Department of Spinal Surgery, Luoyang Orthopedic Hospital of Henan Province, Luoyang, China.
Department of Intervention, Luoyang Orthopedic Hospital of Henan Province, Luoyang, China.
J Cell Physiol. 2020 Mar;235(3):2676-2686. doi: 10.1002/jcp.29171. Epub 2019 Sep 11.
Enzymatic decomposition of extracellular matrix and possibly local inflammation may cause intervertebral disc degeneration (IDD). MicroRNAs have been reported to correlate with the development of IDD. In this experiment, we aim at finding out the role of miR-181a in the inflammation of IDD and the underlying mechanism. The targeting relationship between miR-181a and tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) was verified. Following the establishment of IDD mouse models, disc height index (DHI) and the change of DHI (%DHI) were measured. The functional role of miR-181a in IDD was determined using ectopic expression and depletion and reporter assay experiments. Expression of miR-181a, TRAIL, extracellular signal-regulated kinase (ERK) pathway-related genes and inflammatory factors was evaluated. Also, the expression of collagen I and collagen II was observed. miR-181a directly targeted TRAIL. IDD mice exhibited significant degeneration of the intervertebral disc. miR-181a was downregulated while TRAIL was upregulated in mice with IDD. miR-181a upregulation and the ERK pathway inhibition could reduce expression of TRAIL, ERK pathway-related genes, inflammatory factors, and collagen I, but promote collagen II expression. Our results reveal that upregulation of miR-181a protects against inflammatory response by inactivating the ERK pathway via suppression of TRAIL in IDD mice. These results point to miR-181a as a potential therapeutic target for the clinical management of IDD.
细胞外基质的酶解和局部炎症可能导致椎间盘退行性变(IDD)。已有研究报道,microRNAs 与 IDD 的发生发展相关。本实验旨在探讨 miR-181a 在 IDD 炎症中的作用及其潜在机制。验证了 miR-181a 与肿瘤坏死因子相关凋亡诱导配体(TRAIL)的靶向关系。建立 IDD 小鼠模型后,测量椎间盘高度指数(DHI)和 DHI 的变化(%DHI)。通过异位表达和耗竭以及报告基因检测实验确定 miR-181a 在 IDD 中的功能作用。评估 miR-181a、TRAIL、细胞外信号调节激酶(ERK)通路相关基因和炎症因子的表达。同时,观察胶原 I 和胶原 II 的表达。miR-181a 可直接靶向 TRAIL。IDD 小鼠的椎间盘明显退变。IDD 小鼠的 miR-181a 下调而 TRAIL 上调。miR-181a 的上调和 ERK 通路的抑制可降低 TRAIL、ERK 通路相关基因、炎症因子和胶原 I 的表达,但促进胶原 II 的表达。研究结果表明,miR-181a 通过抑制 TRAIL 使 ERK 通路失活,从而防止 IDD 小鼠发生炎症反应。这些结果表明 miR-181a 可能成为 IDD 临床治疗的潜在靶点。