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椎间盘劳损及由此导致的无创治疗后 mRNA 表达阳性。

Disc strain and resulting positive mRNA expression from application of a noninvasive treatment.

机构信息

Optima Health Solutions International Corp., KKT International, Vancouver, BC, Canada.

出版信息

Spine (Phila Pa 1976). 2011 Jun 15;36(14):E921-8. doi: 10.1097/BRS.0b013e3181fd78b3.

DOI:10.1097/BRS.0b013e3181fd78b3
PMID:21289569
Abstract

STUDY DESIGN

Bovine caudal intervertebral discs were exposed to a noninvasive vibrating intervention for 10 minutes at amplitudes of 0 or 0.5 to 5 g and frequencies of 0, 16, 50 to 80, and a combined 16+50 to 80 Hz treatment. Expression of mRNA for aggrecan, collagen type I, collagen type II, biglycan, decorin, and versican were assayed.

OBJECTIVE

To determine if the intervention is effective in altering intervertebral disc gene expression.

SUMMARY OF BACKGROUND DATA

Studies have variously suggested either an increased risk of disc degeneration with vibrations, no effect, analgesic effect, or even positive effects within certain loading parameters. The KKT intervention is in clinical use for spinal ailment pain reduction.

METHODS

The intervention was applied in a clinic emulation set-up. Gene expression in the nucleus pulposus was assessed using real-time RT-PCR and SYBR Green chemistry.

RESULTS

Expression of mRNAs for aggrecan, collagen type II, and versican were significantly effected by the intervention. Collagen type I, biglycan, and decorin were uneffected.

CONCLUSION

Expression of the extracellular matrix genes were significantly up-regulated when vibrated with the intervention under specific loading patterns, indicating a potential therapeutic stimulus. Further studies on the protein-level and long-term effects are warranted. Previous studies have indicated a mixed effect of vibrations in the human spine. In this study, a clinical intervention using vibrations was applied to bovine intervertebral discs, and gene expression in the nucleus pulposus was measured. Several extracellular matrix genes were up-regulated, suggesting a potential therapeutic effect.

摘要

研究设计

牛尾椎间盘中枢在 0 或 0.5 至 5g 的振幅和 0、16、50 至 80、16+50 至 80Hz 的组合频率下接受非侵入性振动干预 10 分钟。测定了软骨聚糖、胶原 I、胶原 II、biglycan、decorin 和 versican 的 mRNA 表达。

目的

确定该干预是否有效改变椎间盘基因表达。

背景资料概要

研究表明,振动会增加椎间盘退变的风险,没有影响,有镇痛作用,甚至在某些加载参数下有积极作用。KKT 干预正在临床应用于减少脊柱疾病疼痛。

方法

干预在临床模拟装置中进行。采用实时 RT-PCR 和 SYBR Green 化学法测定核髓核中的基因表达。

结果

aggrecan、胶原 II 和 versican 的 mRNA 表达受到干预的显著影响。胶原 I、biglycan 和 decorin 不受影响。

结论

在特定加载模式下用干预进行振动时,细胞外基质基因的表达显著上调,表明存在潜在的治疗刺激。需要进一步研究蛋白质水平和长期效果。以前的研究表明,振动对人类脊柱有混合影响。在这项研究中,使用振动的临床干预应用于牛椎间盘中,测量了核髓核中的基因表达。一些细胞外基质基因上调,表明有潜在的治疗效果。

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