HSS Research Institute, Hospital for Special Surgery, 515 E 71st Street, New York, NY, 10021, USA.
Weill Cornell Graduate School of Medical Sciences, 1300 York Avenue, LC501, New York, NY, 10065, USA.
Sci Rep. 2021 Apr 15;11(1):8271. doi: 10.1038/s41598-021-87665-2.
Spontaneous mineralization of the nucleus pulposus (NP) has been observed in cases of intervertebral disc degeneration (IDD). Inflammatory cytokines have been implicated in mineralization of multiple tissues through their modulation of expression of factors that enable or inhibit mineralization, including TNAP, ANKH or ENPP1. This study examines the underlying factors leading to NP mineralization, focusing on the contribution of the inflammatory cytokine, TNF, to this pathologic event. We show that human and bovine primary NP cells express high levels of ANKH and ENPP1, and low or undetectable levels of TNAP. Bovine NPs transduced to express TNAP were capable of matrix mineralization, which was further enhanced by ANKH knockdown. TNF treatment or overexpression promoted a greater increase in mineralization of TNAP-expressing cells by downregulating the expression of ANKH and ENPP1 via NF-κB activation. The increased mineralization was accompanied by phenotypic changes that resemble chondrocyte hypertrophy, including increased RUNX2 and COL10A1 mRNA; mirroring the cellular alterations typical of samples from IDD patients. Disc organ explants injected with TNAP/TNF- or TNAP/shANKH-overexpressing cells showed increased mineral content inside the NP. Together, our results confirm interactions between TNF and downstream regulators of matrix mineralization in NP cells, providing evidence to suggest their participation in NP calcification during IDD.
椎间盘退变(IDD)病例中观察到髓核(NP)自发矿化。炎症细胞因子通过调节参与矿化的因子的表达,在多种组织的矿化中起作用,包括 TNAP、ANKH 或 ENPP1。本研究探讨了导致 NP 矿化的潜在因素,重点研究了炎症细胞因子 TNF 对这一病理事件的贡献。我们表明,人源和牛源原代 NP 细胞表达高水平的 ANKH 和 ENPP1,以及低水平或检测不到的 TNAP。转染 TNAP 的牛 NP 能够进行基质矿化,ANKH 敲低进一步增强了矿化。TNF 处理或过表达通过 NF-κB 激活下调 ANKH 和 ENPP1 的表达,促进 TNAP 表达细胞矿化的更大增加。增加的矿化伴随着类似于软骨细胞肥大的表型变化,包括 RUNX2 和 COL10A1 mRNA 的增加;反映了来自 IDD 患者样本的典型细胞变化。向 NP 内注射 TNAP/TNF-或 TNAP/shANKH 过表达细胞的椎间盘器官外植体显示 NP 内矿化含量增加。总之,我们的结果证实了 TNF 与 NP 细胞中基质矿化的下游调节剂之间的相互作用,为它们在 IDD 期间参与 NP 钙化提供了证据。