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Effects of Oxygen Concentration and Culture Time on Porcine Nucleus Pulposus Cell Metabolism: An in vitro Study

机译:氧浓度和培养时间对猪髓核细胞代谢的影响:体外研究

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摘要

Low back pain is a common ailment that affects millions of individuals each year and is linked to degeneration of the intervertebral discs in the spine. Intervertebral disc degeneration is known to result from an imbalance in anabolic and catabolic activity by disc cells. Due to the avascular nature of the intervertebral disc, oxygen deficiency may occur in the central nucleus pulposus (NP). The resulting hypoxia affects matrix regulation and energy metabolism of disc cells, although the mechanisms are not fully understood. This study investigates in vitro glucose consumption and gene expression by NP cells over time under varying oxygen tensions. Notochordal porcine NP cells were cultured in agarose discs at 21, 5, or 1% oxygen tension for 1, 5, or 10 days. The expression of 10 key matrix genes, as well as Brachyury (T), by NP cells was analyzed using RT-PCR. Glucose consumption was measured using a two-point method. Results show that culture time and oxygen tension significantly affect glucose consumption rates by porcine NP cells. There were also significant changes in T expression based on oxygen level and culture time. The 1% oxygen tension had a significantly higher T expression on day 10 than the other two groups, which may indicate a better maintenance of the notochordal phenotype. MMP 1 and 13 expression increased over time for all groups, while only the 5% group showed an increase over time for MMP 3. TIMP expression followed the direction of MMPs but to a lesser magnitude. Five percent and twenty-one percent oxygen tensions led to decreases in anabolic gene expression while 1% led to increases. Oxygen concentration and culture time significantly impacted glucose consumption rate and the gene expression of matrix regulatory genes with hypoxic conditions most accurately maintaining the proper NP phenotype. This information is valuable not only for understanding disc pathophysiology, but also for harnessing the potential of notochordal NP cells in therapeutic applications.
机译:腰背痛是一种常见的疾病,每年会影响数以百万计的人,并且与脊柱椎间盘退变有关。椎间盘退变已知是由于椎间盘细胞的合成代谢和分解代谢活性不平衡所致。由于椎间盘的无血管特性,缺氧可能发生在髓核中央(NP)。产生的缺氧会影响椎间盘细胞的基质调节和能量代谢,尽管其机理尚不完全清楚。这项研究调查了在不同的氧气张力下,NP细胞随时间的体外葡萄糖消耗和基因表达。将猪脊索NP细胞在琼脂糖圆盘中以21%,5%或1%的氧气张力培养1、5或10天。使用RT-PCR分析了NP细胞表达的10个关键矩阵基因以及Brachyury(T)。使用两点法测量葡萄糖消耗。结果表明,培养时间和氧气张力显着影响猪NP细胞的葡萄糖消耗率。基于氧气水平和培养时间,T表达也有显着变化。 1%的氧张力在第10天的T表达明显高于其他两组,这可能表明脊索表型的维持性更好。所有组的MMP 1和13表达随时间增加,而只有5%组显示MMP 3随时间增加。TIMP表达遵循MMP的方向,但幅度较小。 5%和21%的氧气张力导致合成代谢基因表达下降,而1%的氧气紧张导致上升。氧气浓度和培养时间显着影响葡萄糖消耗率,并且在缺氧条件下基质调节基因的基因表达最准确地保持了适当的NP表型。该信息不仅对于了解椎间盘的病理生理学,而且对于利用脊索NP细胞在治疗应用中的潜力都是有价值的。

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