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Metabolomics of prolonged fasting in humans reveals new catabolic markers
I. Rubio-Aliaga
, B. de Roos
, S.J. Duthie
, L.K. Crosley
, C. Mayer
, G. Horgan
, I.J. Colquhoun
, G. le Gall
, F. Huber
, W. Kremer
, M. Rychlik
, S. Wopereis
, B. van Ommen
, G. Schmidt
, C. Heim
,
F.G. Bouwman
,
E.C.M. Mariman
, F. Mulholland
, I.T. Johnson
, A.C. Polley
R.M. Elliott, H. Daniel
*
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*
Corresponding author for this work
Humane Biologie
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Keyphrases
Metabolomics
100%
Catabolic
100%
Prolonged Fasting
100%
Liquid Chromatography-tandem Mass Spectrometry (LC-MS/MS)
66%
Urine Samples
33%
Healthy Volunteers
33%
Gas Chromatography-mass Spectrometry
33%
Amino Acids
33%
Leptin
33%
Intra-individual
33%
Gas Chromatography
33%
Fasting Condition
33%
Metabolomics Approach
33%
Plasma Samples
33%
Nuclear Magnetic Resonance
33%
Growth Factors
33%
Inter-individual Variation
33%
Insulin-like
33%
Fasted State
33%
Metabolic Challenge
33%
Human Metabolism
33%
Plasma Free Fatty Acids
33%
Glycerol
33%
New Entity
33%
Metabolic Network
33%
Ketone Bodies
33%
Gas-liquid
33%
Fasting Period
33%
Overnight Fasting
33%
Fuel Management
33%
Multiple Correlation
33%
α-keto Acids
33%
Biochemistry, Genetics and Molecular Biology
Metabolite
100%
Metabolomics
100%
Blood Plasma
100%
Liquid Chromatography-Mass Spectrometry
66%
Glycerol
33%
Normal Human
33%
Fatty Acid Blood Level
33%
Urine Sampling
33%
Insulin-Like Growth Factor 1
33%
Metabolic Network
33%
Human Metabolism
33%
Metabolome
33%
Leptin
33%
Ketone Bodies
33%
Gas Chromatography
33%
INIS
humans
100%
fasting
100%
plasma
44%
metabolites
33%
range
22%
regulations
11%
correlations
11%
variations
11%
fatty acids
11%
amino acids
11%
urine
11%
mass spectrometry
11%
liquid column chromatography
11%
metabolism
11%
concentration
11%
gas chromatography
11%
insulin
11%
leptin
11%
hormones
11%
plasticity
11%
growth factors
11%
nuclear magnetic resonance
11%
ketones
11%
keto acids
11%
glycerol
11%
fuel management
11%