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Inducible and Reversible Dominant-negative (DN) Protein Inhibition
Published on: January 7, 2019
Transcriptomics does not show adverse effects of beta-carotene in A/J mice exposed to smoke for 2 weeks
Emmanuelle Kuntz1, Jürgen Borlak, Georges Riss
1DSM Nutritional Products, Human Nutrition and Health, PO Box 3255, Building 241/421, CH-4002 Basel, Switzerland.
Abstract:
Beta-carotene (betaC) supplementation in smokers was unexpectedly associated with increased incidence of lung cancer versus smoking alone. We performed a study in A/J mice to explore possible betaC/cigarette smoke (CS) interactions potentially influencing lung cancer risk in smokers. A/J mice received a diet containing 120 or 600 ppm betaC for six weeks, and exposed to mainstream CS (140 mg total suspended particulates/m(3)) during the last two weeks. Lung transcriptomics analysis revealed that CS induced drug metabolism, oxidative stress, extracellular matrix (ECM) degradation, inflammation markers, and apoptosis. betaC reduced CS-induced inflammation markers and ECM degradation. betaC modulated the CS effect on apoptosis without a clear pro- or anti-apoptotic trend. betaC alone induced only minor changes of gene expression. In conclusion, betaC/CS interactions caused gene regulations in lungs. CS was the main effector. The gene regulations overall did not indicate that betaC exacerbated CS effects. Dose-dependency of betaC effects was minor and not detectable by genome-wide data mining.

