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Alhagi-honey (AH) is a well-established traditional ethnic medicine with advantageous effects against diarrhea and headaches. We aim to explore the preventive effect of AH on liver damage induced by heat stress (HS) and its underlying mechanism. HS models were established by thermostat, and mice ...

2024-09-23 | MTBLS10021 | MetaboLights

Microplastics pollution is prevalent in livestock environments, especially in ruminant feed. Exposure to microplastics can damage the gastrointestinal barrier, alter microbiota, and lead to organ damage. Despite its impact on cattle farming and potential human health risks, the effects of microp...

2025-09-08 | MTBLS12958 | MetaboLights

Microplastics pollution is prevalent in livestock environments, especially in ruminant feed. Exposure to microplastics can damage the gastrointestinal barrier, alter microbiota, and lead to organ damage. Despite its impact on cattle farming and potential human health risks, the effects of micropl...

2025-09-08 | MTBLS12959 | MetaboLights

Background and Objectives: Obesity is often accompanied by hepatic metabolic disorders and chronic low-grade inflammation. While combined aerobic and resistance exercise is considered an intervention to improve body composition, its systematic regulatory effects on the hepatic metabolic profile r...

2026-07-11 | MTBLS15011 | MetaboLights
Metabolic dysfunction-associated alcohol-related liver disease (MetALD) is characterized by hepatic steatosis, oxidative stress, inflammation, and gut microbiota dysbiosis resulting from the coexistence of metabolic dysfunction and alcohol consumption. Penthorum chinense Pursh is a traditional edibl...
2026-06-10 | MTBLS14735 | MetaboLights
This study systematically investigated the impact of ACE2 knockout (ACE2KO) on hepatic metabolic homeostasis and its molecular mechanisms, using integrated transcriptomic, proteomic, and metabolomic profiling. ACE2 deficiency exacerbates hepatic lipid accumulation, as evidenced by elevated total cho...
2025-06-23 | MTBLS12389 | MetaboLights

Tetracycline antibiotics (TETs) cause hepatotoxicity via gut-liver axis disruption and oxidative stress. This study evaluated whether formononetin (FMN), a natural isoflavone, alleviates TET-induced liver injury through microbiota-metabolite-transcriptome coordination. Using network toxicology an...

2025-10-17 | MTBLS13161 | MetaboLights

Tetracycline antibiotics (TETs) cause hepatotoxicity via gut-liver axis disruption and oxidative stress. This study evaluated whether formononetin (FMN), a natural isoflavone, alleviates TET-induced liver injury through microbiota-metabolite-transcriptome coordination. Using network toxicology an...

2025-10-14 | MTBLS13138 | MetaboLights
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