An interventional study of Silymarin and Placebo in COPD (Chronic Obstructive Pulmonary Disease), sponsored by Bangabandhu Sheikh Mujib Medical University, Dhaka, Bangladesh. Enrolling by invitation at 1 site in Bangladesh. Open to participants aged 40 Years to 80 Years. Per ClinicalTrials.gov, last updated 2025-08-14.
Sponsored by Bangabandhu Sheikh Mujib Medical University, Dhaka, Bangladesh · Not applicable, Interventional, and Supportive care
The goal of this clinical trial is to learn if Silymarin works to reduce oxidative stress, improve pulmoary function and quality of life in stable COPD patients. It will also learn about the safety of drug Silymarin. The main questions it aims to answer are:
Does drug Silymarin reduce oxidative stress, improve pulmonary function and quality of life in stable COPD patients? What medical problems do participants have when taking drug Silymarin? Researchers will compare Silymarin to a placebo (a look-alike substance that contains no drug) to see if Silymarin works to treat COPD.
Participants will:
Take Silymarin or a placebo thrice daily every day for 3 months. Baseline and 3 months after plasma Malondealdehyde, erythrocyte Glutathione , FEV1, SGRQ-C score will be monitored.
Chronic Obstructive Pulmonary Disease (COPD) is a leading cause of morbidity and mortality worldwide, characterized by persistent airflow limitation and an exaggerated inflammatory response. Oxidative stress plays a pivotal role in disease progression, contributing to worsening pulmonary function, increased exacerbations, and poor quality of life. Current pharmacological interventions, including inhaled corticosteroids (ICS), bronchodilators, and mucolytics (e.g., acetylcysteine, carbocysteine, erdosteine), have limitations such as increased risk of infections, systemic side effects, and suboptimal long-term efficacy in mitigating oxidative stress. Antioxidant vitamins (A, C, E) have been explored for oxidative stress management but demonstrate inconsistent clinical benefits.
Silymarin, a bioflavonoid complex derived from Silybum marianum, possesses potent antioxidant, anti-inflammatory, and hepatoprotective properties. Silymarin is safe in human at therapeutic doses and is well tolerated even at high dose of 700 mg three times a day for 24 weeks. It scavenges reactive oxygen species (ROS), upregulates endogenous antioxidant defense mechanisms, and modulates inflammatory pathways, making it a promising candidate for managing oxidative stress in COPD. Despite extensive use in hepatic disorders, its therapeutic potential in pulmonary diseases remains underexplored.
Aim: This study aims to evaluate the effect of Silymarin on oxidative stress, pulmonary function, and quality of life in stable COPD patients.
Methodology: This research will be conducted in Pharmacology department of Bangabandhu Sheikh Mujib Medical University (BSMMU) and outpatient department of Respiratory Medicine of BSMMU from the day of approval by IRB to January, 2026. It will be single centered, randomized, double-blind, placebo-controlled trial involving stable COPD patients receiving 'Indacaterol plus Glycopyrronium'. 70 Participants will be enrolled, 35 in each group, randomly assigned to receive either Silymarin 140 mg thrice daily or placebo thrice daily for 12 weeks period. The primary outcome will be changes in oxidative stress markers (e.g., malondialdehyde, erythrocyte glutathione). Secondary outcomes include pulmonary function test (FEV1), quality of life (SGRQ-C scores). Data will be collected about various socio-demographic variables such as age, sex, smoking history, other co-morbidities. Silymarin 140 mg capsule and placebo will be purchased from Square Pharmaceutical Limited. We have an initial discussion and have a commitment that they will provide medicine and placebo along with quality control certificate. Descriptive statistics will be used for demographic variables. Means and standard deviation for continuous variables and number, percentage for categorical variables will be used. For independent samples; t-test will be utilized to analyze the average differences in MDA conc., erythrocyte glutathione conc. between the group receiving Silymarin supplement and the group receiving placebo. The Chi-square test will be employed to compare the percentage of participants may show a significant change in MDA, erythrocyte glutathione conc. in the group that received Silymarin versus the group that received placebo. Pearson or Spearman correlation tests will be used to explore any relationships between baseline MDA, erythrocyte glutathione conc. and baseline FEV1, SGRQ-C score as well as change among in MDA, erythrocyte glutathione conc. and the change in FEV1, SGRQ-C score. This study will adhere to ethical guidelines for human research, ensuring informed consent, patient safety, and data confidentiality.
Conclusion: Given the limitations of current antioxidant therapies in COPD, Silymarin offers a novel, potentially safer approach to mitigating oxidative stress and improving patient outcomes. If effective, it could serve as an adjunctive therapy to conventional COPD management, reducing the reliance on ICS and mucolytics while addressing the underlying pathophysiology of the disease and mitigating disease progression.
4,131 studies on the registry are indexed under Pulmonary Disease, Chronic Obstructive; 697 are open to participants now.
This study's planned enrollment of 70 is close to the median of 70 across 2,926 interventional studies indexed under Pulmonary Disease, Chronic Obstructive.
Browse Pulmonary Disease, Chronic Obstructive studies →Bangabandhu Sheikh Mujib Medical University, Dhaka, Bangladesh is the lead sponsor of 126 studies on the registry; 24 are open to participants now.
Counted across the registry records on this site, refreshed daily.
Exclusion Criteria:
COPD exacerbation
Participants received Cap. Silymarin 140 mg orally thrice daily for 12 weeks
Dietary Supplement: Silymarin
Participants received Silymarin placebo capsule matching Silymarin orally thrice daily for 12 weeks
Dietary Supplement: Placebo
Participants received Silymarin 140 mg capsule orally thrice daily for 12 weeks
Participants received Silymarin placebo capsule thrice daily for 12 weeks
Oxidative stress marker plasma MDA
Comparison of plasma malondialdehyde (MDA) between control and intervention arms at baseline and after 12 weeks of treatment.
Time frame: 12 weeks
Oxidative stress marker erythrocyte glutathione
Comparison of erythrocyte glutathione concentration (GSH) between control and intervention arms at baseline and after 12 weeks of treatment.
Time frame: 12 weeks
Pulmonary function
Comparison of forced expiratory volume in first second (FEV1) in Spirometry between control and intervention arms at baseline and after 12 weeks of treatment.
Time frame: 12 weeks
SGRQ-C score
Comparison of score of St. George's Respiratory Questionnaire (SGRQ-C) between control and intervention arms at baseline and after 12 weeks of treatment.
Time frame: 12 weeks
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Bangabandhu Sheikh Mujib Medical University, Dhaka, Bangladesh