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Effects of immobilization and dynamic compression on intervertebral disc cell gene expression in vivo.

机译:固定和动态压缩对体内椎间盘细胞基因表达的影响。

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STUDY DESIGN: An in vivo analysis of the intervertebral disc's cellular response to dynamic compression and immobilization was performed using a rat-tail model. OBJECTIVE: To assess the effects of immobilization and short-term dynamic compression on intervertebral disc cell expression of anabolic and catabolic genes. SUMMARY OF BACKGROUND DATA: Static compressive loads applied in vivo alter the composition of the disc matrix and cell viability in a dose-dependent manner. The effects of in vivo dynamic compression, which is a more physiologic load, and reported risk factor for low back pain have not been investigated. METHODS: An Ilizarov-type device was implanted on the rat tail and used to determine the effects from 72 hours of immobilization (n = 6), 2 hours of dynamic compression (1 MPa/0.2 Hz) (n = 8), and the coupled effect of immobilization followed by compression (n = 8). Real-time reverse transcription-polymerase chain reaction was used to measure changes in anabolic and catabolic gene levels relative to both internal control subjects and a sham-operated group (n = 7). RESULTS: Immobilization and dynamic compression affect anabolic and catabolic genes, with an overall downregulation of types 1 and 2 collagen and upregulation of aggrecanase, collagenase, and stromelysin in the anulus. The effects of immobilization and compression appear to be additive for collagen types 1 and 2 in the anulus, but not in the nucleus, and not for catabolic genes. CONCLUSIONS: Short-duration dynamic compression and immobilization alter gene expression in the rat disc. In studying the response of the disc to loading, it is necessary to look at both anabolic and catabolic pathways, and to consider strain history.
机译:研究设计:使用鼠尾模型对椎间盘对动态压缩和固定的细胞反应进行体内分析。目的:评估固定化和短期动态压缩对合成代谢和分解代谢基因椎间盘细胞表达的影响。背景数据概述:体内施加的静态压缩载荷以剂量依赖的方式改变椎间盘基质的组成和细胞活力。尚未研究体内动态压缩的作用,这是一种较大的生理负荷,并且尚未报告腰痛的危险因素。方法:将Ilizarov型装置植入大鼠尾巴,用于确定固定72小时(n = 6),动态压缩2小时(1 MPa / 0.2 Hz)(n = 8)的效果。固定后紧压的耦合效应(n = 8)。实时逆转录-聚合酶链反应用于测量相对于内部对照对象和假手术组(n = 7)的同化和分解代谢基因水平的变化。结果:固定化和动态压缩会影响合成代谢和分解代谢基因,总体上下调1型和2型胶原蛋白,并在肛门环中上调集合蛋白聚糖酶,胶原酶和基质溶菌素。固定和压缩的作用似乎对环的1型和2型胶原是加和的,但对核而言不是,对分解代谢基因没有影响。结论:短时动态压缩和固定改变了大鼠椎间盘中的基因表达。在研究椎间盘对负荷的反应时,有必要研究同化和分解代谢途径,并考虑应变历史。

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