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In vivo metabolic response of glucose to dichloroacetate in humans
Jeff A. Brown
, Dennis C. Gore
Research output
:
Contribution to journal
›
Article
›
peer-review
11
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Scopus citations
Overview
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Dive into the research topics of 'In vivo metabolic response of glucose to dichloroacetate in humans'. Together they form a unique fingerprint.
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Immunology and Microbiology
Alanine
80%
Blood Plasma
20%
Calorimetry
20%
Gluconeogenesis
80%
Glucose
100%
Glucose Blood Level
80%
Glucose Oxidation
40%
Glucose Utilization
20%
Insulin
20%
Lactate
80%
Lactic Acid
80%
Leg
60%
Precursor
20%
Biochemistry, Genetics and Molecular Biology
Alanine
80%
Blood Plasma
20%
Calorimetry
20%
Gluconeogenesis
80%
Glucose
100%
Glucose Blood Level
80%
Glucose Oxidation
40%
Glucose Utilization
20%
Hyperglycemia
60%
Insulin
20%
Metabolic Pathway
100%
Precursor
20%
Neuroscience
Alanine
33%
Blood Plasma
41%
Calorimetry
8%
Diabetes Mellitus
8%
Dichloroacetic Acid
100%
Gluconeogenesis
33%
Glucose
100%
Hyperglycemia
25%
In Vivo
100%
Insulin
8%
Metabolic Pathway
100%
Keyphrases
Compensatory Changes
8%
Diabetic
8%
Dichloroacetamide (DCAcAm)
100%
Efficiency Improvement
8%
Gluconeogenesis
16%
Glucose Clearance
8%
Glucose Consumption
8%
Glucose Oxidation
16%
Glucose Production
16%
Glucose Utilization
8%
Glucose/lactate
8%
Human in Vivo
8%
Hyperglycemia
16%
Indirect Calorimetry
8%
Insulin
8%
Lactate
25%
Metabolic Alterations
8%
Metabolic Response
100%
Net Balance
25%
Plasma Concentration
8%
Plasma Glucose
33%
Precursor Substrates
8%
Pyruvate Oxidation
8%
Severely Ill Patients
16%
Stress Hyperglycemia
8%
Veterinary Science and Veterinary Medicine
Blood Plasma
100%
Insulin
20%
Metabolic Pathway
100%