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Phenotype of the Cyp1a1/1a2/1b1(-/-) triple-knockout mouse
Nadine Dragin
, Zhanquan Shi
, Rajat Madan
, Christopher L. Karp
, Maureen A. Sartor
,
Chi Chen
, Frank J. Gonzalez
, Daniel W. Nebert
Food Science and Nutrition
Research output
:
Contribution to journal
›
Article
›
peer-review
64
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Scopus citations
Overview
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Dive into the research topics of 'Phenotype of the Cyp1a1/1a2/1b1(-/-) triple-knockout mouse'. Together they form a unique fingerprint.
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Neuroscience
Metabolic Pathway
100%
Cholesterol
50%
Steroids
50%
cDNA Microarray
50%
Immunosuppression
50%
Ion Homeostasis
50%
Cytochrome P450 1B1
50%
Lipid
50%
Eicosanoid
50%
Carboxylic Acid
50%
Chromatin Assembly and Disassembly
50%
Organic Acid
50%
Cytochrome P450 1A1
50%
Hydrocephalus
50%
Anabolism
50%
Zymosan
50%
Biosynthesis
50%
Catabolism
50%
Keyphrases
Knock-in Mouse Model
100%
Cytochrome P450 1A1 (CYP1A1)
100%
Double Knockout
100%
Benzo[a]pyrene
33%
Urinary Metabolites
22%
Wild Mice
22%
CYP1B1
22%
Immunosuppression
11%
Liver
11%
Microarray
11%
Differential Expression
11%
Complementary DNA (cDNA)
11%
Molecular Pathways
11%
Carboxylic Acids
11%
Hydrocephalus
11%
Catabolism
11%
Metal Binding
11%
Principal Coordinate Analysis (PCoA)
11%
Cholesterol Metabolism
11%
Gene Ontology
11%
SOCS2
11%
Eicosanoid Metabolism
11%
Lipid Biosynthesis
11%
Steroid Biosynthesis
11%
Nucleosome Assembly
11%
Ion Homeostasis
11%
Cholesterol Biosynthesis
11%
Incomplete Penetrance
11%
Double Knockout Mice
11%
Hermaphroditism
11%
Zymosan-induced Peritonitis
11%
Cystic Ovary
11%
Organic Acid Metabolism
11%
Ontology Class
11%
Embryo Lethality
11%
Chromatin Assembly
11%
Gestational Day
11%
Metabolite Profile
11%
Functional Effects
11%
Immune Tissues
11%
Metabolite Patterns
11%
Slow Weight Gain
11%