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The effect of cannabis toxicity on a model microbiome bacterium epitomized by a panel of bioluminescent E. coli.

Authors :
Harpaz, Dorin
Veltman, Boris
Sadeh, Yael
Marks, Robert S.
Bernstein, Nirit
Eltzov, Evgeni
Source :
Chemosphere. Jan2021, Vol. 263, pN.PAG-N.PAG. 1p.
Publication Year :
2021

Abstract

The world acceptance of medical cannabis slowly widens. Cannabinoids are known as the main therapeutic active compounds in the cannabis plant, yet their bioactive physiological effects are still unknown. In this study, the mode of action of nine selected cannabinoids was examined using a bioluminescent bacterial panel, as well as the extracts of six different cannabis varieties and cannabinoids standards artificial mixtures. The bacterial panel was composed of genetically modified E. coli bacteria that is commonly found in the gut microbiome, to which a lux operon was added to various stress promoters. The panel was exposed to the cannabinoids in order to identify bacterial defense mechanism, via the aforementioned specific stress types response. This enables the understanding of the toxicity mode of action of cannabinoids. From all the tested cannabinoids, only delta-9-tetrahydrocannabinol (THC) and delta-9-tetrahydrocannabinolic acid A (THCA) produced a genotoxic effect, while the other tested cannabinoids, demonstrated cytotoxic or oxidative damages. Unlike pure cannabinoids, cannabis plant extracts exhibited mostly genotoxicity, with minor cytotoxicity or oxidative stress responses. Moreover, cannabinoids standards artificial mixtures produced a different response patterns compared to their individual effects, which may be due to additional synergistic or antagonistic reactions between the mixed chemicals on the bacterial panel. The results showed that despite the lack of cannabigerol (CBG), cannabidivarin (CBDV), cannabinol (CBN), and cannabichromene (CBC) in the artificial solution mimicking the CN6 cannabis variety, a similar response pattern to the cannabinoids standards mixture was obtained. This work contributes to the understanding of such correlations and may provide a realistic view of cannabinoid effects on the human microbiome. Cannabinoids are known as the main therapeutic active compounds in the cannabis plant, yet their bioactive physiological effects are still unknown. In this study, the mode of action of nine selected cannabinoids was examined using a bioluminescent bacterial panel, as well as cannabis plant extracts and mixtures. The bacterial panel was composed of genetically modified E. coli bacteria that is commonly found in the gut microbiome, to which a lux operon was added to various stress promoters. The panel was exposed to the cannabinoids in order to identify the bacterial toxicity defense mechanism. Image 1 • Cannabinoids toxicity mode of action was tested by a bioluminescent bacterial panel. • Three stress types were compared: genotoxic, cytotoxic and oxidative effects. • Genetically modified E. coli bacteria were used as a model of the gut microbiome. • THC/TCHA had genotoxic effects, other cannabinoids had cytotoxic/oxidative effects. • Cannabis extracts had genotoxic effects due to synergistic/antagonistic reactions. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00456535
Volume :
263
Database :
Academic Search Index
Journal :
Chemosphere
Publication Type :
Academic Journal
Accession number :
147344712
Full Text :
https://doi.org/10.1016/j.chemosphere.2020.128241