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The aim of this study was to define and compare the molecular blueprints of chronic alcohol use in the liver and skeletal muscle using an established pre-clinical mouse model.

2025-12-11 | MTBLS12616 | MetaboLights
The objective of this study was to determine changes in gene expression within the extended amygdala following binge-like alcohol drinking by adolescent alcohol-preferring (P) rats. Starting at 28 days of age, P rats were given concurrent access to 15 and 30 % ethanol for 3 one-h sessions for 5 cons...
ORGANISM(S): Rattus norvegicus 
The objective of this study was to determine changes in gene expression within the extended amygdala following binge-like alcohol drinking by adolescent alcohol-preferring (P) rats. Starting at 28 days of age, P rats were given concurrent access to 15 and 30 % ethanol for 3 one-h sessions for 5 cons...
ORGANISM(S): Rattus norvegicus 
The etiology of alcohol dependence is not completely understood. Increasing evidence reveals that gut microbiota dysbiosis is associated with certain psychiatric disorders, including alcoholism, through the 'microbiota-gut-brain' axis. The aims were to evaluate the effect of alcohol abuse on the gut...
2021-07-30 | MTBLS2688 | MetaboLights

To explore the diet-microbiome-host-drug efficacy axis in chronic alcohol-increased anaesthetic use. Fecal metabolites were comprehensively extracted, detected and analyzed to identify differential metabolic profiles induced by chronic alcohol consumption, providing a basis for revealing the corr...

2026-01-25 | MTBLS13761 | MetaboLights
The objective of this study was to determine changes in gene expression within the extended amygdala following binge-like drinking by alcohol-preferring (P) rats. Adult male P rats were given 1-hr access to 15 and 30% ethanol (EtOH) three times daily for 8 weeks. Rats (n = 10/time point for EtOH and...
ORGANISM(S): Rattus norvegicus 
Background: The incidence of alcohol and tobacco co-abuse is as high as 80%. The molecular mechanism underlying this comorbidity is virtually unknown but interactions between these drugs have important implications for the development of, and recovery from drug dependence. Methods: We investigat...
ORGANISM(S): Homo sapiens 
The objective of this study was to test the hypothesis that innate differences in gene expression in the brain could; contribute to the differences in alcohol drinking or response to alcohol between adult male inbred alcohol-preferring (iP) and -non-preferring; (iNP) rats. Gene expression was determ...
ORGANISM(S): Rattus norvegicus 
Here, we identify persistent and substantial variation in ethanol drinking behavior within an inbred mouse strain and utilize this model to identify gene networks influencing such non-genetic variation in ethanol intake. C57BL/6NCrl mice showed persistent inter-individual variation of ethanol intake...
ORGANISM(S): Mus musculus 
We analyzed cerebral cortices (CTX) and midbrains (MB) from male C57BL/6J mice subjected to a CIE, 2BC paradigm, which induces heavy drinking and represents one of the best available animal models for alcohol dependence and relapse drinking. Samples from CTX and MB of 21 mice: 7 Naïve, 7 Air-2BC, an...
ORGANISM(S): Mus musculus 
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