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Showing 2 results for Thymol
Behruz Shokri , Fatemeh Nejadhabibvash , Farah Farokhi , Mohammad Bagher Rezaee , Volume 21, Issue 2 (7-2019)
Abstract
Background and Objective: Hyperlipidemia and high level of serum total cholesterol are risk factors contributing to prevalence and severity of cardiovascular complications like coronary heart diseases. Lamiaceae plants have terpenoids and flavonoids can reduce triglyceride and cholesterol, therefore. This study was done to evaluate the effect of feeding with essential oil of Thymus deanensis Celak. on lipid profile, blood urea and liver enzymes in hyperchlostrolemic male Wistar rats.
Methods: This experimental study was performed on 36 male Wistar rats. Animals were randomly divided into 6 groups (there were 6 rats in each groups). The groups including control, sham, two groups receiving 200 and 500 ppm Thymus deanensis essential oil and hyperchlostrolemia groups treated with doses of 200 and 500 ppm of Thymus deanensis essential oil. Hyperchlostrolemia was induced by giving high cholesterol (2%) and sweet almond oil (97.5%) diet. The animals were treated for 32 days with essential oil of the thyme. At the end of the 32-day trial, blood sampling was performed. Total cholesterol, triglyceride, urea and alanine aminotransferase (ALT) and aspartate aminotransferase (AST) liver enzymes were measured.
Results: The level of ALT and AST in hypercholesterolemia rats were significantly increased in comparison with the control group (P˂0.05). Thymus daenensis essential oil significantly reduced level of triglycerides and cholesterol (P˂0.05). The high dose of Thymus daenensis (500 ppm) essential oil more than a low dose (200 ppm) significantly reduced the level of cholesterol and triglyceride (P˂0.05). Blood urea nitrogen significantly increased in hypercholesterolemia group in compare to control group (P˂0.05). After the administration of essential oil with a minimum and maximum dose in hypercholesterolemia rats, the level of urea in the blood significantly decreased (P˂0.05). The level of ALT and AST in hypercholesterolemia rats significantly increased in comparison with the control group (P˂0.05). AST level significantly reduced in the groups of rats which received minimal and maximal doses compared to the group hypercholesterolemia (P˂0.05).
Conclusion: By lowering blood lipids, urea and liver enzymes after the use of essential oils, it seems that the Thymus daenensis dose-dependent is effective in improving liver function, kidney and high level of lipid.
Mohammad Shokrzadeh , Mahboube Rahmati Kukandeh , Mohammad Karami , Samane Sadat Besharat , Volume 27, Issue 2 (7-2025)
Abstract
Background and Objective: Docetaxel is an effective chemotherapy drug for treating lung cancer, but its side effects and cytotoxicity limit its use. Natural compounds like carvacrol and thymol, known for their anti-cancer and anti-inflammatory properties, have gained attention as adjunct agents to reduce toxicity and enhance the efficacy of chemotherapy drugs. This study aimed to investigate the impact of carvacrol and thymol on cell viability and function in A549 cancer cells exposed to docetaxel.
Methods: This experimental study was conducted on the epithelial cell line derived from lung cancer tissue (A549), obtained from the Pasteur Institute of Iran at the Faculty of Pharmacy, Mazandaran University of Medical Sciences in the year 1042. In this research, A549 cells were pre-treated with various concentrations of carvacrol and thymol (5, 10, 20, 40, 80, 100, and 200 µg/mL) along with a cytotoxic dose of docetaxel (8.92 µg/mL) over a period of 48 hours. Cytotoxicity was assessed using the MTT assay. Additionally, the levels of reactive oxygen species (ROS) in cells were measured using the DA-DCFH reagent, and malondialdehyde (MDA) levels were determined using the thiobarbituric acid (TBA) reagent.
Results: Carvacrol and thymol significantly reduced the cytotoxic effects of docetaxel at concentrations ranging from 5 to 200 µg/mL (P<0.05). The evaluation of cytotoxicity indicated that at a concentration of 200 µg/mL, carvacrol and thymol exhibited a more pronounced enhancing effect (98.11±1.64%) compared to the concentration of 5 µg/mL (54.64±2.03%). Furthermore, these compounds significantly mitigated the oxidative stress induced by docetaxel by decreasing the production of reactive oxygen species (ROS) and malondialdehyde (MDA) (P<0.05). Specifically, at the concentration of 200 µg/mL, the levels of ROS and MDA were (13.57±0.09%) and (0.55±0.003%), respectively, in contrast to the levels at 5 µg/mL, which were (20.50±0.59%) and (0.98±0.01%). This demonstrates a notable inhibitory effect on the growth of cancer cells by carvacrol and thymol.
Conclusion: Carvacrol and thymol demonstrate high potential as compounds to improve cell function and reduce the cytotoxicity induced by docetaxel in A549 cancer cells. These findings suggest the potential enhancement of chemotherapy regimens for cancer treatment.
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