首页> 外文期刊>Spine >Regeneration of intervertebral disc tissue by resorbable cell-free polyglycolic acid-based implants in a rabbit model of disc degeneration.
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Regeneration of intervertebral disc tissue by resorbable cell-free polyglycolic acid-based implants in a rabbit model of disc degeneration.

机译:通过可吸收的无细胞聚乙醇酸基植入物在兔椎间盘退变模型中再生椎间盘组织。

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STUDY DESIGN.: Different biologic strategies exist to treat degenerative disc disease. Tissue engineering approaches favor autologous chondrocyte transplantation. In our one-step-approach, a resorbable cell-free polyglycolic acid (PGA)-based implant is immersed in serum from whole blood and implanted into the disc defect directly after discectomy. OBJECTIVES.: The aim of our study was to investigate the capacity of a cell-free implant composed of a PGA felt, hyaluronic acid, and serum to recruit disc cells and stimulate repair tissue formation in vivo after microdiscectomy in a rabbit model. SUMMARY OF THE BACKGROUND DATA.: Disc tissue has a limited ability to regenerate after the degeneration process was once initiated. Therefore, we developed a cell-free resorbable implant that is able to attract local cells into the defect and induce proper repair tissue formation. METHODS.: The cell-free implant consisting of PGA and hyaluronic acid was immersed in allogenic serum and implanted into the disc defectafter discectomy in New Zealand white rabbits. One week and 6 months after the operation, the disc height index and the T2-weighted signal intensity index were determined using plane radiographs and magnetic resonance imaging. Finally, discs were explanted and investigated histologically. Animals with discectomy only served as controls. RESULTS.: In our animal studies, we could demonstrate that the T2-weighted signal intensity of the operated discs decreased in both groups 1 week after surgery. However, after 6 months, the T2-weighted signal intensity index increased by 45% in the implanted group whereas the index decreased further by 11% in the sham group. This corresponded to changes in the disc height index. Furthermore, the histologic examinations indicated cell migration into the defect and showed tissue regeneration. CONCLUSION.: The implantation of a cell-free PGA-hyaluronic acid implant immersed in serum after discectomy induces regeneration, resulting in improvement of the disc water content and preservation of the disc height 6 months after surgery.
机译:研究设计:存在多种治疗退行性椎间盘疾病的生物策略。组织工程方法有利于自体软骨细胞移植。在我们的一站式方法中,将基于可吸收的无细胞聚乙醇酸(PGA)的植入物浸入全血血清中,并在椎间盘切除术后立即将其植入椎间盘缺损中。目的:我们的研究目的是在兔模型的微盘切除术后,研究由PGA毡,透明质酸和血清组成的无细胞植入物募集椎间盘细胞并刺激体内修复组织形成的能力。背景数据概述:椎间盘组织一旦变性过程开始就具有有限的再生能力。因此,我们开发了一种无细胞可吸收的植入物,该植入物能够将局部细胞吸引到缺损中并诱导适当的修复组织形成。方法:将由PGA和透明质酸组成的无细胞植入物浸入同种异体血清中,并在新西兰白兔的椎间盘切除术后将其植入椎间盘缺损。术后1周和6个月,使用平面X射线照片和磁共振成像确定椎间盘高度指数和T2加权信号强度指数。最后,将椎间盘移出并进行组织学研究。椎间盘切除术的动物仅作为对照。结果:在我们的动物研究中,我们可以证明手术后1周,两组椎间盘的T2加权信号强度均降低。但是,在6个月后,植入组的T2加权信号强度指数增加了45%,而假手术组则进一步降低了11%。这对应于光盘高度索引的变化。此外,组织学检查表明细胞迁移到缺损中并显示出组织再生。结论:椎间盘切除术后将无细胞的PGA透明质酸植入物植入血清中可诱导再生,从而改善椎间盘水含量并在术后6个月保持椎间盘高度。

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