoters, a 3D scaffold, and painkillers, respectively. After spinning, the properties of the nanofibrous scaffolds were characterized. In vitro drug discharge behavior was also evaluated. Furthermore, the effectiveness of the DCB-PLGA-composite nanofibers in repairing ruptured Achilles tendons was investigated in an animal tendon model with histological analyses. The experimental results show that, compared to the pristine PLGA nanofibers, the biomolecule-loaded nanofibers exhibited smaller fiber size distribution and an enhanced hydrophilicity. The DCB-composite nanofibers provided a sustained release of doxycycline and bupivacaine for over 28 days in vivo. Additionally, Achilles tendons repaired using DCB-composite nanofibers exhibited a significantly higher maximum load-to-failure than normal tendons, suggesting that the biomolecule-incorporated nanofibers are promising scaffolds for repairing Achilles tendons.

摘要

跟腱断裂是一种严重损伤,其最佳治疗方法仍存在争议。组织工程支架在肌腱愈合和组织再生中发挥着重要作用。在本研究中,我们制备了三层强力霉素/胶原蛋白/布比卡因(DCB)复合纳米纤维支架来修复受损的跟腱。分别使用静电纺丝技术将强力霉素、胶原蛋白和布比卡因作为愈合促进剂、三维支架和止痛剂逐层整合到聚乳酸-乙醇酸共聚物(PLGA)纳米纤维膜中。纺丝后,对纳米纤维支架的性能进行了表征。还评估了体外药物释放行为。此外,通过组织学分析在动物肌腱模型中研究了DCB-PLGA复合纳米纤维修复断裂跟腱的有效性。实验结果表明,与原始PLGA纳米纤维相比,负载生物分子的纳米纤维具有更小的纤维尺寸分布和增强的亲水性。DCB复合纳米纤维在体内能持续释放强力霉素和布比卡因超过28天。此外,使用DCB复合纳米纤维修复的跟腱的最大破坏载荷明显高于正常肌腱,这表明掺入生物分子的纳米纤维是修复跟腱的有前景的支架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/01f4/9269609/47c08af5d2f5/polymers-14-02659-g001.jpg

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