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April 27, 2026Journal of Acute Disease0 citationsOpen Access

Construction and evaluation of a graded rat model for smoke inhalation lung injury

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YZY Z ZhouFSFei ShiYZYong Zhang

Key Points

  • The study aims to create a graded rat model to investigate the effects of smoke inhalation on lung injury severity.
  • Eighteen male Wistar rats divided into control and exposure groups (n=3 per group).
  • Exposed to smoke for varying durations: 5, 10, 15, and 30 minutes using a custom smoke chamber.
  • Post-exposure evaluations included lung function, wet weight lung coefficient, histopathology, leukocyte count, and IL-6 in alveolar lavage fluid.
  • Lung function significantly declined in all exposure groups compared to controls, worsening with time.
  • The lung coefficient increased significantly for 15 and 30-minute exposure groups.
  • Histopathology showed progression: intact structure at 5-10 minutes, alveolar rupture at 15 minutes, and hyaline membranes at 30 minutes.

Abstract

Objective: To address the critical impact of smoke inhalation lung injury on burn patient prognosis and the lack of animal models simulating varying injury severity, we established a graded rat model to facilitate research into its pathological mechanisms and treatments. Methods: Eighteen male Wistar rats were divided into a control group and groups exposed to smoke for 5, 10, 15, 30 minutes ( n =3 per group). A custom smoke chamber and specific materials (50 g pine wood chips + 10 mL kerosene) were used. Post-exposure assessments included lung function, lung coefficient (wet weight), histopathology (H&E staining), and leukocyte count and IL-6 levels in alveolar lavage fluid. Results: Lung function declined significantly in all exposure groups versus controls, with progressive worsening over time. The lung coefficient increased significantly in the 15- and 30-minute groups. Histology revealed intact structure at 5 and 10 minutes, alveolar rupture and neutrophil infiltration at 15 minutes, and hyaline membranes at 30 minutes. Leukocyte count and IL-6 levels rose markedly after 15 and 30 minutes of exposure. Statistical comparisons confirmed progressive injury severity with longer exposure. Conclusions: Graded rat models of mild, moderate, and severe inhalation lung injury were successfully established following 5, 15, and 30 minutes of smoke exposure, respectively. Injury and inflammation intensified significantly with exposure duration, providing a valuable foundation for further research.

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Cite This Study

Zhou et al. (2026) studied this question.

synapsesocial.com/papers/69eefd82fede9185760d441ahttps://doi.org/10.4103/jad.jad_29_26
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