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Adenovirus-mediated gene transfer to nucleus pulposus cells. Implications for the treatment of intervertebral disc degeneration.

机译:腺病毒介导的基因转移至髓核细胞。对椎间盘退变的治疗意义。

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STUDY DESIGN: In vitro and in vivo studies using a rabbit model were performed to determine the feasibility of adenovirus-mediated gene transfer to the intervertebral disc. OBJECTIVES: This study was conducted to determine whether it is possible to transfer genes to cells within the intervertebral disc by direct injection of an adenovirus and to determine the duration of gene expression obtained by this method. SUMMARY OF BACKGROUND DATA: Although growth factors have the potential to stimulate the regeneration of nucleus pulposus, sustained delivery of growth factors to a degenerated disc is clinically unfeasible with present technology. Novel approaches such as gene transfer should be investigated as possible solutions to this problem. METHODS: The lacZ marker gene was used to evaluate gene delivery to cells within intervertebral discs. For the in vitro study, cell cultures were established from the nucleus pulposus tissue of New Zealand white rabbits and infected with an adenovirus encoding the lacZ gene (Ad-lacZ). For the in vivo study, the anterior aspects of lumbar intervertebral discs were surgically exposed, and Ad-lacZ in saline solution was directly injected into the nucleus pulposus. An equal volume of saline only was injected into control discs. Expression of the transferred gene was detected by staining with 5-bromo-4-chloro-3-indolyl-beta-galactosidase (X-Gal). RESULTS: The in vitro experiments confirmed that nucleus pulposus cells were efficiently transduced by an adenoviral vector carrying the lacZ gene. In vivo injection of Ad-lacZ into the nucleus pulposus resulted in the transduction of a considerable number of cells. Marker gene expression in vivo persisted at an apparently undiminished level for at least 12 weeks. No staining was noted in control discs. CONCLUSIONS: The results show the feasibility of adenovirus-mediated gene transfer to the intervertebral disc. Expression of the marker gene persisted at least 12 weeks in vivo. This successful demonstration of exogenous gene transfer to the disc and sustained, long-term expression suggests that the adenoviral vector may be suitable for delivery of appropriate genes to the disc for the treatment of spinal disorders.
机译:研究设计:使用兔子模型进行了体外和体内研究,以确定腺病毒介导的基因转移到椎间盘的可行性。目的:本研究旨在确定是否可以通过直接注射腺病毒将基因转移到椎间盘内的细胞中,并确定通过这种方法获得的基因表达的持续时间。背景技术概述:尽管生长因子具有刺激髓核再生的潜力,但是用本技术在临床上不可行将生长因子持续递送至变性椎间盘。应该研究诸如基因转移之类的新方法,以解决该问题。方法:使用lacZ标记基因评估向椎间盘内细胞的基因传递。为了进行体外研究,从新西兰白兔的髓核组织建立细胞培养物,并用编码lacZ基因的腺病毒(Ad-lacZ)感染。对于体内研究,通过手术暴露腰椎间盘的前部,并将盐水溶液中的Ad-lacZ直接注射到髓核中。仅将等量的盐水注入对照盘中。通过用5-溴-4-氯-3-吲哚基-β-半乳糖苷酶(X-Gal)染色来检测转移的基因的表达。结果:体外实验证实,携带lacZ基因的腺病毒载体能有效地转导髓核细胞。将Ad-lacZ体内注射到髓核中导致大量细胞的转导。体内标记基因的表达以明显降低的水平持续了至少12周。在对照盘中未观察到染色。结论:结果显示了腺病毒介导的基因转移至椎间盘的可行性。标记基因的表达在体内持续至少12周。外源基因转移至椎间盘并持续长期表达的成功证明表明,腺病毒载体可能适合将适当的基因递送至椎间盘以治疗脊柱疾病。

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