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在施加动态静水压力后,源自退变椎间盘的人类细胞与源自非退变椎间盘的人类细胞反应不同。

Human cells derived from degenerate intervertebral discs respond differently to those derived from non-degenerate intervertebral discs following application of dynamic hydrostatic pressure.

作者信息

Le Maitre Christine Lyn, Frain Jennie, Fotheringham Andrew P, Freemont Anthony J, Hoyland Judith Alison

机构信息

Faculty of Health and Well Being, Biomedical Research Center, Sheffield Hallam University, Sheffield, UK.

出版信息

Biorheology. 2008;45(5):563-75.

Abstract

The intervertebral disc (IVD) is one of the body's most important load-bearing structures with the major mechanical force experienced in the nucleus pulposus (NP) being hydrostatic pressure (HP). Physiological levels of HP have an anabolic effect on IVD matrix metabolism in cells derived from non-degenerate animal and herniated IVD while excessive HP has a catabolic effect. However, no studies have investigated the response of non-degenerate and degenerate human disc cells derived from non-herniated discs to HP. Here we investigate the effect of physiological HP on such cells using a novel loading rig. Human IVD cells (both NP and AF) cultured in alginate were subjected to dynamic HP (0.8-1.7 MPa 0.5 Hz) for 2 h. Cell viability was assessed, RNA extracted and qRT-PCR for 18 s, c-fos, Sox-9, collagen type II, aggrecan and MMP-3 performed. Cell viability was unaffected by the loading regime. In non-degenerate NP cells, HP increased c-fos, aggrecan, Sox-9 and collagen type II (significantly so in the case of c-fos and aggrecan), but not MMP-3 gene expression. In contrast, application of HP to AF or degenerate NP cells had no effect on target gene expression. Our data shows that cells obtained from the healthy NP respond to dynamic HP by up-regulating genes indicative of healthy matrix homeostasis. However, responses differed in degenerate NP cells suggesting that an altered mechanotransduction pathway may be operational.

摘要

椎间盘(IVD)是人体最重要的承重结构之一,髓核(NP)所承受的主要机械力为静水压力(HP)。生理水平的HP对来自非退变动物和椎间盘突出症患者的IVD细胞的基质代谢具有合成代谢作用,而过高的HP则具有分解代谢作用。然而,尚无研究调查来自非突出椎间盘的非退变和退变人椎间盘细胞对HP的反应。在此,我们使用一种新型加载装置研究生理HP对这类细胞的影响。将培养在藻酸盐中的人IVD细胞(包括NP和AF)置于动态HP(0.8 - 1.7 MPa,0.5 Hz)下处理2小时。评估细胞活力,提取RNA,并对18 s、c - fos、Sox - 9、II型胶原蛋白、聚集蛋白聚糖和MMP - 3进行qRT - PCR检测。细胞活力不受加载方式的影响。在非退变的NP细胞中,HP增加了c - fos、聚集蛋白聚糖、Sox - 9和II型胶原蛋白(c - fos和聚集蛋白聚糖的增加尤为显著),但未影响MMP - 3基因表达。相比之下,对AF或退变的NP细胞施加HP对靶基因表达没有影响。我们的数据表明,从健康NP获得的细胞通过上调指示健康基质稳态的基因来响应动态HP。然而,退变NP细胞的反应有所不同,这表明机械转导途径可能发生了改变。

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