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Investigation of in vivo fatty acid metabolism in AFABP/aP2
-/-
mice
Rachel A. Baar
, Carlos S. Dingfelder
, Lisa A. Smith
,
David A. Bernlohr
, Chaodong Wu
, Alex J. Lange
, Elizabeth J. Parks
Metabolic and Systems Biology (BMBB)
Metabolic and Systems Biology (TMED)
Research output
:
Contribution to journal
›
Article
›
peer-review
102
Scopus citations
Overview
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Dive into the research topics of 'Investigation of in vivo fatty acid metabolism in AFABP/aP2
-/-
mice'. Together they form a unique fingerprint.
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Keyphrases
Fatty Acid Metabolism
100%
Non-esterified Fatty Acids
100%
C57BL
57%
Fatty Acids
42%
Liver
28%
Stable Isotopes
14%
Lipid Metabolism
14%
Liver Tissue
14%
In Situ
14%
In Vitro Study
14%
High-fat Diet
14%
Adipocyte Fatty Acid-binding Protein (A-FABP)
14%
Efflux
14%
Substrate Oxidation
14%
Triacylglycerol
14%
Metabolic Processes
14%
Indirect Calorimetry
14%
Fasted State
14%
Dietary Fatty Acids
14%
Fed State
14%
Preferential Utilization
14%
Fatty Acid Release
14%
Fatty Acid Utilization
14%
Meal Feeding
14%
Fatty Acid Flux
14%
Metabolic Impact
14%
Food Science
High Fat Food
100%
Fat Intake
100%
Binding Protein
100%
Calorimetry
100%
Agricultural and Biological Sciences
Fatty Acid Metabolism
100%
Mouse
100%
Fatty Acids
100%
Adipose Tissue
25%
in Vitro Studies
8%
Triglyceride
8%
High Fat Food
8%
Calorimetry
8%
Fatty Acid-Binding Protein
8%
Adipocyte
8%
Lipid Metabolism
8%
Biochemistry, Genetics and Molecular Biology
Fatty Acid Metabolism
100%
Fatty Acid Blood Level
100%
Fatty Acid-Binding Protein
20%
Triglyceride
20%
Lipid Metabolism
20%
Wild Type
20%
In Vitro Study
20%
Dietary Fat
20%
Calorimetry
20%
Adipocyte
20%