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The 54 pages that link to Oxidative stress, each with the reason it gives.
ToxicologyRelated: Many toxicants injure cells by overwhelming defenses against reactive chemical species.
Reactive oxygen speciesRelated: It describes imbalance when reactive oxygen species overwhelm cellular defenses.
Hydrogen peroxideRelated: Excess hydrogen peroxide can disrupt cellular balance and damage biomolecules.
AntioxidantRelated: Antioxidants are often discussed as defenses against this imbalance, though they do not define it.
Cellular senescenceRelated: Oxidative damage is one stress that can provoke senescence.
AntisepticRelated: Hydrogen peroxide generates reactive oxygen species that damage microbial components.
NeurodegenerationRelated: Oxidative damage can injure neuronal membranes, proteins, and DNA.
GlutathioneRelated: Glutathione helps buffer oxidants, but its defenses can be overwhelmed.
Drug-induced liver injuryRelated: Oxidative stress is one route by which drugs and their metabolites injure hepatocytes.
Free radicalRelated: Reactive radicals can contribute to cellular oxidation, though not all oxidants are radicals.
Lipid peroxidationNarrower topic: Lipid peroxidation is one damaging outcome of oxidative stress, not a synonym for it.
Endothelial dysfunctionRelated: Reactive oxygen species can destroy nitric oxide and worsen endothelial signaling.
PhotoprotectionRelated: Light-driven oxidants cause photodamage when they overwhelm cellular defenses.
HemolysisRelated: Oxidative damage to hemoglobin and membranes can make red cells fragile.
Vitamin CCompared with: Vitamin C can limit some oxidation, but it does not eliminate oxidative stress or replace broader defenses.
NephrotoxicityRelated: Reactive oxygen species contribute to cellular damage from several nephrotoxic exposures.
Aerobic respirationRelated: It can result when reactive oxygen species from metabolism overwhelm cellular defenses.
Diabetic neuropathyRelated: Glucose-related oxidative stress is one proposed contributor to nerve-cell injury.
Hydroxyl radicalRelated: Excess ·OH formation can contribute to oxidative damage in cells.
NeurotoxicityRelated: Reactive oxygen species can injure neurons and contribute to toxicant-induced cell death.
Vitamin ECompared with: Vitamin E can limit certain oxidative reactions, but is not a general cure for oxidative stress.
HepatotoxicityRelated: Oxidant accumulation is one pathway by which chemicals disrupt liver cells.
Fenton reactionRelated: Radicals generated by iron and peroxide contribute to oxidative damage in cells.
FlavonoidRelated: Flavonoids can participate in plant redox responses and interact with reactive oxygen species.
Arsenic poisoningRelated: Arsenic exposure can disturb redox balance and contribute to cellular damage.
Oxygen toxicityRelated: It describes the imbalance that lets oxygen-derived oxidants injure cells.
Singlet oxygenNarrower topic: Singlet oxygen is one reactive oxygen species that can contribute to oxidative damage.
TRPA1Related: Oxidants can activate TRPA1, raising questions about how the channel detects tissue stress in disease.
Wilson's diseaseRelated: Excess copper can promote oxidative damage that contributes to liver and brain injury.
Lipid oxidationRelated: Lipid oxidation can contribute to oxidative damage in living tissues.
Xanthine oxidaseRelated: Reactive oxygen species generated by the enzyme can contribute to oxidative stress.
AutoxidationRelated: Autoxidation of cellular lipids and other molecules can contribute to oxidative damage.
QuinoneRelated: Uncontrolled quinone redox cycling can contribute to oxidative stress.
AnhydrobiosisRelated: Drying and rehydration can generate oxidative damage that threatens survival.
EmphysemaRelated: Smoke-derived oxidants and inflammation can damage lung tissue and weaken protective defenses.
Postharvest physiologyRelated: Oxidative imbalance contributes to tissue aging and storage disorders.
SuperoxideRelated: Excess superoxide can contribute to this imbalance and its molecular damage.
VitiligoRelated: Oxidative stress may weaken melanocytes and contribute to their loss in vitiligo.
Ataxia–telangiectasiaRelated: ATM-deficient cells show altered responses to oxidative damage, a proposed contributor to neuronal vulnerability.
LycopeneRelated: Lycopene’s antioxidant activity is often discussed in relation to oxidative damage.
ZeaxanthinNarrower topic: Zeaxanthin’s protective effects are often framed as limiting oxidative stress.
Ellagic acidRelated: Claims about ellagic acid often concern its effects on oxidation-related processes.
Metal toxicityRelated: Some toxic metals promote reactive oxygen species or weaken the defenses that normally control them.
Ozone therapyRelated: Ozone exposure can impose oxidative stress rather than selectively targeting disease.
QuercetinRelated: Quercetin's antioxidant activity is often studied in relation to this imbalance.
Caffeic acidRelated: Caffeic acid’s antioxidant effects are often investigated in this biological context.
Pre-eclampsiaRelated: Placental stress may promote signals that injure maternal blood vessels.
BiophotonRelated: Changes in oxidative chemistry can alter emission intensity, making it a proposed research indicator.
Chemically induced disordersRelated: Many chemicals damage cells by generating reactive species faster than defenses can control them.
Disorders of Environmental OriginRelated: Air pollutants and toxicants can trigger this pathway of tissue injury.