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N-acetylcysteine supplementation increases exercise performance and reduces oxidative stress only in individuals with low levels of glutathione

Article ID Journal Published Year Pages File Type
8266279 Free Radical Biology and Medicine 2018 42 Pages PDF
Keywords
GSSGGPXGSHNADPHN-acetylcysteineNADP+Hydrogen peroxideAntioxidantsSODSuperoxide dismutaseIndividualityreduced form of nicotinamide adenine dinucleotide phosphateLOOHLOHlipid hydroperoxidesH2O2exercisereduced glutathioneoxidized glutathioneglutathione reductaseglutathione peroxidaseSuperoxide ion
Related Topics
Life Sciences Biochemistry, Genetics and Molecular Biology Ageing
Preview
N-acetylcysteine supplementation increases exercise performance and reduces oxidative stress only in individuals with low levels of glutathione
Authors
Vassilis Paschalis, Anastasios A. Theodorou, Nikos V. Margaritelis, Antonios Kyparos, Michalis G. Nikolaidis,
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Journal
Free Radical Biology and Medicine
Journal: Free Radical Biology and Medicine
Related Categories
GSSG
GPX
GSH
NADPH
N-acetylcysteine
NADP+
Hydrogen peroxide
Antioxidants
SOD
Superoxide dismutase
Individuality
reduced form of nicotinamide adenine dinucleotide phosphate
LOOH
LOH
lipid hydroperoxides
H2O2
exercise
reduced glutathione
oxidized glutathione
glutathione reductase
glutathione peroxidase
Superoxide ion
Ageing
Biochemistry
Biochemistry, Genetics and Molecular Biology (General)
Biophysics
Biotechnology
Cancer Research
Cell Biology
Clinical Biochemistry
Developmental Biology
Endocrinology
Genetics
Molecular Biology
Molecular Medicine
Physiology
Structural Biology
Related Journals
Neurobiology of Aging
Revista Española de Geriatría y Gerontología
Ageing Research Reviews
Archives of Gerontology and Geriatrics
Biochimica et Biophysica Acta (BBA) - Molecular Basis of Disease
Experimental Gerontology
Journal of Geriatric Oncology
Journal of the Neurological Sciences
Maturitas
Mechanisms of Ageing and Development
Parkinsonism & Related Disorders
Redox Biology
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