Pages that link to "Q34182570"
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The following pages link to Controlled enzymatic production of astrocytic hydrogen peroxide protects neurons from oxidative stress via an Nrf2-independent pathway (Q34182570):
Displaying 50 items.
- Chemistry and biology of reactive oxygen species in signaling or stress responses (Q24633682) (← links)
- Hyperglycemic Stress and Carbon Stress in Diabetic Glucotoxicity (Q26773988) (← links)
- Protein Oxidative Modifications: Beneficial Roles in Disease and Health (Q28397786) (← links)
- HSF1 protects neurons through a novel trimerization- and HSP-independent mechanism (Q28582569) (← links)
- The CNS microvascular pericyte: pericyte-astrocyte crosstalk in the regulation of tissue survival (Q30476883) (← links)
- Astrocyte NMDA receptors' activity sustains neuronal survival through a Cdk5-Nrf2 pathway. (Q30678012) (← links)
- Development of Neh2-Luciferase Reporter and Its Application for High Throughput Screening and Real-Time Monitoring of Nrf2 Activators (Q33941688) (← links)
- Gene expression levels assessed by CA1 pyramidal neuron and regional hippocampal dissections in Alzheimer's disease (Q33984420) (← links)
- Control of mitochondrial pH by uncoupling protein 4 in astrocytes promotes neuronal survival (Q34467474) (← links)
- Recent advances in hydrogen peroxide imaging for biological applications (Q34515147) (← links)
- JAZ (Znf346), a SIRT1-interacting protein, protects neurons by stimulating p21 (WAF/CIP1) protein expression (Q34737954) (← links)
- Antihelminthic benzimidazoles are novel HIF activators that prevent oxidative neuronal death via binding to tubulin. (Q34802673) (← links)
- Two-photon fluorescence imaging of intracellular hydrogen peroxide with chemoselective fluorescent probes. (Q35004002) (← links)
- Spatial, temporal, and quantitative manipulation of intracellular hydrogen peroxide in cultured cells (Q35031658) (← links)
- Resveratrol Preconditioning Protects Against Cerebral Ischemic Injury via Nuclear Erythroid 2-Related Factor 2. (Q35639649) (← links)
- Attenuation of Cerebral Ischemic Injury in Smad1 Deficient Mice (Q35758451) (← links)
- Transglutaminase inhibition protects against oxidative stress-induced neuronal death downstream of pathological ERK activation (Q36241237) (← links)
- Daidzein Augments Cholesterol Homeostasis via ApoE to Promote Functional Recovery in Chronic Stroke (Q36272544) (← links)
- Using Sensors and Generators of H2O2 to Elucidate the Toxicity Mechanism of Piperlongumine and Phenethyl Isothiocyanate. (Q36987380) (← links)
- Nanoparticle-mediated catalase delivery protects human neurons from oxidative stress. (Q37357029) (← links)
- hESC-derived Olig2 progenitors generate a subtype of astroglia with protective effects against ischaemic brain injury (Q37519454) (← links)
- How much H(2)O(2) is produced by recombinant D-amino acid oxidase in mammalian cells? (Q37592590) (← links)
- Oxidative Stress and Huntington's Disease: The Good, The Bad, and The Ugly (Q37643688) (← links)
- Hormetics: Dietary Triggers of an Adaptive Stress Response (Q37912075) (← links)
- Antioxidant and bioenergetic coupling between neurons and astrocytes. (Q37993651) (← links)
- Signaling pathways leading to ischemic mitochondrial neuroprotection (Q38254906) (← links)
- Activation of Nrf2-regulated glutathione pathway genes by ischemic preconditioning (Q38298598) (← links)
- Redox Signaling Mediated by Thioredoxin and Glutathione Systems in the Central Nervous System. (Q38690806) (← links)
- Bioenergetics and redox adaptations of astrocytes to neuronal activity. (Q38770428) (← links)
- Pin1 cysteine-113 oxidation inhibits its catalytic activity and cellular function in Alzheimer's disease (Q38921423) (← links)
- Mutation of ataxia-telangiectasia mutated is associated with dysfunctional glutathione homeostasis in cerebellar astroglia (Q38953210) (← links)
- Astrocytes Surviving Severe Stress Can Still Protect Neighboring Neurons from Proteotoxic Injury (Q39019452) (← links)
- Subcellular Redox Targeting: Bridging in Vitro and in Vivo Chemical Biology. (Q39031828) (← links)
- (-)-Epicatechin, a Natural Flavonoid Compound, Protects Astrocytes Against Hemoglobin Toxicity via Nrf2 and AP-1 Signaling Pathways (Q39172804) (← links)
- Human embryonic stem cell derived astrocytes mediate non-cell-autonomous neuroprotection through endogenous and drug-induced mechanisms. (Q39441131) (← links)
- Quantifying intracellular hydrogen peroxide perturbations in terms of concentration (Q41742488) (← links)
- Cross-talk between neurons and astrocytes in response to bilirubin: early beneficial effects (Q42518637) (← links)
- Mild oxidative stress activates Nrf2 in astrocytes, which contributes to neuroprotective ischemic preconditioning. (Q42563477) (← links)
- Use of a genetically encoded hydrogen peroxide sensor for whole cell screening of enzyme activity. (Q46771146) (← links)
- Redox proteomics: from protein modifications to cellular dysfunction and disease (Q46966345) (← links)
- Time-Dependent Lactate Production and Amino Acid Utilization in Cultured Astrocytes Under High Glucose Exposure (Q50951354) (← links)
- Brain ischemic preconditioning protects against ischemic injury and preserves the blood-brain barrier via oxidative signaling and Nrf2 activation. (Q54108837) (← links)
- The role of reciprocal activation of cAbl and Mst1 in the oxidative death of cultured astrocytes. (Q54381962) (← links)
- Reply to Bell et al.: Nrf2-dependent and -independent mechanisms of astrocytic neuroprotection. (Q55462796) (← links)
- Chemogenetic generation of hydrogen peroxide in the heart induces severe cardiac dysfunction (Q57048728) (← links)
- Pericyte Plasticity in the Brain (Q58115717) (← links)
- Prevention of neuronal apoptosis by astrocytes through thiol-mediated stress response modulation and accelerated recovery from proteotoxic stress (Q58615777) (← links)
- Monitoring the action of redox-directed cancer therapeutics using a human peroxiredoxin-2-based probe (Q58797739) (← links)
- Astrocytes Do Not Forfeit Their Neuroprotective Roles After Surviving Intense Oxidative Stress (Q64071824) (← links)
- The role of astrocytes in oxidative stress of central nervous system: A mixed blessing (Q89606276) (← links)