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Nutritional implications in vascular endothelial cell metabolism
Bernhard Hennig
, Michal Toborek
, Craig J. McClain
, John N. Diana
Animal and Food Sciences
Toxicology and Cancer Biology
Research output
:
Contribution to journal
›
Article
›
peer-review
59
Scopus citations
Overview
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Dive into the research topics of 'Nutritional implications in vascular endothelial cell metabolism'. Together they form a unique fingerprint.
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Immunology and Microbiology
Cell Metabolism
100%
Vascular Endothelial Cell
100%
Atherosclerosis
100%
Oxidative Stress
75%
Fatty Acid
75%
Inflammation Response
50%
Blood Component
50%
Vascular Endothelium
25%
Cytokine Production
25%
Lipid Storage
25%
Lipid Composition
25%
Blood Vessel Tone
25%
Membrane Fluidity
25%
Cell Adhesion Proteins
25%
Cytokine
25%
Signal Transduction
25%
Transcription Factors
25%
Cell Growth
25%
Proteoglycan
25%
Medicine and Dentistry
Endothelial Cell
100%
Cell Metabolism
100%
Vascular Endothelial Cell
100%
Atherosclerosis
57%
Fatty Acid
42%
Oxidative Stress
42%
Serositis
28%
Fat Intake
28%
Antioxidant
28%
Blood Component
28%
Immune Response
14%
Cytokine
14%
Reactive Oxygen Species
14%
Cytokine Production
14%
Cell Growth
14%
Disease Process
14%
Transduction Mechanism
14%
Lipid Storage
14%
Vascular Endothelium
14%
Membrane Fluidity
14%
Blood Vessel Tone
14%
Signal Transduction
14%
Transcription Factors
14%
Proteoglycan
14%
Cell Adhesion Proteins
14%
Unsaturated Fatty Acid
14%
Biochemistry, Genetics and Molecular Biology
Oxidative Stress
100%
Cell Metabolism
100%
Dietary Fat
66%
Lipid
66%
Signal Transduction
33%
Metabolic Pathway
33%
Unsaturated Fatty Acid
33%
Cytokine Production
33%
Lipid Composition
33%
Lipid Storage
33%
Membrane Fluidity
33%
Blood Vessel Tone
33%
Cell Adhesion Proteins
33%
Transcription Factors
33%
Cell Growth
33%
Cytokine
33%
Proteoglycan
33%
Food Science
Antioxidant
100%
Fat Intake
100%
Proteoglycans
50%
Unsaturated Fatty Acid
50%
Lipid Composition
50%
Transcription Factor
50%
Veterinary Science and Veterinary Medicine
Oxidative Stress
100%
Metabolic Pathway
100%
Inflammation
66%
Transcription Factors
33%
Diseases
33%