4.6 Article

Reduction of Cell Proliferation by Acute C2H6O Exposure

期刊

CANCERS
卷 13, 期 19, 页码 -

出版社

MDPI
DOI: 10.3390/cancers13194999

关键词

cell proliferation; alcohol; bone marrow; binge drinking; in vivo bioluminescence imaging; ethanol; acetaldehyde; alcoholism; animal model; nuclear factor Y

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资金

  1. ERAB: The European Foundation for Alcohol Research

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The study observed a decrease in bone marrow progenitor cell proliferation rate in response to toxic effects of aldehydes generated by alcohol oxidation, as reflected by bioluminescent alteration in a mouse model. Boosting acetaldehyde catabolism or antioxidant administration partially restored physiological proliferation of bone marrow cells.
Endogenous acetaldehyde production from the metabolism of ingested alcohol exposes hematopoietic progenitor cells to increased genotoxic risk. To develop possible therapeutic strategies to prevent or reverse alcohol abuse effects, it would be critical to determine the temporal progression of acute ethanol toxicity on progenitor cell numbers and proliferative status. We followed the variation of the cell proliferation rate in bone marrow and spleen in response to acute ethanol intoxication in the MITO-Luc mouse, in which NF-Y-dependent cell proliferation can be assessed in vivo by non-invasive bioluminescent imaging. One week after ethanol administration, bioluminescent signals in bone marrow and spleen decreased below the level corresponding to physiological proliferation, and they progressively resumed to pre-treatment values in approximately 4 weeks. Boosting acetaldehyde catabolism by administration of an aldehyde dehydrogenase activity activator or administration of polyphenols with antioxidant activity partially restored bone marrow cells' physiological proliferation. These results indicate that in this mouse model, bioluminescent alteration reflects the reduction of the physiological proliferation rate of bone marrow progenitor cells due to the toxic effect of aldehydes generated by alcohol oxidation. In summary, this study presents a novel view of the impact of acute alcohol intake on bone marrow cell proliferation in vivo.

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