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Injection of a polymerized hyaluronic acid/collagen hydrogel matrix in an in vivo porcine disc degeneration model

机译:在体内猪椎间盘退变模型中注射聚合的透明质酸/胶原水凝胶基质

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IntroductionDisc degeneration and re-herniation after nucleotomy procedures are common problems. Simultaneous application of hyaluronic acid (HA)-based matrix has been proposed to limit disc degeneration. This, however, is hampered by loss of the substituted matrix out of the disc. Hence, in situ polymerization of the injected matrix with ultraviolet light (UVL) directly used after injection may be useful. Therefore, this study evaluates a new HA/collagen hydrogel matrix with in situ polymerization after implantation in an established porcine nucleotomy model.Materials and methods12 mature minipigs were used. A total of 60 lumbar discs were analyzed. 36 discs underwent partial nucleotomy with a 16G biopsy needle. Of those, 24 discs received matrix (porcine nucleus pulposus collagenous scaffold component and chemically modified HA) which was in situ polymerized using UVL immediately after transplantation. 12 nucleotomized discs and 24 non-nucleotomized discs served as controls. After 24?weeks, animals were killed. X-rays, MRIs, histology, and gene expression analysis were done.ResultsDisc height was reduced equally after sole nucleotomy and nucleotomy with HA treatment and in MRIs signal intensity decreased. For both nucleotomy groups, the nucleus histo-degeneration score showed a significant increase compared to controls. In histology, HA treatment resulted in more scarring and inflammation in the annulus. Gene expression of catabolic MMPs was up-regulated, whereas IFN-gamma, IL-6, and IL-1b were unchanged.ConclusionAlthough nucleotomy and administration of the implant material did not cause generalized inflammation of the disc, localized annular damage with annulus inflammation and scarring resulted in detrimental degenerative disc changes. As a result, therapeutic strategies should strongly focus on the prevention of annular damage or techniques for annular repair to remain disc integrity...
机译:引言进行核切除后的光盘变性和再疝是常见的问题。已经提出了同时使用透明质酸(HA)基基质来限制椎间盘退变。然而,这被替换的矩阵从盘中丢失所阻碍。因此,在注入后直接使用紫外光(UVL)对注入的基质进行原位聚合可能是有用的。因此,本研究评估了一种新的HA /胶原蛋白水凝胶基质,该基质在植入的猪解剖学模型中植入后就地聚合。使用了材料和方法12种成熟的小型猪。总共分析了60个腰间盘。用16G活检针对36枚椎间盘进行部分切除。其中24个椎间盘接受基质(猪髓核胶原支架成分和化学修饰的HA),该基质在移植后立即使用UVL原位聚合。将12个去核的盘和24个非去核的盘用作对照。 24周后,杀死动物。结果X线片,MRI,组织学和基因表达分析均得到结果。结果:单独进行核切和经HA治疗后,椎间盘高度均降低,MRI的信号强度降低。与对照组相比,对于两个去核手术组,组织核变性评分均显着提高。在组织学上,HA治疗导致环上更多的疤痕和炎症。分解代谢的MMPs的基因表达上调,而IFN-γ,IL-6和IL-1b不变。瘢痕形成有害的退行性椎间盘改变。因此,治疗策略应重点关注预防环形损伤或环形修复技术以保持椎间盘完整性。

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