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Resorbable plating system stabilizes tissue‐engineered intervertebral discs implanted ex vivo in canine cervical spines

机译:可吸收的电镀系统稳定了离体植入犬颈椎的组织工程化椎间盘

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Total disc replacement using tissue‐engineered intervertebral discs (TE‐IVDs) may offer a biological alternative to treat radiculopathy caused by disc degeneration. A composite TE‐IVD was previously developed and evaluated in rat tail and beagle cervical spine models in vivo. Although cell viability and tissue integration into host tissue were promising, significant implant displacement occurred at multiple spinal levels. The goal of the present study was to assess the effects of a resorbable plating system on the stiffness of motion segments and stability of tissue‐engineered implants subjected to axial compression. Canine motion segments from levels C2/C3 to C5/C6 were assessed as intact (CTRL), after discectomy (Dx), with an implanted TE‐IVD only (PLATE?), and with a TE‐IVD combined with an attached resorbable plate (PLATE+). Segments under PLATE+ conditions fully restored separation between endplates and showed significantly higher compressive stiffness than segments under PLATE? conditions. Plated segments partially restored more than 25% of the CTRL motion segment stiffness. Plate attachment also prevented implant extrusion from the disc space at 50% compressive strain, and this effect was more significant in segments from levels C3/C4 when compared to segments from level C5/C6. These results suggest that stabilization of motion segments via resorbable plating assists TE‐IVD retention in the disc space while allowing the opportunity for implants to fully integrate into the host tissue and achieve optimal restoration of spine biomechanics.
机译:使用组织工程化椎间盘(TE-IVD)进行全盘置换可能为治疗由椎间盘退变引起的神经根病提供生物学替代方法。先前已经开发了复合TE-IVD,并在大鼠尾巴和比格犬颈椎模型中进行了体内评估。尽管细胞活力和组织整合入宿主组织是有希望的,但是在多个脊柱水平上发生了明显的植入物移位。本研究的目的是评估可吸收平板系统对运动节段的刚度和承受轴向压缩的组织工程植入物稳定性的影响。从椎间盘切除术(Dx),仅植入TE-IVD(PLATE?),TE-IVD与附连的可吸收板结合后,从C2 / C3到C5 / C6的犬类运动段被评估为完整(CTRL) (板+)。在PLATE +条件下的管段完全恢复了端板之间的分离,并显示出比PLATE?下的管段明显更高的抗压刚度。条件。镀层部分恢复了CTRL运动部分刚度的25%以上。板连接还可以防止植入物以50%的压缩应变从椎间盘突出,并且与C5 / C6级相比,这种效果在C3 / C4级中更为明显。这些结果表明,通过可吸收的钢板稳定运动节段有助于TE-IVD保留在椎间盘间隙中,同时使植入物有机会完全整合到宿主组织中,并实现脊柱生物力学的最佳恢复。

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