层状聚l -乳酸无细胞支架在兔肩袖缺损模型中的应用。

Atsuyuki Inui, Takeshi Kokubu, Hiroyuki Fujioka, Issei Nagura, Ryosuke Sakata, Hanako Nishimoto, Masaru Kotera, Takashi Nishino, Masahiro Kurosaka
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引用次数: 29

摘要

背景:本研究评估了层状无细胞聚l -乳酸(PLLA)支架在兔冈下肌腱缺损模型中的应用。我们假设没有培养细胞的PLLA支架可以再生组织,其机械性能与无肌腱缺损的冈下肌再植相似。方法:采用一边表面光滑,另一边表面绒毛整理的层状PLLA织物。将2块PLLA纤维叠加在一起,形成了一种新型的分层PLLA支架。32只家兔造出冈下肌腱缺损,移植PLLA支架,4只家兔作为正常对照。对侧冈下肌腱在肱骨头上再植,不植入支架。分别于术后4、8、16周进行组织学和力学评价。结果:术后4周,PLLA纤维间质出现细胞迁移。术后16周,以ⅲ型胶原为主的再生组织与骨直接连接。术后8周和16周,正常冈下肌腱组与支架组的最终失效负荷呈时间依赖性增加,差异无统计学意义。各时间点支架组与复接组间无差异。两组患者的僵硬度均无明显改善。结论:一种新型的层状PLLA支架具有诱导细胞向支架内迁移和桥接肌腱缺损的潜力,其力学特性与再附着的甘下肌腱模型相似。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Application of layered poly (L-lactic acid) cell free scaffold in a rabbit rotator cuff defect model.

Application of layered poly (L-lactic acid) cell free scaffold in a rabbit rotator cuff defect model.

Application of layered poly (L-lactic acid) cell free scaffold in a rabbit rotator cuff defect model.

Application of layered poly (L-lactic acid) cell free scaffold in a rabbit rotator cuff defect model.

Background: This study evaluated the application of a layered cell free poly (L-lactic acid) (PLLA) scaffold to regenerate an infraspinatus tendon defect in a rabbit model. We hypothesized that PLLA scaffold without cultivated cells would lead to regeneration of tissue with mechanical properties similar to reattached infraspinatus without tendon defects.

Methods: Layered PLLA fabric with a smooth surface on one side and a pile-finished surface on the other side was used. Novel form of layered PLLA scaffold was created by superimposing 2 PLLA fabrics. Defects of the infraspinatus tendon were created in 32 rabbits and the PLLA scaffolds were transplanted, four rabbits were used as normal control. Contralateral infraspinatus tendons were reattached to humeral head without scaffold implantation. Histological and mechanical evaluations were performed at 4, 8, and 16 weeks after operation.

Results: At 4 weeks postoperatively, cell migration was observed in the interstice of the PLLA fibers. Regenerated tissue was directly connected to the bone composed mainly of type III collagen, at 16 weeks postoperatively. The ultimate failure load increased in a time-dependent manner and no statistical difference was seen between normal infraspinatus tendon and scaffold group at 8 and 16 weeks postoperatively. There were no differences between scaffold group and reattach group at each time of point. The stiffness did not improve significantly in both groups.

Conclusions: A novel form of layered PLLA scaffold has the potential to induce cell migration into the scaffold and to bridge the tendon defect with mechanical properties similar to reattached infraspinatus tendon model.

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