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Defective glycerol metabolism in aquaporin 9 (AQP9) knockout mice
Aleksandra M. Rojek
, Mariusz T. Skowronski
, Ernst Martin Füchtbauer
, Annette C. Füchtbauer
, Robert A. Fenton
,
Peter Agre
, Jørgen Frøkiær
, Søren Nielsen
Bloomberg School of Public Health
Research output
:
Contribution to journal
›
Article
›
peer-review
196
Scopus citations
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Biochemistry, Genetics and Molecular Biology
Metabolic Pathway
100%
Aquaporin
100%
Knockout Mouse
100%
Glycerol
100%
Mouse
47%
Db/Db Mouse
17%
Glucose Blood Level
11%
Blood Level
5%
Monospecific Antibody
5%
Body Weight
5%
Hepatocyte
5%
Glucose Metabolism
5%
Triglyceride
5%
Wild Type Mouse
5%
Alkaline Phosphatase
5%
Free Fatty Acids
5%
Membrane Channel
5%
Physiological Stress
5%
Keyphrases
Knock-in Mouse Model
100%
Glycerol Metabolism
100%
AQP9
100%
Glycerol
35%
Blood Glucose
11%
LepR
11%
Immunohistochemical Analysis
5%
Plasma Parameters
5%
Physiological Stress
5%
Type 1 Diabetes Mellitus (T1DM)
5%
Cholesterol
5%
Triglycerides
5%
Oral Administration
5%
Hepatocytes
5%
Wild Mice
5%
Epidermis
5%
Glucose Metabolism
5%
Free Fatty Acids
5%
Alkaline Phosphatase
5%
Physiological Role
5%
Specific Labeling
5%
Aquaglyceroporin
5%
Vas Deferens
5%
Non-hepatic
5%
Detectable Labeling
5%
Hepatic Uptake
5%
Membrane Channels
5%
Epididymis
5%
Physical Abnormalities
5%
Mouse Plasma
5%
Expression Site
5%
Small Solutes
5%
Multiple Antibodies
5%
Glucose-urea
5%
Immunology and Microbiology
Knockout Mouse
100%
Aquaporin
100%
Mouse
47%
Db/Db Mouse
17%
Glucose Blood Level
11%
Monospecific Antibody
5%
Body Weight
5%
Wild Type Mouse
5%
Blood Level
5%
Glucose Metabolism
5%
Membrane Channel
5%
Physiological Stress
5%
Epididymis
5%
Vas Deferens
5%