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Assessing mTOR Pathway Signaling by 5-OXO-ETE and Hydroxystearic Acid
Emily Oe
, Alexandra Oxford
, Alex Soto
, Abir Rahman
,
Brad Morrison
Biological Sciences
Boise State University
Research output
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Contribution to conference
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Dive into the research topics of 'Assessing mTOR Pathway Signaling by 5-OXO-ETE and Hydroxystearic Acid'. Together they form a unique fingerprint.
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Keyphrases
Autophagy
100%
Mammalian Target of Rapamycin (mTOR)
100%
12-hydroxystearic Acid
100%
Pathway Signaling
100%
Human Disease
33%
Lipids
33%
Protein Aggregates
16%
Therapeutic Implications
16%
Molecular Mechanism
16%
Cellular Process
16%
Parkinson's Disease
16%
Alzheimer's Disease
16%
Alzheime's Disease
16%
Autophagy Dysfunction
16%
Clinical Treatment
16%
Lipid Analysis
16%
MTOR Signaling
16%
Lipid Regulators
16%
Autophagic Activity
16%
Innovative Therapies
16%
Noncanonical Autophagy
16%
Biochemistry, Genetics and Molecular Biology
Autophagy
100%
Signal Transduction
100%
Mammalian Target of Rapamycin
100%
Lipid
37%
Hope
12%
Lipidomics
12%
mTOR Signaling
12%
Molecular Mechanism
12%
Pharmacology, Toxicology and Pharmaceutical Science
Lipid
100%
Diseases
66%
Alzheimer's Disease
33%
Parkinson's Disease
33%
Protein Aggregate
33%
Cellular Processes
33%
Neuroscience
Cell Signaling
100%
Autophagy
100%
Lipid
37%
Alzheimer's Disease
12%
Parkinson's Disease
12%
Protein Aggregate
12%
mTOR Signaling
12%