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Updated: Oct 27, 2025

A Proinflammatory, Degenerative Organ Culture Model to Simulate Early-Stage Intervertebral Disc Disease.
Published on: February 14, 2021
Modic changes are associated with activation of intense inflammatory and host defense response pathways - molecular
S Rajasekaran1, Dilip Chand Raja Soundararajan1, Sharon Miracle Nayagam2
1Department of Spine Surgery, Ganga Hospital, 313, Mettupalayam road, Coimbatore, India.
Background Context:
Patients with modic changes (MC) form a distinct clinical subset with reports of higher intensity of pain, poor clinical and surgical outcomes and higher incidence of recurrence. MC also is an independent risk factor for increased post-operative surgical site infection.
Purpose:
This study aimed to investigate the biological changes at molecular level, in discs with MCs. We also aim to identify biological biomarkers and potential targets for molecular therapy.
Study Design:
Experimental analysis MATERIALS AND METHODS: Nucleus pulposus (NP) from 24 patients undergoing microdiscectomy for disc herniation [14 discs with MC and 10 without modic changes (NMC)] were procured. The overall expression of proteins, biological processes, protein-protein and metabolite interactions were analysed and compared. Host defense response proteins (HDRPs) and immunological pathways activated in patients with MC were documented and analysed.
Results:
Label-free proteomic approach with stringent filters revealed a total of 208 proteins in MC and 193 in NMC groups. 45 proteins were specific to MC; 30 to NMC and 163 common to both. Downregulated proteins in MC belonged to components of extracellular matrix such as collagens (COL- 6A1, 6A2, 6A3, 11A1, 12A1, and 20A1), and proteoglycans (versican (VCAN), and biglycan (BGN)). Inflammatory molecules [plasminogen (PLG), angiogenin (ANG), fibroblast growth factor-binding protein 2 (FGFBP2), tetranectin (CLEC3B), cartilage acidic protein 1(CRTAC1), kininogen (KNG-1), chitinase-3-like protein 2 (CHI3L2), and ferritin (FTL) were expressed only in the MC group. The significantly altered pathways in MC included Fc Fragment of IgG Receptor IIIa (FCGR3A)-mediated phagocytosis, regulation of Toll-like receptors (TLR) by endogenous ligand, neutrophil and platelet degranulation. 50 HDRPs were identified in the study, 14 of which were specific to MC and included acute phase reactants, antimicrobial peptides, complement cascade proteins, inflammatory molecule and stress response proteins. Metabolite-protein interaction analysis revealed a significant interaction between 19 proteins, specifically involving ubiquitin mediating proteasome degradative pathway and an association with the metabolite-glutamic acid in the MC group. Accumulation of glutamic acid in MC discs was confirmed by quantitative amino acid analysis using High-performance liquid chromatography.
Conclusion:
Our study confirms that MC represents an intense inflammatory status and activation of host defense response and immunological pathways. Downstream effects leading to ubiquitin mediated proteasomal degradation of ECM proteins and the resulting metabolites such as glutamic acid could cause excessive pain and needs further investigation.
Clinical Significance:
We have documented the expression of inflammatory molecules, immune mechanisms and host defense response proteins which throw molecular insights into the pathological mechanisms of MC. Further, ubiquitin mediated proteasomal degradation and accumulation of glutamate in discs with MC might serve as targets for molecular therapy.
Insights
Modic changes (MC) in the spine are linked to intense inflammation and immune responses. This may involve protein degradation and glutamate accumulation, potentially explaining increased pain in patients with MC.
Area of Science:
- Biochemistry
- Immunology
- Molecular Biology
Background:
- Modic changes (MC) are associated with increased pain, poor surgical outcomes, and higher infection risk.
- Patients with MC represent a distinct clinical subset requiring further investigation.
Purpose of the Study:
- To investigate molecular-level biological changes in discs with MC.
- To identify biomarkers and potential molecular therapy targets for MC.
Main Methods:
- Proteomic analysis of nucleus pulposus (NP) from 24 patients (14 MC, 10 non-MC).
- Comparison of protein expression, biological processes, and metabolite interactions.
- Identification and analysis of host defense response proteins (HDRPs) and immune pathways.
Main Results:
- 45 proteins were specific to MC, including inflammatory molecules and 14 specific HDRPs.
- Downregulated proteins in MC included extracellular matrix components like collagens and proteoglycans.
- MC discs showed altered immune pathways (e.g., FCGR3A-mediated phagocytosis, TLR regulation) and glutamate accumulation via ubiquitin-mediated proteasomal degradation.
Conclusions:
- MC is characterized by intense inflammation and activated host defense/immunological pathways.
- Ubiquitin-mediated degradation of ECM proteins and glutamate accumulation may contribute to pain in MC.
- These molecular changes offer potential targets for novel therapeutic strategies.
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