Department of Orthopedics, Yangpu Hospital, Tongji University School of Medicine, Shanghai 200090, China.
Center for Clinical Research and Translational Medicine, Yangpu Hospital, Tongji University School of Medicine, Shanghai 200090, China.
Biomed Res Int. 2021 Jul 2;2021:4770792. doi: 10.1155/2021/4770792. eCollection 2021.
Nucleus pulposus (NP) is the core substance to maintain the homeostasis of intervertebral disc and stability of biomechanics. The insufficient supply of nutrition (especially glucose) is an important factor that leads to the degeneration of NP cells. circRNAs play an important role in the process of intervertebral disc degeneration (IDD) by regulating the functions of NP cells. However, glucose deprivation-related circRNAs and their functions in IDD have not been reported. In this study, the differentially expressed circRNAs in NP cells after 0, 6, 12, and 24 h of glucose deprivation culture were detected by a microarray assay. Besides, time series clustering analysis by STEM software obtained the differentially up- and downregulated circRNAs during glucose deficiency. Then, the main functions and pathways of up- and downregulated circRNAs were predicted by the functional enrichment analysis. By constructing the circRNA-miRNA regulatory network, the potential mechanisms of the most differentially expressed circRNAs were predicted. In addition, according to in vitro validation, circ_0075062 was upregulated in degenerating NP tissues and glucose deprivation-induced NP cell degeneration. Based on Sanger sequencing and RNase tolerance assay, circ_0075062 was the circular transcript. Interfering with circ_0075062 expression could potentially alleviate the imbalance of extracellular matrix (ECM) synthesis and degradation in the NP cells induced by glucose deprivation. Together, these findings help us gain a comprehensive understanding of the underlying mechanisms of IDD, and circ_0075062 may be a promising therapeutic target of IDD.
椎间盘的核(NP)是维持椎间盘内环境稳定和生物力学稳定的核心物质。营养(尤其是葡萄糖)供应不足是导致 NP 细胞退变的重要因素。circRNAs 通过调节 NP 细胞的功能在椎间盘退变(IDD)过程中发挥重要作用。然而,葡萄糖剥夺相关的 circRNAs 及其在 IDD 中的作用尚未报道。在这项研究中,通过微阵列分析检测了 NP 细胞在葡萄糖剥夺培养 0、6、12 和 24 小时后的差异表达 circRNAs。此外,STEM 软件的时间序列聚类分析获得了葡萄糖缺乏时差异上调和下调的 circRNAs。然后,通过功能富集分析预测差异表达 circRNAs 的主要功能和途径。通过构建 circRNA-miRNA 调控网络,预测了最差异表达 circRNAs 的潜在机制。此外,根据体外验证,circ_0075062 在退变的 NP 组织和葡萄糖剥夺诱导的 NP 细胞退变中上调。基于 Sanger 测序和 RNase 耐受试验,circ_0075062 是环状转录本。干扰 circ_0075062 的表达可能潜在地减轻葡萄糖剥夺诱导的 NP 细胞中细胞外基质(ECM)合成和降解失衡。总之,这些发现有助于我们全面了解 IDD 的潜在机制,circ_0075062 可能是 IDD 的有前途的治疗靶点。