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通过可生物降解的载胶原蛋白纳米纤维膜与三维打印骨锚定螺栓相结合来增强肌腱-骨愈合。

Enhancement of tendon-bone healing via the combination of biodegradable collagen-loaded nanofibrous membranes and a three-dimensional printed bone-anchoring bolt.

作者信息

Chou Ying-Chao, Yeh Wen-Lin, Chao Chien-Lin, Hsu Yung-Heng, Yu Yi-Hsun, Chen Jan-Kan, Liu Shih-Jung

机构信息

Department of Mechanical Engineering, Chang Gung University; Department of Orthopedic Surgery, Chang Gung Memorial Hospital.

Department of Orthopedic Surgery, Chang Gung Memorial Hospital.

出版信息

Int J Nanomedicine. 2016 Aug 25;11:4173-86. doi: 10.2147/IJN.S108939. eCollection 2016.

Abstract

A composite biodegradable polymeric model was developed to enhance tendon graft healing. This model included a biodegradable polylactide (PLA) bolt as the bone anchor and a poly(D,L-lactide-co-glycolide) (PLGA) nanofibrous membrane embedded with collagen as a biomimic patch to promote tendon-bone interface integration. Degradation rate and compressive strength of the PLA bolt were measured after immersion in a buffer solution for 3 months. In vitro biochemical characteristics and the nanofibrous matrix were assessed using a water contact angle analyzer, pH meter, and tetrazolium reduction assay. In vivo efficacies of PLGA/collagen nanofibers and PLA bolts for tendon-bone healing were investigated on a rabbit bone tunnel model with histological and tendon pullout tests. The PLGA/collagen-blended nanofibrous membrane was a hydrophilic, stable, and biocompatible scaffold. The PLA bolt was durable for tendon-bone anchoring. Histology showed adequate biocompatibility of the PLA bolt on a medial cortex with progressive bone ingrowth and without tissue overreaction. PLGA nanofibers within the bone tunnel also decreased the tunnel enlargement phenomenon and enhanced tendon-bone integration. Composite polymers of the PLA bolt and PLGA/collagen nanofibrous membrane can effectively promote outcomes of tendon reconstruction in a rabbit model. The composite biodegradable polymeric system may be useful in humans for tendon reconstruction.

摘要

为促进肌腱移植愈合,开发了一种复合可生物降解聚合物模型。该模型包括作为骨锚的可生物降解聚丙交酯(PLA)螺栓和嵌入胶原蛋白作为仿生贴片的聚(D,L-丙交酯-共-乙交酯)(PLGA)纳米纤维膜,以促进肌腱-骨界面整合。将PLA螺栓浸入缓冲溶液3个月后,测量其降解速率和抗压强度。使用水接触角分析仪、pH计和四氮唑还原试验评估体外生化特性和纳米纤维基质。通过组织学和肌腱拔出试验,在兔骨隧道模型上研究了PLGA/胶原蛋白纳米纤维和PLA螺栓对肌腱-骨愈合的体内疗效。PLGA/胶原蛋白共混纳米纤维膜是一种亲水性、稳定性和生物相容性良好的支架。PLA螺栓对肌腱-骨锚固具有耐久性。组织学显示,PLA螺栓在内侧皮质上具有足够的生物相容性,骨向内生长逐渐进行,且无组织过度反应。骨隧道内的PLGA纳米纤维还减少了隧道扩大现象,增强了肌腱-骨整合。PLA螺栓和PLGA/胶原蛋白纳米纤维膜的复合聚合物可有效促进兔模型中肌腱重建的效果。这种复合可生物降解聚合物系统可能对人类肌腱重建有用。

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