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Fabrication of a novel whole tissue-engineered intervertebral disc for intervertebral disc regeneration in the porcine lumbar spine

机译:一种新型的全组织工程化椎间盘用于猪腰椎椎间盘再生的制备

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Tissue-engineered intervertebral discs (IVDs) have been proposed as a useful therapeutic strategy for the treatment of intervertebral disc degeneration (IDD). However, most studies have focused on fabrication and assessment of tissue-engineered IVDs in small animal models and the mechanical properties of the scaffolds are far below those of native human IVDs. The aim of this study was to produce a novel tissue-engineered IVD for IDD regeneration in the porcine lumbar spine. Firstly, a novel whole tissue-engineered IVD scaffold was fabricated using chitosan hydrogel to simulate the central nucleus pulposus (NP) structure, surrounded with a poly(butylene succinate- co -terephthalate) (PBST) fiber film for inner annulus fibrosus (IAF). And, a poly(ether ether ketone) (PEEK) ring was used to stimulate the outer annulus fibrosus (OAF). Then, the scaffolds were seeded with IVD cells and the cell-scaffold hybrids were transplanted into the porcine damaged spine and harvested at 4 and 8 weeks. In vitro cell experiments showed that IVD cells distributed and grew well in the scaffolds including porous hydrogel and PBST fibers. After implantation into pigs, radiographic and MRI images indicated that the tissue-engineered IVD construct could preserve the disc height in the case of discectomy as the normal disc height and maintain a large extracellular matrix and water content in the NP. Combined with the histological and gene expression results, it was concluded that the tissue-engineered IVD had similar morphological and histological structure to the natural IVD. Moreover, after implantation for 8 weeks, the tissue-engineered IVD showed a good compressive stress and elastic moduli, approaching those of natural porcine IVD. Therefore, the prepared tissue-engineered IVD construct had similar morphological and biofunctional properties to the native tissue. Also, the tissue-engineered IVD construct with excellent biocompatibility and mechanical properties provides a promising candidate for human IDD regeneration.
机译:已经提出组织工程化椎间盘(IVD)作为治疗椎间盘退变(IDD)的有用治疗策略。但是,大多数研究都集中在小型动物模型中组织工程化IVD的制造和评估上,而支架的机械性能远远低于天然人IVD。这项研究的目的是为猪腰椎IDD再生生产一种新型的组织工程IVD。首先,使用壳聚糖水凝胶制备新型的全组织工程体外诊断支架,以模拟髓核中央结构(NP),并用聚丁二酸丁二酸丁二酯-对苯二甲酸对苯二甲酸乙二酯(PBST)纤维膜包裹内环纤维(IAF) 。并且,使用聚醚醚酮(PEEK)环刺激外侧纤维环(OAF)。然后,将支架植入IVD细胞,然后将细胞-支架杂种移植到猪受损的脊柱中,并在4周和8周收获。体外细胞实验表明,IVD细胞在包括多孔水凝胶和PBST纤维的支架中分布并生长良好。植入猪后,放射线照相和MRI图像表明,组织工程化的IVD结构在进行椎间盘切除术时可以保持椎间盘高度为正常椎间盘高度,并在NP中保持较大的细胞外基质和水含量。结合组织学和基因表达结果,得出的结论是,组织工程IVD具有与天然IVD相似的形态和组织结构。此外,植入8周后,组织工程IVD显示出良好的压应力和弹性模量,接近天然猪IVD。因此,制备的组织工程IVD构建体具有与天然组织相似的形态和生物功能特性。同样,具有出色的生物相容性和机械性能的组织工程化IVD构建体为人类IDD再生提供了有希望的候选者。

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