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首页> 外文期刊>PLoS One >Repetitive in vivo manual loading of the spine elicits cellular responses in porcine annuli fibrosi
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Repetitive in vivo manual loading of the spine elicits cellular responses in porcine annuli fibrosi

机译:在体内手动加载脊柱的重复引发猪醋栗纤维纤维中的细胞反应

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Back pain and intervertebral disc degeneration are prevalent, costly, and widely treated by manual therapies, yet the underlying causes of these diseases are indeterminate as are the scientific bases for such treatments. The present studies characterize the effects of repetitive in vivo manual loads on porcine intervertebral disc cell metabolism using RNA deep sequencing. A single session of repetitive manual loading applied to the lumbar spine induced both up- and down-regulation of a variety of genes transcribed by cells in the ventral annuli fibrosi. The effect of manual therapy at the level of loading was greater than at a level distant to the applied load. Gene ontology and molecular pathway analyses categorized biological, molecular, and cellular functions influenced by repetitive manual loading, with over-representation of membrane, transmembrane, and pericellular activities. Weighted Gene Co-expression Network Analysis discerned enrichment in genes in pathways of inflammation and skeletogenesis. The present studies support previous findings of intervertebral disc cell mechanotransduction, and are the first to report comprehensively on the repertoire of gene targets influenced by mechanical loads associated with manual therapy interventions. The present study defines the cellular response of repeated, low-amplitude loads on normal healthy annuli fibrosi and lays the foundation for future work defining how healthy and diseased intervertebral discs respond to single or low-frequency manual loads typical of those applied clinically.
机译:背部疼痛和椎间盘变性普遍,昂贵,并通过手动疗法普遍地来,但这些疾病的潜在原因是对此类治疗的科学碱是不确定的。本研究表征了使用RNA深度测序对Vivo手动载荷对猪椎间盘突出细胞代谢的影响。施用于腰椎的一次重复手动装载的单一会议诱导腹侧醋栗中细胞转录的各种基因的上调和下调。手动治疗在负荷水平下的影响大于与施加负荷的水平。基因本体和分子途径分析由重复手动负载影响的分类生物,分子和细胞功能,具有膜,跨膜和围手术活动的过度表示。加权基因共表达网络分析炎症和骨膜发生途径中的基因富集。本研究支持先前的椎间盘电池机械调节,并且是首次在与手动治疗干预相关的机械载荷影响的基因靶标的曲目中全面报告。本研究定义了正常健康的云纤维上重复,低振幅负荷的细胞响应,并为未来的工作奠定了基础,用于定义健康和患病的椎间盘如何响应临床应用的单一或低频手动负载。

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