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Published on: June 30, 2022
Modulation of genomic and epigenetic end-points by celecoxib
Alberto Izzotti1,2, Sebastiano La Maestra1, Rosanna T Micale1
1Department of Health Sciences, University of Genoa, 16132 Genoa, Italy.
Abstract:
Celecoxib, a nonsteroidal anti-inflammatory drug that selectively targets cyclooxygenase-2, is a promising cancer chemopreventive agent. However, safety concerns have been raised in clinical trials evaluating its ability to prevent colorectal adenomas. The rationale for the herein reported studies was to analyze genomic and epigenetic end-points aimed at investigating both the chemopreventive properties of celecoxib towards cigarette smoke-associated molecular alterations and its possible adverse effects. We carried out three consecutive studies in mice treated with either smoke and/or celecoxib. Study 1 investigated early DNA alterations (DNA adducts, oxidative DNA damage, and systemic genotoxic damage) and epigenetic alterations (expression of 1,135 microRNAs) in lung and blood of Swiss H mice; Study 2 evaluated the formation of DNA adducts in lung, liver, and heart; and Study 3 evaluated the expression of microRNAs in 10 organs and 3 body fluids of ICR (CD-1) mice. Surprisingly, the oral administration of celecoxib to smoke-free mice resulted in the formation of DNA adducts in both lung and heart and in dysregulation of microRNAs in mouse organs and body fluids. On the other hand, celecoxib attenuated smoke-related DNA damage and dysregulation of microRNA expression. In conclusion, celecoxib showed pleiotropic properties and multiple mechanisms by counteracting the molecular damage produced by smoke in a variety of organs and body fluids. However, administration of celecoxib to non-smoking mice resulted in evident molecular alterations, also including DNA and RNA alterations in the heart, which may bear relevance in the pathogenesis of the cardiovascular adverse effects of this drug.
Insights
Celecoxib, a cancer chemopreventive drug, surprisingly caused DNA and RNA alterations in non-smoking mice. However, it protected against smoke-induced damage, indicating complex effects.
Area of Science:
- Pharmacology
- Genomics
- Epigenetics
Background:
- Celecoxib (COX-2 inhibitor) shows cancer chemopreventive potential.
- Clinical trials raised safety concerns regarding its use in colorectal adenoma prevention.
Purpose of the Study:
- Investigate celecoxib's chemopreventive effects on smoke-induced molecular damage.
- Assess celecoxib's potential adverse effects using genomic and epigenetic endpoints.
Main Methods:
- Three mouse studies involving smoke and/or celecoxib treatment.
- Analysis of DNA adducts, oxidative DNA damage, genotoxicity, and microRNA expression in various tissues and fluids.
Main Results:
- Celecoxib alone induced DNA adducts and microRNA dysregulation in non-smoking mice.
- Celecoxib counteracted smoke-induced DNA damage and microRNA alterations.
- Observed molecular alterations in the heart raise concerns about cardiovascular adverse effects.
Conclusions:
- Celecoxib exhibits pleiotropic effects, mitigating smoke-induced damage.
- Administration to non-smokers causes significant molecular alterations, including cardiac DNA/RNA changes.
- Potential cardiovascular risks warrant further investigation.
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