Related Experiment Video
Updated: Jul 18, 2025

Cerebrospinal Fluid MicroRNA Profiling Using Quantitative Real Time PCR
Published on: January 22, 2014
Screening of miR-15a-5p as a potential biomarker for intervertebral disc degeneration through RNA-sequencing
Yongjin Li1, Chao Kong1, Wei Wang1
1Department of Orthopedics, Xuanwu Hospital, Capital Medical University, No. 45 Changchun Street, Xicheng District, Beijing, China; National Clinical Research Center for Geriatric Diseases, Beijing, China.
Abstract:
Low back pain (LBP) is a prevalent clinical condition that imposes substantial economic burdens on society. Intervertebral disc degeneration (IVDD) is recognized as a major contributing factor to LBP. Recent studies have highlighted the pivotal role of microRNAs (miRNAs) in regulating the onset and progression of IVDD. Understanding the involvement of miRNAs in IVDD will expand our knowledge of the underlying mechanisms and potentially identify novel therapeutic targets for managing LBP. However, the pathological process of IVDD and the miRNA-mediated pathomechanism in IVDD remain unclear. Herein, we comprehensively analyzed and divided the pathological process of IVDD into three stages based on the analysis by Risbud and colleagues. Results showed that IVDD was especially associated with cell death, oxidative stress, inflammatory and immune response, and extracellular matrix (ECM) metabolism. Subsequently, we obtained human normal and degenerative nucleus pulposus tissues, which were visually confirmed through histological staining techniques such as HE and TUNEL staining. RNA sequencing was then performed on these tissue samples. Additionally, miRNA (GSE116726) and mRNA (GSE56081/GSE70362/GSE23130/GSE34095) datasets were collected from the GEO database. Our analysis revealed that miR-15a-5p was significantly upregulated IVDD, as validated by both RNA sequencing and qRT-PCR experiments. To further refine our findings, bioinformatics analysis was conducted, merging the targets of miR-15a-5p and multiple mRNA datasets, ultimately identifying the overlapping IVDD-associated mRNAs. Notably, many cuproptosis-related genes (CRGs), ferroptosis-related genes, oxidative stress-related genes, and immunity-related genes were potential targets of miR-15a-5p. The miR-15a-5p-mRNA network was constructed using Cytoscape software. Additionally, PPI, functional, and pathway enrichment analyses of the CRGs were also performed. We found that MTF1, one of the CRGs, was highly expressed in IVDD and primarily localized in the nucleus of nucleus pulposus cells. These findings suggest that miR-15a-5p is a potential biomarker in IVDD, and targeting the miR-15a-5p-mRNA signaling pathway may be a promising strategy for treating IVDD diseases.
Insights
Low back pain linked to intervertebral disc degeneration (IVDD) may involve microRNAs (miRNAs). This study identifies miR-15a-5p as a potential biomarker and therapeutic target for IVDD, offering new insights into LBP treatment.
Area of Science:
- Biochemistry
- Genetics
- Molecular Biology
Background:
- Low back pain (LBP) is a significant health issue, often caused by intervertebral disc degeneration (IVDD).
- MicroRNAs (miRNAs) are increasingly recognized for their role in IVDD pathogenesis, but specific mechanisms remain unclear.
- Understanding miRNA involvement is crucial for identifying novel therapeutic targets for LBP.
Purpose of the Study:
- To investigate the role of miRNAs in IVDD.
- To identify specific miRNAs and their associated pathways involved in IVDD.
- To explore potential therapeutic targets for LBP stemming from IVDD.
Main Methods:
- Analysis of pathological processes in IVDD, including cell death, oxidative stress, inflammation, and ECM metabolism.
- Histological examination (HE, TUNEL) of human nucleus pulposus tissues.
- RNA sequencing and bioinformatics analysis of miRNA (GSE116726) and mRNA (GSE56081/GSE70362/GSE23130/GSE34095) datasets.
- Validation of miR-15a-5p expression using qRT-PCR.
Main Results:
- IVDD is associated with cell death, oxidative stress, inflammation, and altered ECM metabolism.
- miR-15a-5p was significantly upregulated in IVDD tissues.
- Bioinformatics analysis identified numerous IVDD-associated mRNAs targeted by miR-15a-5p, including cuproptosis-related genes (CRGs), ferroptosis-related genes, oxidative stress-related genes, and immunity-related genes.
- MTF1, a CRG, was highly expressed in IVDD and localized to the nucleus of nucleus pulposus cells.
Conclusions:
- miR-15a-5p is a potential biomarker for IVDD.
- The miR-15a-5p-mRNA signaling pathway, particularly involving CRGs like MTF1, plays a role in IVDD.
- Targeting the miR-15a-5p-mRNA pathway presents a promising therapeutic strategy for IVDD-related LBP.

