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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
OBJECTIVE: To characterize the hormonal milieu and adipose gene expression in response to catch-up growth (CUG), a growth pattern associated with obesity and diabetes risk, in a mouse model of low birth weight (LBW). RESEARCH DESIGN AND METHODS: ICR mice were food restricted by 50% from gestational ...
ORGANISM(S): Mus musculus 
Mammalian transcriptomes display complex circadian rhythms with multiple phases of gene expression that cannot be accounted for by current models of the molecular clock.  We have determined the underlying mechanisms by measuring nascent RNA transcription around the clock in mouse liver. Unbiased ex...
ORGANISM(S): Mus musculus 
MicroRNAs (miRNAs) are non-coding RNA molecules involved in post-transcriptional control of gene expression of a wide number of genes, including those involved in glucose homeostasis. Type 2 diabetes (T2D) is characterized by hyperglycaemia and defects in insulin secretion and action at target tissu...
ORGANISM(S): Rattus norvegicus 

The International Standards for Cytogenomic Arrays (ISCA) Consortium is a rapidly growing group of clinical cytogenetics and molecular genetics laboratories committed to improving quality of patient care related to clinical genetic testing using new molecular cytogenetic technologies including ar...

Examination of gene expression associated with hypoxia treatment of parental Fawn Hooded Hypertensive (FHH) and consomic Brown Norway (FHH1BN) rat strain. FHH1BN rats are derived from introgression of chromosome 1 from BN rats into the FHH genetic background.
ORGANISM(S): Rattus rattus 
Examination of gene expression associated with hypoxia treatment of parental salt sensitive (SS) and consomic Brown Norway (SSYBN) rat strain. SSYBN rats are derived from introgression of chromosome Y from BN rats into the SS genetic background.
ORGANISM(S): Rattus rattus 
Examination of gene expression changes during hypoxia of the Dahl salt sensative (SS) rat and SS11BN consomic rat. SS11BN rats are derived from introgression of chromosome 11 from Brown Norway (BN) rat into the SS genetic background.
ORGANISM(S): Rattus norvegicus 
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