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Home › Dataset Library › Shifted Metabolic Bias in Livers of Mice Lacking Hepatocytic Thioredoxin Reductase-1 Protects Against Acetaminophen Toxicity

Dataset: Shifted Metabolic Bias in Livers of Mice Lacking Hepatocytic Thioredoxin Reductase-1 Protects Against Acetaminophen Toxicity

Genetic disruption of thioredoxin reductase 1 protects against acetaminophen (APAP) toxicity. To determine the role of the thioredoxin...

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Genetic disruption of thioredoxin reductase 1 protects against acetaminophen (APAP) toxicity. To determine the role of the thioredoxin system on xenobiotic metabolism we challeneged wildtype and txnrd1liver-null mice with acetaminophen. Adult male wildtype and txnrd1 liver-null mice (C57BL6/J) were treated with either saline (PBS) or 100mg/kg APAP. Liver RNA was harvested eight hours after challenge and processed for microarray analysis. Comparison of 2 treatment conditions in 2 genotypes, biological replicates in triplicate.

Species:
mouse

Samples:
12

Source:
E-GEOD-37874

PubMed:
23743293

Updated:
Dec.12, 2014

Registered:
Nov.24, 2014


Factors: (via ArrayExpress)
Sample GENOTYPE COMPOUND
GSM929282 wildtype vehicle (saline)
GSM929282 wildtype vehicle (saline)
GSM929282 wildtype vehicle (saline)
GSM929285 wildtype acetaminophen (APAP)
GSM929285 wildtype acetaminophen (APAP)
GSM929285 wildtype acetaminophen (APAP)
GSM929288 txnrd1 null vehicle (saline)
GSM929288 txnrd1 null vehicle (saline)
GSM929288 txnrd1 null vehicle (saline)
GSM92929 txnrd1 null acetaminophen (APAP)
GSM92929 txnrd1 null acetaminophen (APAP)
GSM92929 txnrd1 null acetaminophen (APAP)

Tags

  • liver

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