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Updated: May 13, 2026

Cigarette Smoke Exposure in Mice using a Whole-Body Inhalation System
Published on: October 22, 2020
IL-1 receptor regulates microRNA-135b expression in a negative feedback mechanism during cigarette smoke-induced
Sabina Halappanavar1, Jake Nikota, Dongmei Wu
1Environmental and Radiation Health Sciences Directorate, Health Canada, Ottawa, Ontario K1A 0K9, Canada. sabina.halappanavar@hc-sc.gc.ca
Abstract:
Although microRNA-135b (miR-135b) is known to be associated with cancer, with recent work showing that it is massively induced in the pulmonary tissues of mice challenged with nanoparticles suggests a critical role for this microRNA in mediating inflammatory response. In this study, we investigated the expression and function of miR-135b in mice exposed to cigarette smoke or nontypeable Haemophilus influenzae (NTHi). Exposure to both cigarette smoke and NTHi elicited robust lung inflammation, but increased miR-135b expression was observed only in the lungs of cigarette smoke-exposed mice. Using IL-1R 1 knockout mice, we show that miR-135b expression is IL-1R1 dependent. A series of in vitro experiments confirmed the role of IL-1R1 in regulating miR-135b expression. In vitro activation of the IL-1R1 pathway in mouse embryonic fibroblast (NIH3T3) and lung epithelial (FE1) cells resulted in increased miR-135b, which was blocked by IL-1R1 antagonists or small interfering RNA-mediated silencing of IL-1R1 expression. Overexpression of mature miR-135b in NIH3T3 cells (pEGP-mmu-mir-135b) resulted in the suppression of endogenous levels of IL-1R1 expression. pEGP-mmu-miR-135b cells transiently transfected with luciferase reporter vector containing the 3'UTR of mouse IL-1R1 showed reduced luciferase activity. Finally, we demonstrate that miR-135b targets IL-1-stimulated activation of Caspase-1, the IL-1R1 downstream activator of IL-1β leading to suppressed synthesis of the active form of IL-1β protein. These results suggest that miR-135b expression during cigarette smoke-induced inflammation is regulated by IL-1R1 in a regulatory feedback mechanism to resolve inflammation.
Insights
MicroRNA-135b (miR-135b) expression in the lungs is induced by cigarette smoke, not NTHi. This miR-135b regulates inflammation by targeting IL-1R1 and Caspase-1, suggesting a feedback mechanism to resolve inflammation.
Area of Science:
- Immunology
- Molecular Biology
- Respiratory Medicine
Background:
- MicroRNA-135b (miR-135b) is implicated in cancer and inflammation.
- Recent studies suggest miR-135b plays a role in inflammatory responses.
- Its role in cigarette smoke-induced lung inflammation requires further investigation.
Purpose of the Study:
- To investigate the expression and function of miR-135b in response to cigarette smoke and nontypeable Haemophilus influenzae (NTHi) exposure.
- To elucidate the regulatory mechanisms of miR-135b in lung inflammation.
- To determine the downstream targets and functional consequences of miR-135b in inflammation.
Main Methods:
- Mice were exposed to cigarette smoke or NTHi.
- miR-135b expression was measured in lung tissues.
- IL-1R1 knockout mice were used to assess IL-1R1 dependency.
- In vitro experiments involved cell culture, IL-1R1 pathway activation, miR-135b overexpression, and luciferase reporter assays.
- Caspase-1 activation and IL-1β production were analyzed.
Main Results:
- Cigarette smoke exposure, but not NTHi, robustly increased miR-135b expression in mouse lungs.
- miR-135b expression was dependent on the Interleukin-1 Receptor 1 (IL-1R1) pathway.
- miR-135b overexpression suppressed IL-1R1 levels and reduced luciferase activity in reporter assays.
- miR-135b was found to target Caspase-1, suppressing the activation of IL-1β.
Conclusions:
- miR-135b expression in cigarette smoke-induced lung inflammation is regulated by IL-1R1.
- miR-135b acts through a feedback mechanism involving IL-1R1 and Caspase-1 to resolve inflammation.
- This study reveals a novel regulatory pathway for inflammation resolution in the lungs.
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