Yu Xiao-Jun, Zou Peng, Li Tian-Qi, Bai Xiao-Fan, Wang Shan-Xi, Guan Jian-Bin, Zhao Yuan-Ting, Li Meng-Wei, Wang Xiaodong, Wang Ying-Guang, Hao Ding-Jun
Department of Spine Surgery, Honghui Hospital, Xi'an Jiaotong University, No.555 Friendship East Road, South Gate, Beilin District, Xi'an, 710054, Shaanxi, China.
Shaanxi Key Laboratory of Spine Bionic Treatment, No.555 Friendship East Road, South Gate, Beilin District, Xi'an, Shaanxi, China.
Cell Biol Toxicol. 2025 Jan 18;41(1):33. doi: 10.1007/s10565-024-09948-4.
This study delved into the molecular mechanisms underlying mechanical stress-induced intervertebral disc degeneration (msi-IDD) through single-cell and high-throughput transcriptome sequencing in mouse models and patient samples. Results exhibited an upsurge in macrophage presence in msi-IDD intervertebral disc (IVD) tissues, with secreted phosphoprotein 1 (SPP1) identified as a pivotal driver exacerbating degeneration via the protein kinase RNA-like endoplasmic reticulum kinase/ activating transcription factor 4/ interleukin-10 (PERK/ATF4/IL-10) signaling axis. Inhibition of SPP1 demonstrated promising outcomes in mitigating msi-IDD progression in both in vitro and in vivo models. These findings underscore the therapeutic promise associated with the modulation of the PERK signaling pathway in IDD, shedding light on the pathogenesis of msi-IDD and proposing a promising avenue for intervention strategies.
本研究通过对小鼠模型和患者样本进行单细胞和高通量转录组测序,深入探究了机械应力诱导的椎间盘退变(msi-IDD)的分子机制。结果显示,msi-IDD椎间盘(IVD)组织中的巨噬细胞数量增加,分泌性磷蛋白1(SPP1)被确定为通过蛋白激酶RNA样内质网激酶/激活转录因子4/白细胞介素10(PERK/ATF4/IL-10)信号轴加剧退变的关键驱动因素。在体外和体内模型中,抑制SPP1均显示出减轻msi-IDD进展的良好效果。这些发现强调了调节PERK信号通路在IDD治疗中的前景,揭示了msi-IDD的发病机制,并为干预策略提出了一条有前景的途径。