Effect of Systemic Ozone Therapy on Corneal Endothelium (OZON-CORNEA)
Effect of Systemic Ozone Therapy on Corneal Endothelium: A Prospective Controlled Cohort Study With Specular Microscopy
This study evaluates the safety of systemic ozone therapy on the corneal endothelium, a vital non-renewable tissue that maintains corneal transparency. Ozone therapy is increasingly used for chronic pain, osteoarthritis, fibromyalgia, and other conditions due to its immune-modulating and antioxidant effects. However, its impact on the corneal endothelium has not been thoroughly investigated.
This prospective controlled cohort study includes 96 participants: 48 patients receiving systemic ozone therapy (major autohemotherapy, 40 µg/mL, 10 sessions) and 48 age- and sex-matched healthy controls. Corneal endothelial parameters including endothelial cell density (ECD), hexagonality (Hex%), coefficient of variation (CV), central corneal thickness (CCT), and intraocular pressure (IOP) are measured by specular microscopy at baseline (T0), 1 month (T1), 3 months (T2), and 6 months (T3). Oxidative stress markers (MDA, SOD, GSH-Px) are also assessed in the ozone group.
The primary goal is to determine whether systemic ozone therapy causes any adverse effects on corneal endothelial cells over a 6-month period. Secondary goals include evaluating changes in oxidative stress markers and assessing the correlation between systemic antioxidant effects and corneal health. Results will help guide clinical practice regarding the safety of ozone therapy in patients with or without pre-existing corneal conditions.
調査の概要
詳細な説明
STUDY DESIGN AND PARTICIPANTS
This is a prospective controlled cohort study conducted at [Institution Name]. The study protocol was approved by the Local Ethics Committee and adhered to the tenets of the Declaration of Helsinki. All participants provided written informed consent.
The ozone group comprised 48 consecutive patients scheduled to receive systemic ozone therapy for various indications including fibromyalgia (16.7%), chronic pain (22.9%), knee osteoarthritis (29.2%), disk herniation (10.4%), peripheral arterial disease (6.3%), and sports injuries (14.6%). The control group consisted of 48 healthy individuals matched for age (±2 years), sex, and body mass index (BMI, ±3 kg/m²) who did not receive ozone therapy.
Exclusion criteria for both groups included: (1) history of ocular surgery or trauma, (2) corneal dystrophy or degeneration, (3) glaucoma or ocular hypertension, (4) diabetes mellitus, (5) contact lens use within the preceding 3 months, (6) active ocular surface disease, and (7) systemic conditions known to affect corneal endothelium.
OZONE THERAPY PROTOCOL
Systemic ozone therapy was administered via major autohemotherapy (MAH) using a medical-grade ozone generator (Ozonosan Alpha Plus, Herrmann Apparatebau GmbH, Germany). Approximately 100 mL of the patient's blood was drawn into a sterile glass bottle containing 3.8% sodium citrate as an anticoagulant. The blood was then exposed to a precisely measured ozone-oxygen mixture at a concentration of 40 µg/mL. The ozonated blood was gently mixed and reinfused intravenously over 10-15 minutes. This procedure was performed once daily for 10 consecutive sessions.
OPHTHALMIC EXAMINATIONS
All participants underwent comprehensive ophthalmic examinations including: slit-lamp biomicroscopy, best-corrected visual acuity (BCVA) measurement using Snellen chart (converted to logMAR), intraocular pressure (IOP) measurement by non-contact tonometry (Topcon CT-80), and corneal endothelial evaluation by non-contact specular microscopy (Topcon SP-3000P, Japan).
Specular microscopy was performed by a single experienced technician blinded to group allocation. Three images were captured from the central cornea of each eye, and the image with the highest cell count and clarity was selected for analysis. The following parameters were recorded: endothelial cell density (ECD, cells/mm²), percentage of hexagonal cells (Hex%), coefficient of variation in cell area (CV, %), and central corneal thickness (CCT, µm). Measurements were obtained at four time points: baseline (T0, before ozone therapy), 1 month (T1, immediately after completing 10 sessions), 3 months (T2), and 6 months (T3) after baseline.
BIOCHEMICAL ANALYSIS
In the ozone group, venous blood samples were collected at each time point. Serum levels of malondialdehyde (MDA, µmol/L) were measured by the thiobarbituric acid reactive substances (TBARS) method. Superoxide dismutase (SOD, U/mL) and glutathione peroxidase (GSH-Px, U/mL) activities were determined by spectrophotometric methods.
STATISTICAL ANALYSIS
Statistical analysis was performed using SPSS version 26.0 and Python 3.11 with SciPy and StatsModels libraries. Normality was assessed using the Shapiro-Wilk test. Between-group comparisons at baseline were performed using independent t-test or Mann-Whitney U test. Within-group changes over time were analyzed using repeated measures ANOVA or Friedman test, followed by Wilcoxon signed-rank test. Between-group comparisons of changes from baseline (delta values) were performed using independent t-test or Mann-Whitney U test. Effect sizes were calculated as Cohen's d and r (Z/√N). Statistical significance was set at p < 0.05.
PRIMARY OUTCOME MEASURES
- Change in endothelial cell density (ECD) from baseline to 6 months
- Change in hexagonality (Hex%) from baseline to 6 months
- Change in coefficient of variation (CV) from baseline to 6 months
- Change in central corneal thickness (CCT) from baseline to 6 months
- Change in intraocular pressure (IOP) from baseline to 6 months
SECONDARY OUTCOME MEASURES
- Change in malondialdehyde (MDA) levels from baseline to 6 months (ozone group only)
- Change in superoxide dismutase (SOD) levels from baseline to 6 months (ozone group only)
- Change in glutathione peroxidase (GSH-Px) levels from baseline to 6 months (ozone group only)
- Correlation between changes in oxidative stress markers and corneal endothelial parameters
- Subgroup analyses by age, sex, BMI, and ozone therapy indications
FOLLOW-UP SCHEDULE
- T0: Baseline assessment (before ozone therapy)
- T1: 1 month after baseline (immediately after completing 10 ozone sessions)
- T2: 3 months after baseline
- T3: 6 months after baseline (primary endpoint)
SAFETY MONITORING
All adverse events were documented throughout the study. Slit-lamp biomicroscopy was performed at each visit to detect any ocular abnormalities. Best-corrected visual acuity was monitored to ensure no visual deterioration occurred.
研究の種類
入学 (実際)
段階
- 適用できない
連絡先と場所
研究場所
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-
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Van、トルコ(Türkiye)、65080
- Yuzuncu Yil University
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参加基準
適格基準
就学可能な年齢
- 大人
- 高齢者
健康ボランティアの受け入れ
説明
Inclusion Criteria:
- Age 18 years or older
- For ozone group: Patients scheduled to receive systemic ozone therapy for fibromyalgia, chronic pain, knee osteoarthritis, disk herniation, peripheral arterial disease, or sports injuries
- For control group: Healthy individuals matched for age (±2 years), sex, and body mass index (BMI, ±3 kg/m²)
- Willing and able to provide written informed consent
- Willing and able to comply with all study procedures and follow-up visits
Exclusion Criteria:
- History of ocular surgery or trauma
- Corneal dystrophy or degeneration
- Glaucoma or ocular hypertension
- Diabetes mellitus
- Contact lens use within the preceding 3 months
- Active ocular surface disease
- Systemic conditions known to affect corneal endothelium
- Any condition that, in the opinion of the investigator, would interfere with study participation or evaluation of outcomes
研究計画
研究はどのように設計されていますか?
デザインの詳細
- 主な目的:他の
- 割り当て:非ランダム化
- 介入モデル:並列代入
- マスキング:なし(オープンラベル)
武器と介入
参加者グループ / アーム |
介入・治療 |
|---|---|
|
実験的:Ozone Therapy Group
48 participants receiving systemic ozone therapy via major autohemotherapy (MAH) at a concentration of 40 µg/mL, administered once daily for 10 consecutive sessions.
|
Major autohemotherapy (MAH) using a medical-grade ozone generator (Ozonosan Alpha Plus, Herrmann Apparatebau GmbH, Germany).
Approximately 100 mL of the patient's blood is drawn into a sterile glass bottle containing 3.8% sodium citrate as an anticoagulant.
The blood is then exposed to an ozone-oxygen mixture at a concentration of 40 µg/mL.
The ozonated blood is gently mixed and reinfused intravenously over 10-15 minutes.
The procedure is performed once daily for 10 consecutive sessions.
|
|
介入なし:Control Group
48 age- and sex-matched healthy individuals who did not receive ozone therapy.
|
この研究は何を測定していますか?
主要な結果の測定
結果測定 |
メジャーの説明 |
時間枠 |
|---|---|---|
|
Change in Coefficient of Variation (CV) of cell area from baseline to 6 months
時間枠:Baseline (T0), 1 month (T1), 3 months (T2), and 6 months (T3)
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Coefficient of variation in endothelial cell area (%), measured by non-contact specular microscopy (Topcon SP-3000P).
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Baseline (T0), 1 month (T1), 3 months (T2), and 6 months (T3)
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Change in Endothelial Cell Density (ECD) from baseline to 6 months
時間枠:Baseline (T0), 1 month (T1), 3 months (T2), and 6 months (T3)
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Endothelial cell density (cells/mm²) measured by non-contact specular microscopy (Topcon SP-3000P) from the central cornea.
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Baseline (T0), 1 month (T1), 3 months (T2), and 6 months (T3)
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Change in Hexagonality (Hex%) from baseline to 6 months
時間枠:Baseline (T0), 1 month (T1), 3 months (T2), and 6 months (T3)
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Percentage of hexagonal corneal endothelial cells measured by non-contact specular microscopy (Topcon SP-3000P).
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Baseline (T0), 1 month (T1), 3 months (T2), and 6 months (T3)
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二次結果の測定
結果測定 |
メジャーの説明 |
時間枠 |
|---|---|---|
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Change in Malondialdehyde (MDA) levels from baseline to 6 months
時間枠:Baseline (T0), 1 month (T1), 3 months (T2), and 6 months (T3)
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Serum malondialdehyde (MDA) levels (µmol/L) measured by thiobarbituric acid reactive substances (TBARS) method.
Assessed only in the ozone group.
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Baseline (T0), 1 month (T1), 3 months (T2), and 6 months (T3)
|
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Change in Superoxide Dismutase (SOD) activity from baseline to 6 months
時間枠:Baseline (T0), 1 month (T1), 3 months (T2), and 6 months (T3)
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Serum superoxide dismutase (SOD) activity (U/mL) measured by spectrophotometric method.
Assessed only in the ozone group.
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Baseline (T0), 1 month (T1), 3 months (T2), and 6 months (T3)
|
協力者と研究者
スポンサー
出版物と役立つリンク
一般刊行物
- 1. PubMed: (Makalenin PMID'si varsa girin, yoksa boş bırakın) 2. Other: Bocci V. Ozone: A New Medical Drug. 2nd ed. Dordrecht: Springer; 2011. 3. Other: Franzini M, Valdenassi L, Pandolfi S, Tirelli U, Ricevuti G, Chirumbolo S. The role of ozone as an Nrf2-Keap1-ARE activator in the anti-microbial activity and immunity modulation of infected wounds. Antioxidants. 2023;12(11):1985. doi:10.3390/antiox12111985 4. Other: Malatesta M, Tabaracci G, Pellicciari C. Low-dose ozone as a eustress inducer: Experimental evidence of the molecular mechanisms accounting for its therapeutic action. Int J Mol Sci. 2024;25(23):12657. doi:10.3390/ijms252312657 5. Other: Cheng Y, Lu Y, Du Y, Zhao Y, Zhuang X. A clinical study on ozone autohemotherapy for the treatment of acute ischemic stroke. Front Neurol. 2025;16:1583726. doi:10.3389/fneur.2025.1583726
研究記録日
主要日程の研究
研究開始 (実際)
一次修了 (実際)
研究の完了 (実際)
試験登録日
最初に提出
QC基準を満たした最初の提出物
最初の投稿 (実際)
学習記録の更新
投稿された最後の更新 (実際)
QC基準を満たした最後の更新が送信されました
最終確認日
詳しくは
本研究に関する用語
その他の研究ID番号
- GOKAEK/2026-01-10 (その他の識別子:No other identifiers)
個々の参加者データ (IPD) の計画
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Systemic Ozone Therapyの臨床試験
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Universitätsklinikum Hamburg-EppendorfCytoSorbents, Inc募集
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Universitätsklinikum Hamburg-Eppendorf完了