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Mitochondrial metabolism underlies hyperoxic cell damage
Jian Li
, Xueshan Gao
, Mingwei Qian
, John W. Eaton
Section of Medical Oncology
Research output
:
Contribution to journal
›
Article
›
peer-review
63
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Scopus citations
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Keyphrases
Reactive Oxygen Species Production
100%
Cell Damage
100%
Hyperoxia
100%
Mitochondrial Metabolism
100%
Hyperoxic
100%
Respiration
75%
HeLa Cells
75%
Mitochondria
50%
Mitochondrium
50%
Non-associated
25%
Cell Death
25%
Reactive Oxygen Species
25%
Enhanced Tolerance
25%
Carbonyl
25%
Cyanide
25%
Mitochondrial Proteins
25%
Hydrogen Peroxide
25%
Mitochondrial Reactive Oxygen Species (mtROS)
25%
Chloramphenicol
25%
Protein Carbonyls
25%
Pulmonary Pathology
25%
Ocular Pathology
25%
Tert-butyl Hydroperoxide (t-BHP)
25%
Uncoupler
25%
Mitochondrial Reactive Oxygen Species Production
25%
Species Susceptibility
25%
Aconitase
25%
Medicine and Dentistry
Cell Damage
100%
Reactive Oxygen Species
100%
Mitochondrial Respiration
100%
Hyperoxia
66%
Mitochondrion
33%
Cell Death
16%
Oxidizing Agent
16%
Hydrogen Peroxide
16%
Pulmonary Pathology
16%
Ocular Pathology
16%
Tert Butyl Hydroperoxide
16%
Mitochondrial Protein
16%
Chloramphenicol
16%
Aconitase
16%
Carbonyl Cyanide Chlorophenylhydrazone
16%
Immunology and Microbiology
Cell Damage
100%
Hyperoxia
100%
Mitochondrial Respiration
100%
Hela Cell
75%
Wild Type
50%
Mitochondrion
50%
Cell Death
25%
Hydrogen Peroxide
25%
Susceptibility
25%
Neuroscience
Reactive Oxygen Species
100%
Cell Damage
100%
Mitochondrial Respiration
100%
Hyperoxia
66%
Mitochondrion
33%
Cell Death
16%
Hydrogen Peroxide
16%
Mitochondrial Protein
16%
Oxidizing Agent
16%
Aconitate Hydratase
16%
Chloramphenicol
16%
Agricultural and Biological Sciences
HeLa
100%
Cell Damage
100%
Mitochondrion
66%
Chloramphenicol
33%
Aconitate Hydratase
33%
Cell Death
33%
Pharmacology, Toxicology and Pharmaceutical Science
Reactive Oxygen Metabolite
100%
Oxidizing Agent
16%
Hydrogen Peroxide
16%
Mitochondrial Protein
16%
Chloramphenicol
16%
Tert Butyl Hydroperoxide
16%
Aconitase
16%
Carbonyl Cyanide Chlorophenylhydrazone
16%