首页> 外文期刊>Journal of tissue engineering and regenerative medicine >Enhancing tissue repair in annulus fibrosus defects of the intervertebral disc: analysis of a bio-integrative annulus implant in an in-vivo ovine model
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Enhancing tissue repair in annulus fibrosus defects of the intervertebral disc: analysis of a bio-integrative annulus implant in an in-vivo ovine model

机译:增强椎间盘纤维环缺损的组织修复:在体内绵羊模型中生物整合性环植入物的分析

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Annulus fibrosus repair techniques for the intervertebral disc (IVD) address the unsolved problem of reherniation after IVD herniation and might facilitate the development of nucleus pulposus replacement techniques for IVD diseases. This study investigates the suitability of a bio-integrative annulus implant.Standardized box defects were applied to the annulus L3/4 and L4/5 of 16 sheep, followed by randomized insertion of the textile polyglycolic acid/polyvinylidene fluoride annulus implant in one of the defects. Explantation was conducted after 2, 6 and 12 weeks, followed by provocative pressure testing and histological analysis. At 2 weeks' follow-up, all specimens of the control defect group demonstrated uncontained herniated nucleus pulposus tissue in the annulus defects. For the treated specimens, the annulus implant consistently provided an effective barrier for herniating nucleus pulposus tissue, with no implant dislocation at all time-points. After 2 weeks, a homogeneous cell infiltration of the annulus implant was observed, leading to a progressive directional matrix build-up. Repair tissue thickness was significantly stronger with the annulus implant at all follow-ups (p < 0.01). No pronounced foreign body reaction and no difference in the amount of supra-annular scar tissue over the defect sites were observed. The implantation procedure inflicted annulus damage adjacent to the defect. At later time-points, however, no difference in comparison with the control defect group was evident. The investigated biointegrative annulus implant showed promising results with regard to biointegration, enhancement of repair tissue and function as a mechanical barrier in an ovine model. (c) 2013 The Authors. Journal of Tissue Engineering and Regenerative Medicine published by John Wiley & Sons, Ltd.
机译:椎间盘(IVD)纤维环修复技术解决了IVD疝后未解决的再生问题,并可能促进了IVD疾病的髓核替代技术的发展。这项研究调查了生物集成环植入物的适用性。将标准化的盒子缺损应用于16只羊的环L3 / 4和L4 / 5,然后将纺织的聚乙醇酸/聚偏二氟乙烯环植入物随机插入其中之一。缺陷。在第2、6和12周后进行移植,然后进行刺激性压力测试和组织学分析。随访2周时,对照组缺损组的所有标本均显示瓣环缺损处的髓核组织不完整。对于处理过的标本,环植入物始终为突出髓核组织提供有效的屏障,并且在所有时间点都没有植入物脱位。 2周后,观察到环植入物的均匀细胞浸润,导致渐进的方向性基质积聚。在所有随访中,瓣环植入物的修复组织厚度明显更强(p <0.01)。没有观察到明显的异物反应,并且在缺陷部位上没有观察到环上疤痕组织的数量差异。植入过程会在缺损处造成瓣环损伤。然而,在稍后的时间点,与对照组缺损组相比没有明显差异。研究的生物整合环植入物在生物整合,修复组织增强和在绵羊模型中作为机械屏障的功能方面显示出可喜的结果。 (c)2013作者。 John Wiley&Sons,Ltd.出版的《组织工程与再生医学杂志》。

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