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首页> 外文期刊>Cartilage >Differential Response of Bovine Mature Nucleus Pulposus and Notochordal Cells to Hydrostatic Pressure and Glucose Restriction
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Differential Response of Bovine Mature Nucleus Pulposus and Notochordal Cells to Hydrostatic Pressure and Glucose Restriction

机译:牛成熟髓核和NOTochordal细胞对静压压力和葡萄糖限制的差异响应

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Objective The nucleus pulposus of the human intervertebral disc contains 2 cell types: notochordal (NC) and mature nucleus pulposus (MNP) cells. NC cell loss is associated with disc degeneration and this process may be initiated by mechanical stress and/or nutrient deprivation. This study aimed to investigate the functional responses of NC and MNP cells to hydrostatic pressures and glucose restriction. Design Bovine MNP and NC cells were cultured in 3-dimensional alginate beads under low (0.4-0.8 MPa) and high (1.6-2.4 MPa) dynamic pressure for 24 hours. Cells were cultured in either physiological (5.5 mM) glucose media or glucose-restriction (0.55 mM) media. Finally, the combined effect of glucose restriction and high pressure was examined. Results Cell viability and notochordal phenotypic markers were not significantly altered in response to pressure or glucose restriction. MNP cells responded to low pressure with an increase in glycosaminoglycan (GAG) production while high pressure significantly decreased ACAN gene expression compared with atmospheric controls. NC cells showed no response in matrix gene expression or GAG production with either loading regime. Glucose restriction decreased NC cell TIMP-1 expression but had no effect on MNP cells. The combination of glucose restriction and high pressure only affected MNP cell gene expression, with decreased ACAN, Col2α1, and ADAMTS-5 expression. Conclusion This study shows that NC cells are more resistant to acute mechanical stresses than MNP cells and provides a strong rationale for future studies to further our understanding the role of NC cells within the disc, and the effects of long-term exposure to physical stresses.
机译:目的人椎间盘的核髓含有2种细胞类型:Notochordal(NC)和成熟核浆(MNP)细胞。 NC细胞损失与盘变性相关,并且该方法可以通过机械应力和/或营养剥夺来引发。本研究旨在探讨Nc和MNP细胞对静压压力和葡萄糖限制的功能反应。设计牛MNP和NC细胞在低(0.4-0.8MPa)下的3维藻酸盐珠粒中培养,高(1.6-2.4MPa)动态压力24小时。将细胞以生理(5.5mm)葡萄糖培养基或葡萄糖限制(0.55mm)培养物培养。最后,研究了葡萄糖限制和高压的综合作用。结果响应于压力或葡萄糖限制,不会显着改变细胞活力和据缺陷表型标记。 MNP细胞随着糖胺聚糖(GAG)生产的增加而响应低压,而高压与大气对照相比,高压显着降低了Acan基因表达。 NC细胞在基因表达或GAG生产中没有响应,具有负载制度。葡萄糖限制下降NC细胞TIMP-1表达,但对MNP细胞没有影响。葡萄糖限制和高压的组合仅受影响的MNP细胞基因表达,随着Acan,Col2α1和Adamts-5表达的降低。结论本研究表明,NC细胞比MNP细胞更耐受急性机械应力,为未来的研究提供了强烈的基本原理,以进一步了解椎间盘内NC细胞的作用,以及长期暴露在身体应激内的影响。

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