Department of Spine Surgery, Liaocheng People's Hospital, Liaocheng, Shandong, 25200, China.
Department of Orthopedic Surgery, Southwest Hospital, Third Military Medical University, Chongqing 400038, China.
Biosci Rep. 2017 Oct 11;37(5). doi: 10.1042/BSR20170718. Print 2017 Oct 31.
Nucleus pulposus (NP) cell senescence is a typical pathological feature within the degenerative intervertebral disc. As a potential inducing and aggregating factor of disc degeneration, mechanical overloading affects disc biology in multiple ways. The present study was to investigate the NP cell senescence-associated phenotype under intermittent high compression in an disc bioreactor culture, and the role of the p38-MAPK pathway in this regulatory process. Porcine discs were cultured in culture chambers of a self-developed mechanically active bioreactor and subjected to different magnitudes of dynamic compression (low-magnitude and high-magnitude: 0.1 and 1.3 MPa at a frequency of 1.0 Hz for 2 h per day respectively) for 7 days. Non-compressed discs were used as controls. The inhibitor SB203580 was used to study the role of the p38-MAPK pathway in this process. Results showed that intermittent high-magnitude compression clearly induced senescence-associated changes in NP cells, such as increasing β-galactosidase-positive NP cells, decreasing PCNA-positive NP cells, promoting the formation of senescence-associated heterochromatic foci (SAHF), up-regulating the expression of senescence markers (p16 and p53), and attenuating matrix production. However, inhibition of the p38-MAPK pathway partly attenuated the effects of intermittent high-magnitude (1.3 MPa) compression on those described NP cell senescence-associated parameters. In conclusion, intermittent high-magnitude compression can induce NP cell senescence-associated changes in an disc bioreactor culture, and the p38-MAPK pathway is involved in this process.
核髓细胞(NP)衰老(senescence)是退变椎间盘的一种典型病理特征。作为椎间盘退变的潜在诱导和聚集因素之一,机械超负荷通过多种方式影响椎间盘生物学。本研究旨在探讨在椎间盘生物反应器培养中,NP 细胞在间歇性高压缩下与衰老相关的表型,以及 p38-MAPK 通路在这一调控过程中的作用。将猪椎间盘培养在自行开发的机械活性生物反应器的培养室内,并分别施以低(0.1 MPa)、高(1.3 MPa)两种不同幅度的动态压缩(频率为 1.0 Hz,每天 2 h),共 7 天。未受压缩的椎间盘作为对照。使用抑制剂 SB203580 来研究 p38-MAPK 通路在这一过程中的作用。结果表明,间歇性高幅度压缩明显诱导 NP 细胞发生衰老相关变化,如增加β-半乳糖苷酶阳性 NP 细胞、减少 PCNA 阳性 NP 细胞、促进衰老相关异染色质焦点(SAHF)形成、上调衰老标志物(p16 和 p53)的表达,并减弱基质产生。然而,p38-MAPK 通路的抑制部分减弱了间歇性高幅度(1.3 MPa)压缩对上述 NP 细胞衰老相关参数的影响。总之,间歇性高幅度压缩可在椎间盘生物反应器培养中诱导 NP 细胞衰老相关变化,p38-MAPK 通路参与这一过程。