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Plasma Metabolomic Changes in Mice With Time-restricted Feeding-attenuated Spontaneous Metastasis of Lewis Lung Carcinoma
by
YAN, LIN
, RUST, BRET M.
, PICKLO, MATTHEW J.
in
alpha-Tocopherol - blood
/ Amino acids
/ Animals
/ Cancer
/ Carcinoma, Lewis Lung - blood
/ Carcinoma, Lewis Lung - diet therapy
/ Cholestanol - blood
/ Cholesterol
/ Cholesterol - blood
/ Circadian rhythm
/ Diet
/ Diet, High-Fat - adverse effects
/ Discriminant analysis
/ Disease
/ Disease Models, Animal
/ Docosahexaenoic acid
/ Docosahexaenoic Acids - blood
/ Energy
/ Fasting - blood
/ Fasting - physiology
/ Fatty acids
/ Feeding
/ Gene expression
/ High fat diet
/ Homeostasis
/ Humans
/ Insulin - blood
/ Isoleucine
/ Isoleucine - blood
/ Laboratory animals
/ Lactic acid
/ Lactic Acid - blood
/ Leucine
/ Leucine - blood
/ Lung carcinoma
/ Lungs
/ Metabolism
/ Metabolites
/ Metabolomics
/ Metastases
/ Metastasis
/ Mice
/ Multivariate analysis
/ Neoplasm Metastasis
/ Nutrition research
/ Phenylalanine
/ Phenylalanine - blood
/ Plasma
/ Pyruvic acid
/ Pyruvic Acid - blood
/ Tocopherol
/ Tumorigenesis
/ Variance analysis
2020
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Plasma Metabolomic Changes in Mice With Time-restricted Feeding-attenuated Spontaneous Metastasis of Lewis Lung Carcinoma
by
YAN, LIN
, RUST, BRET M.
, PICKLO, MATTHEW J.
in
alpha-Tocopherol - blood
/ Amino acids
/ Animals
/ Cancer
/ Carcinoma, Lewis Lung - blood
/ Carcinoma, Lewis Lung - diet therapy
/ Cholestanol - blood
/ Cholesterol
/ Cholesterol - blood
/ Circadian rhythm
/ Diet
/ Diet, High-Fat - adverse effects
/ Discriminant analysis
/ Disease
/ Disease Models, Animal
/ Docosahexaenoic acid
/ Docosahexaenoic Acids - blood
/ Energy
/ Fasting - blood
/ Fasting - physiology
/ Fatty acids
/ Feeding
/ Gene expression
/ High fat diet
/ Homeostasis
/ Humans
/ Insulin - blood
/ Isoleucine
/ Isoleucine - blood
/ Laboratory animals
/ Lactic acid
/ Lactic Acid - blood
/ Leucine
/ Leucine - blood
/ Lung carcinoma
/ Lungs
/ Metabolism
/ Metabolites
/ Metabolomics
/ Metastases
/ Metastasis
/ Mice
/ Multivariate analysis
/ Neoplasm Metastasis
/ Nutrition research
/ Phenylalanine
/ Phenylalanine - blood
/ Plasma
/ Pyruvic acid
/ Pyruvic Acid - blood
/ Tocopherol
/ Tumorigenesis
/ Variance analysis
2020
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Plasma Metabolomic Changes in Mice With Time-restricted Feeding-attenuated Spontaneous Metastasis of Lewis Lung Carcinoma
by
YAN, LIN
, RUST, BRET M.
, PICKLO, MATTHEW J.
in
alpha-Tocopherol - blood
/ Amino acids
/ Animals
/ Cancer
/ Carcinoma, Lewis Lung - blood
/ Carcinoma, Lewis Lung - diet therapy
/ Cholestanol - blood
/ Cholesterol
/ Cholesterol - blood
/ Circadian rhythm
/ Diet
/ Diet, High-Fat - adverse effects
/ Discriminant analysis
/ Disease
/ Disease Models, Animal
/ Docosahexaenoic acid
/ Docosahexaenoic Acids - blood
/ Energy
/ Fasting - blood
/ Fasting - physiology
/ Fatty acids
/ Feeding
/ Gene expression
/ High fat diet
/ Homeostasis
/ Humans
/ Insulin - blood
/ Isoleucine
/ Isoleucine - blood
/ Laboratory animals
/ Lactic acid
/ Lactic Acid - blood
/ Leucine
/ Leucine - blood
/ Lung carcinoma
/ Lungs
/ Metabolism
/ Metabolites
/ Metabolomics
/ Metastases
/ Metastasis
/ Mice
/ Multivariate analysis
/ Neoplasm Metastasis
/ Nutrition research
/ Phenylalanine
/ Phenylalanine - blood
/ Plasma
/ Pyruvic acid
/ Pyruvic Acid - blood
/ Tocopherol
/ Tumorigenesis
/ Variance analysis
2020
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Plasma Metabolomic Changes in Mice With Time-restricted Feeding-attenuated Spontaneous Metastasis of Lewis Lung Carcinoma
Journal Article
Plasma Metabolomic Changes in Mice With Time-restricted Feeding-attenuated Spontaneous Metastasis of Lewis Lung Carcinoma
2020
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Overview
Time-restricted feeding (TRF) during the dark phase of the day restores metabolic homeostasis in mice.
We performed untargeted metabolomic analysis on plasma from mice subjected to TRF that attenuates high-fat diet-enhanced spontaneous metastasis of Lewis lung carcinoma (LLC).
Twenty-four of 152 identified metabolites differed among the four dietary groups (non-LLC-bearing mice fed the AIN93G diet and LLC-bearing mice fed the AIN93G, the high-fat diet (HFD), or TRF of the HFD). Component 1 of sparse partial least squares-discriminant analysis showed a clear separation between non-LLC-bearing and LLC-bearing mice. Major metabolites responsible for the changes were elevations in α-tocopherol, docosahexaenoic acid, cholesterol, dihydrocholestrol, isoleucine, leucine, and phenylalanine and decreases in lactic acid and pyruvic acid in LLC-bearing mice particularly those fed the HFD. Time-restricted feeding shifted the metabolic profile of LLC-bearing mice towards that of non-LLC-bearing controls.
Time-restricted feeding improves metabolic profile of LLC-bearing mice.
Publisher
International Institute of Anticancer Research
Subject
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