首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Tissue engineering of the intervertebral disc with cultured annulus fibrosus cells using atelocollagen honeycomb-shaped scaffold with a membrane seal (ACHMS scaffold).
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Tissue engineering of the intervertebral disc with cultured annulus fibrosus cells using atelocollagen honeycomb-shaped scaffold with a membrane seal (ACHMS scaffold).

机译:使用带有膜密封的蜂窝状胶原蜂窝状支架(ACHMS支架)对培养的纤维环细胞进行椎间盘的组织工程改造。

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摘要

The objective of the study was to investigate the regeneration of intervertebral discs after laser discectomy using tissue engineering procedures. Annulus fibrosus (AF) cells from the intervertebral discs of Japanese white rabbits were cultured in an atelocollagen honeycomb-shaped scaffold with a membrane seal (ACHMS scaffold), to produce a high-density, three-dimensional culture for up to 3 weeks. Although the DNA content in the scaffold increased at a lower rate than that in the monolayer culture, expression of type II collagen and glycosaminoglycan accumulation in the scaffold were at higher levels than in the monolayer. The AF cells that had been cultured in the scaffold for 7 days were allografted into the lacunae of intervertebral discs of recipients (40 rabbits, 14-16 weeks old; average weight, 3.2 kg), whose nucleus pulposus (NP) had been vaporised with an ICG dye-enhanced laser. The allografted cultured AF cells survived and produced hyaline-like cartilage. Furthermore, the narrowing of the intervertebral disc space of the cell-containing scaffold insertion groups was significantly inhibited after 12 post-operative weeks.
机译:该研究的目的是使用组织工程学方法研究激光椎间盘切除术后椎间盘的再生。将来自日本白兔椎间盘的纤维环(AF)细胞在带有膜封膜(ACHMS支架)的胶原胶原蜂窝状支架中进行培养,以产生高密度的三维培养物长达3周。尽管支架中的DNA含量以比单层培养低的速率增加,但是II型胶原蛋白的表达和支架中糖胺聚糖的积累水平高于单层。将在支架中培养了7天的AF细胞同种异体移植到受者的椎间盘间隙中(40只兔子,年龄14-16周;平均体重3.2千克),其髓核(NP)已被汽化。 ICG染料增强激光器。同种异体培养的AF细胞存活并产生透明样软骨。此外,术后12周后,含细胞支架插入组的椎间盘间隙变窄被明显抑制。

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