Gut-gonad crosstalk in mice exposed to a “chemical cocktail” combining metabolomics and microbial profile by amplicon sequencing

Testes are very prone to be damaged by environmental pollutants, but there is a lack of information about the impact of “chemical cocktails” (CC) on the testicular metabolome and the possible influence in the gut-gonad crosstalk. For this, BALB/c mice were given flumequine and diclofenac orally in f...

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Veröffentlicht in:Food and chemical toxicology 2024-06, Vol.188, p.114627-114627, Article 114627
Hauptverfasser: Parra-Martínez, C., Selma-Royo, M., Callejón-Leblic, B., Collado, M.C., Abril, N., García-Barrera, T.
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Sprache:eng
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Zusammenfassung:Testes are very prone to be damaged by environmental pollutants, but there is a lack of information about the impact of “chemical cocktails” (CC) on the testicular metabolome and the possible influence in the gut-gonad crosstalk. For this, BALB/c mice were given flumequine and diclofenac orally in food and potentially toxic trace elements (Cd, Hg, As) in drinking water. A mice group was supplemented with selenium, a well-known antagonist against many pollutants. Our results revealed that the steroid 5-alpha-androstan-17-beta-ol propionate, suggested as a parameter of androgenicity independent of testosterone levels, proline that improves reproductive indicators in male rabbits affected by environmental stress) among others metabolites are only present after CC exposure with rodent and selenium supplemented diet. Selenium also antagonized the up-or down-regulation of anandamide (20:l, n-9) (p  0,05 and FC 0.74 of CC-Se vs C), that regulates gonadotropin-releasing hormones in mammals, 2,3-dinor-11b-PGF2a (p  0,05 and FC 0.34 of CC-Se vs C), which has been related with reproductive hormones, besides others testicular metabolites altered by the exposure to the CC and reversed the levels to control. Moreover, numerous significant associations between gut microbes and testicular metabolites indicated a possible impact of pollutants in the testes mediated by gut microbiota due to a gut-gonad crosstalk. •Our multi-platform approach confirmed the significant impact of “chemical cocktails” on the testicular metabolome.•Identified metabolites disrupt key reproductive processes.•Our study unveils a significant “gut-gonad crosstalk” through the gut microbiota-testicular metabolites associations.•Selenium supplementation is proposed as a potential countermeasure for chemical cocktail toxicity.
ISSN:0278-6915
1873-6351
DOI:10.1016/j.fct.2024.114627