Submitted:
15 June 2026
Posted:
16 June 2026
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Abstract
Keywords:
1. Introduction
2. Methods: Literature Search and Study Selection
2.1. Redox Biology of Musculoskeletal Degeneration
2.2. Biochemical Mechanisms of Action of Ozone Therapy
2.2.1. Pharmacological Actions of Medical Ozone
2.2.2. Hormesis and Therapeutic Redox Modulation
2.3. Clinical Applications of Ozone Therapy in Intervertebral Disc Pathology
2.4. Clinical Application of Ozone Therapy in Knee Osteoarthritis
2.4.1. Knee Osteoarthritis
2.5. The Use of Ozone in Other Degenerative Musculoskeletric Diseases
4. Discussion
4.1. From Mechanistic Plausibility to Clinical Evidence: Bridging the Gap
4.2. Protocol Heterogeneity as a Structural Barrier to Synthesis
4.3. Blinding Challenges and the Contribution of Non-Specific Effects
4.4. Statistical Significance, Clinical Relevance, and the Absence of Structural Endpoints
4.5. Safety Data: Reassuring in Controlled Settings, Incomplete in Real-World Practice
4.6. Clinical Positioning and Evidence Hierarchy
5. Conclusions
Disclosure
References
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| Study | Year | Design | Condition | Sample | Key Finding | Follow-up |
| Ercalik T, Kilic M | 2020 | DB-RCT | Lumbar disc herniation | 60 | Ozone alone effective; adding steroids conferred no additional benefit | 1 month |
| Clavo B, et al. | 2021 | DB-RCT | Chronic discogenic LBP | 60 vs 60 vs surgery | Ozone: 20% required surgery vs 60% in oxygen group; significant reduction in hospital days and costs | Median 78 months |
| Kelekis A, et al. | 2022 | Non-inferiority RCT | Lumbar disc herniation with radiculopathy | 140 vs 140 | Ozone non-inferior to microdiscectomy for pain and disability; lower complication rate | 1 year |
| Sucuoğlu H, Soydaş N | 2021 | DB-RCT | Acute lumbar disc herniation | 38 | Paravertebral ozone effective as adjunctive treatment for acute LDH | 1 month |
| Rayegani SM, et al. | 2023 | RCT | Lumbosacral canal stenosis | N/A | Addition of ozone improved outcomes in spinal stenosis | Not specified |
| Yang Y, et al. | 2023 | DB-RCT | Chronic discogenic LBP | 120 | Ozone + steroid significantly superior at 3 and 6 months (VAS: 1.53 vs 3.82 at 3 mo; 2.80 vs 5.05 at 6 mo) | 6 months |
| Parvin R, et al. | 2024 | DB-RCT | Lumbar spinal stenosis | 30 | Ozone superior to steroids at 8 weeks (53.8% pain reduction); steroids faster initially | 8 weeks |
| Chang MC, et al. | 2024 | Systematic review & meta-analysis | Herniated lumbar disc | 6 RCTs | Intradiscal ozone effective for pain relief; comparable to other interventions | Various |
| Forogh B, Kazemi K | 2025 | DB-RCT | Chronic discogenic LBP | N/A | Ozone-oxygen injection effective vs pure oxygen control | N/A |
| Cao D, et al. | 2025 | Meta-analysis (8 RCTs) | Lumbosacral pain/disc herniation | 1,744 total | Ozone significantly reduced VAS (MD: −2.13) and ODI (MD: −0.79); superior short-term efficacy | Short-term |
| Study | Year | Design | Condition | Sample | Key Finding | Follow-up |
| Sucuoğlu H, Soydaş N | 2021 | DB-RCT | Acute lumbar disc herniation | 38 | Ozone effective as adjunct to conservative management | 1 month |
| Yang Y, et al. | 2023 | DB-RCT | Chronic discogenic LBP | 120 | Ozone + steroid superior at 3–6 months | 6 months |
| Parvin R, et al. | 2024 | DB-RCT | Lumbar spinal stenosis | 30 | Ozone superior to steroids at 8 weeks | 8 weeks |
| Forogh B, Kazemi K | 2025 | DB-RCT | Chronic discogenic LBP | N/A | Ozone-oxygen injection effective vs pure oxygen | N/A |
| Latini E, et al. | 2024 | Clinical evaluation | Chronic neck/LBP | N/A | Safe; sustained benefit over 6-month follow-up | 6 months |
| Study | Year | Design | Intervention | Sample | Key Finding | Follow-up |
| Farpour HR, et al. | 2021 | DB-RCT | Ozone prolotherapy vs saline | 70 | Ozone superior to saline for pain reduction and functional improvement | 6 months |
| Sconza C, et al. | 2023 | DB-RCT | Intra-articular ozone vs HA (3 injections each) | 60 | Both improved; ozone showed better cytokine reduction; comparable clinical efficacy | 6 months |
| Aslan SG, et al. | 2024 | Multicenter DB-RCT | Ultrasound-guided ozone vs corticosteroid injection | 82 | No significant difference between groups for pain, disability, or function | 6 months |
| Nazarieh M, et al. | 2024 | DB-RCT | Intra-articular ozone + exercise vs placebo + exercise | 33 (42 knees) | Ozone significantly superior at 6 weeks, 1 month, and 6 months (pain and KOOS) | 6 months |
| Arjmanddoust Z, et al. | 2025 | DB-RCT | Ozone 20 µg/mL vs 40 µg/mL vs oxygen control (4 weekly injections) | 59 | Both ozone doses effective vs control; no significant difference between concentrations | 2 months |
| Raeissadat SA, et al. | 2021 | RCT (4-arm) | Intra-articular ozone vs HA vs PRP vs PRGF | 200 | Ozone superior short-term (2 months); HA and PRP superior at 6–12 months | 12 months |
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