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BACKGROUND: Intestinal bacteria are known to regulate the bile acid (BA) homeostasis via intestinal biotransformation of BAs and stimulating the expression of fibroblast growth factor 19 through intestinal nuclear farnesoid X receptor (FXR). On the other hand, BAs directly regula...

2017-11-23 | MTBLS545 | MetaboLights

BACKGROUND: Intestinal bacteria are known to regulate the bile acid (BA) homeostasis via intestinal biotransformation of BAs and stimulating the expression of fibroblast growth factor 19 through intestinal nuclear farnesoid X receptor (FXR). On the other hand, BAs directly regula...

2017-11-23 | MTBLS547 | MetaboLights

BACKGROUND: Intestinal bacteria are known to regulate the bile acid (BA) homeostasis via intestinal biotransformation of BAs and stimulating the expression of fibroblast growth factor 19 through intestinal nuclear farnesoid X receptor (FXR). On the other hand, BAs directly regula...

2017-11-23 | MTBLS548 | MetaboLights

BACKGROUND: Intestinal bacteria are known to regulate the bile acid (BA) homeostasis via intestinal biotransformation of BAs and stimulating the expression of fibroblast growth factor 19 through intestinal nuclear farnesoid X receptor (FXR). On the other hand, BAs directly regula...

2017-11-23 | MTBLS546 | MetaboLights
Chronic nutrient excess leads to metabolic disorders and insulin resistance. Activation of stress-responsive pathways via Nrf2 activation contributes to energy metabolism regulation. Here, inducible activation of Nrf2 in mice and transgenesis of the Nrf2 target, NQO1, conferred protection from diet-...
2024-05-23 | MTBLS2085 | MetaboLights
Deletion of the glycerol channel aquaporin-9 (Aqp9) reduces postprandial blood glucose levels in leptin receptor deficient (db/db) obese mice on a C57BL/6×C57BLKS mixed genetic background. Furthermore, shRNA mediated reduction of Aqp9 expression reduces liver triacylglycerol (TAG) accumulation in a ...
2015-09-28 | MTBLS219 | MetaboLights

Exploring the Effects of Different Exercise Modalities on Skeletal Muscle Function in High-Fat Diet-Induced Obese Mice Based on Gut Microbiota and Metabolomics

2026-02-09 | MTBLS13878 | MetaboLights
Not available
ORGANISM(S): Homo sapiens 
Meta-analyses suggest that yogurt consumption reduces type 2 diabetes incidence in humans, but the molecular basis of these observations remains unknown. Here we show that dietary yogurt intake preserves whole-body glucose homeostasis and prevents hepatic insulin resistance and liver steatosis in a ...
2022-02-03 | MTBLS442 | MetaboLights
To evaluate wether miRNA expression patterns contributes to obesity total RNA were purified from subcutaneous adipose tissue (SAT)and used in miRNA microarrays. Platform contain LNA-modified probes for all human miRNAs present in release 8.2 of the miRBase microRNA Registry. Two RNA pools from 3 n...
ORGANISM(S): Homo sapiens 
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