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The Integrative Role of Sulforaphane in Preventing Inflammation, Oxidative Stress and Fatigue: A Review of a Potential Protective Phytochemical
by
Ruhee, Ruheea Taskin
, Suzuki, Katsuhiko
in
Binding sites
/ bioactive compounds
/ Bioavailability
/ Brassicaceae
/ Cancer
/ Chronic illnesses
/ clinical trials
/ cruciferous vegetables
/ Cytokines
/ Dietary supplements
/ Enzymes
/ Epidemiology
/ exercise
/ Fatigue
/ Functional foods & nutraceuticals
/ gene activation
/ Health aspects
/ Inflammation
/ lifestyle
/ Metabolites
/ NF-κB
/ NF-κB protein
/ Nrf2
/ NRF2 protein
/ Nuclear transport
/ Organic sulfur compounds
/ Oxidative stress
/ Pharmacokinetics
/ Phytochemicals
/ Proteins
/ Reactive oxygen species
/ Review
/ Reviews
/ Signal transduction
/ Studies
/ Sulforaphane
/ transcription factor NF-kappa B
/ Urine
/ Vegetables
2020
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The Integrative Role of Sulforaphane in Preventing Inflammation, Oxidative Stress and Fatigue: A Review of a Potential Protective Phytochemical
by
Ruhee, Ruheea Taskin
, Suzuki, Katsuhiko
in
Binding sites
/ bioactive compounds
/ Bioavailability
/ Brassicaceae
/ Cancer
/ Chronic illnesses
/ clinical trials
/ cruciferous vegetables
/ Cytokines
/ Dietary supplements
/ Enzymes
/ Epidemiology
/ exercise
/ Fatigue
/ Functional foods & nutraceuticals
/ gene activation
/ Health aspects
/ Inflammation
/ lifestyle
/ Metabolites
/ NF-κB
/ NF-κB protein
/ Nrf2
/ NRF2 protein
/ Nuclear transport
/ Organic sulfur compounds
/ Oxidative stress
/ Pharmacokinetics
/ Phytochemicals
/ Proteins
/ Reactive oxygen species
/ Review
/ Reviews
/ Signal transduction
/ Studies
/ Sulforaphane
/ transcription factor NF-kappa B
/ Urine
/ Vegetables
2020
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Do you wish to request the book?
The Integrative Role of Sulforaphane in Preventing Inflammation, Oxidative Stress and Fatigue: A Review of a Potential Protective Phytochemical
by
Ruhee, Ruheea Taskin
, Suzuki, Katsuhiko
in
Binding sites
/ bioactive compounds
/ Bioavailability
/ Brassicaceae
/ Cancer
/ Chronic illnesses
/ clinical trials
/ cruciferous vegetables
/ Cytokines
/ Dietary supplements
/ Enzymes
/ Epidemiology
/ exercise
/ Fatigue
/ Functional foods & nutraceuticals
/ gene activation
/ Health aspects
/ Inflammation
/ lifestyle
/ Metabolites
/ NF-κB
/ NF-κB protein
/ Nrf2
/ NRF2 protein
/ Nuclear transport
/ Organic sulfur compounds
/ Oxidative stress
/ Pharmacokinetics
/ Phytochemicals
/ Proteins
/ Reactive oxygen species
/ Review
/ Reviews
/ Signal transduction
/ Studies
/ Sulforaphane
/ transcription factor NF-kappa B
/ Urine
/ Vegetables
2020
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The Integrative Role of Sulforaphane in Preventing Inflammation, Oxidative Stress and Fatigue: A Review of a Potential Protective Phytochemical
Journal Article
The Integrative Role of Sulforaphane in Preventing Inflammation, Oxidative Stress and Fatigue: A Review of a Potential Protective Phytochemical
2020
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Overview
Cruciferous vegetables hold a myriad of bioactive molecules that are renowned for possessing unique medicinal benefits. Sulforaphane (SFN) is one of the potential nutraceuticals contained within cruciferous vegetables that is useful for improving health and diseased conditions. The objective of this review is to discuss the mechanistic role for SFN in preventing oxidative stress, fatigue, and inflammation. Direct and indirect research evidence is reported to identify the nontoxic dose of SFN for human trials, and effectiveness of SFN to attenuate inflammation and/or oxidative stress. SFN treatment modulates redox balance via activating redox regulator nuclear factor E2 factor-related factor (Nrf2). SFN may play a crucial role in altering the Keap1/Nrf2/ARE pathway (an intricate response to many stimuli or stress), which induces Nrf2 target gene activation to reduce oxidative stress. In addition, SFN reduces inflammation by suppressing centrally involved inflammatory regulator nuclear factor-kappa B (NF-κB), which in turn downregulates the expression of proinflammatory cytokines and mediators. Exercise may induce a significant range of fatigue, inflammation, oxidative stress, and/or organ damage due to producing excessive reactive oxygen species (ROS) and inflammatory cytokines. SFN may play an effective role in preventing such damage via inducing phase 2 enzymes, activating the Nrf2/ARE signaling pathway or suppressing nuclear translocation of NF-κB. In this review, we summarize the integrative role of SFN in preventing fatigue, inflammation, and oxidative stress, and briefly introduce the history of cruciferous vegetables and the bioavailability and pharmacokinetics of SFN reported in previous research. To date, very limited research has been conducted on SFN’s effectiveness in improving exercise endurance or performance. Therefore, more research needs to be carried out to determine the effectiveness of SFN in the field of exercise and lifestyle factors.
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