Related Experiment Video
Updated: Jan 10, 2026

Aggravation of Myocardial Ischemia upon Particulate Matter Exposure in Atherosclerosis Animal Model
Published on: December 10, 2021
Protective Effects of Thyme Leaf Extract Against Particulate Matter-Induced Pulmonary Injury in Mice
Jae-Kyoung Lee1,2, Khawaja Muhammad Imran Bashir3, Hye-Rim Park4
1Hongsamdan Co., Ltd., Gongju 32511, Republic of Korea.
Abstract:
Airborne particulate matter (PM), particularly PM2.5, contributes to pulmonary injury by inducing oxidative stress and inflammation. Thyme (Thymus vulgaris L.) contains bioactive compounds with anti-inflammatory, antioxidant, and expectorant properties. Here, we evaluated the dose-dependent protective effects of thyme extract (TV) against PM2.5-induced pulmonary injury in mice, using dexamethasone (DEXA) as a reference anti-inflammatory drug. Subacute pulmonary injury was induced in male Balb/c mice via intranasal administration of PM2.5 (1 mg/kg, twice at 48 h intervals). Mice received oral TV (50, 100, or 200 mg/kg) or DEXA (0.75 mg/kg) daily for 10 days. Assessments included lung weight, serum AST/ALT, bronchoalveolar lavage fluid (BALF) leukocyte counts, cytokines (TNF-α, IL-6), chemokines, oxidative stress markers (ROS, lipid peroxidation, antioxidant enzymes), histopathology, and mRNA expression of genes related to inflammation (PI3K/Akt, MAPK, and NF-κB), mucus production (MUC5AC, MUC5B), and apoptosis (Bcl-2, Bax). Exposure to PM2.5 caused oxidative stress, pulmonary inflammation, mucus hypersecretion, and histopathological changes. TV treatment dose-dependently reduced leukocyte infiltration, cytokine/chemokine release, ROS generation, and mucus overproduction, while enhancing antioxidant defenses and improving tissue pathology. Effects were comparable but slightly less potent than DEXA. Notably, unlike DEXA, TV reduced mucus hyperplasia and enhanced expectorant activity. No hepatotoxicity was observed. These results indicate that thyme extract could serve as a promising natural candidate for alternative respiratory therapeutics or functional food development.
Insights
Thyme extract (TV) offers dose-dependent protection against particulate matter (PM2.5)-induced lung injury by reducing inflammation and oxidative stress. It shows potential as a natural respiratory therapeutic, improving mucus clearance.
Area of Science:
- Environmental Health
- Pharmacology
- Respiratory Medicine
Background:
- Airborne particulate matter (PM2.5) is a significant contributor to pulmonary injury, exacerbating oxidative stress and inflammation.
- Thyme (Thymus vulgaris L.) possesses bioactive compounds with known anti-inflammatory, antioxidant, and expectorant properties.
Purpose of the Study:
- To evaluate the dose-dependent protective effects of thyme extract (TV) against PM2.5-induced pulmonary injury in a mouse model.
- To compare the efficacy of TV with dexamethasone (DEXA), a standard anti-inflammatory drug.
Main Methods:
- Subacute pulmonary injury was induced in mice using intranasal PM2.5 administration.
- Mice were treated orally with varying doses of TV or DEXA daily for 10 days.
- Comprehensive assessments included lung pathology, biochemical markers (cytokines, oxidative stress), and gene expression analysis.
Main Results:
- PM2.5 exposure induced significant oxidative stress, inflammation, mucus hypersecretion, and lung tissue damage.
- TV treatment dose-dependently mitigated these effects, reducing inflammatory markers, oxidative stress, and mucus production.
- TV demonstrated comparable efficacy to DEXA, with the added benefit of enhanced expectorant activity and reduced mucus hyperplasia.
Conclusions:
- Thyme extract exhibits significant protective effects against PM2.5-induced pulmonary injury.
- TV's dual action on inflammation and mucus clearance suggests its potential as a natural therapeutic agent for respiratory conditions.
- Thyme extract represents a promising candidate for functional food development and alternative respiratory therapeutics.
More Related Videos
07:28Dry Powder and Nebulized Aerosol Inhalation of Pharmaceuticals Delivered to Mice Using a Nose-only Exposure System
Published on: April 6, 2017
10:47Isolation of Mouse Respiratory Epithelial Cells and Exposure to Experimental Cigarette Smoke at Air Liquid Interface
Published on: February 21, 2011