VJ
Title | Published in | Access level | OA Policy | Year | Views | Downloads | |
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N ADPH oxidases in healthy white adipose tissue and in obesity : function, regulation, and clinical implications | Obesity | 2024 | 8 | 5 | |||
Role of oxygen and its radicals in peripheral nerve regeneration : from hypoxia to physoxia to hyperoxia | International journal of molecular sciences | 2024 | 65 | 17 | |||
NADPH oxidase 4 deficiency attenuates experimental osteoarthritis in mice | RMD open | 2023 | 143 | 43 | |||
Discovery and validation of new Hv1 proton channel inhibitors with onco-therapeutic potential | Biochimica et biophysica acta. Molecular cell research | 2023 | 167 | 63 | |||
NADPH oxidase 4 is dispensable for skin myofibroblast differentiation and wound healing | Redox biology | 2023 | 113 | 76 | |||
The action of physiological and synthetic steroids on the calcium channel CatSper in human sperm | Frontiers in cell and developmental biology | 2023 | 53 | 16 | |||
ATM Regulates Differentiation of Myofibroblastic Cancer-Associated Fibroblasts and Can Be Targeted to Overcome Immunotherapy Resistance | Cancer research | 2022 | 136 | 62 | |||
Hyaline cartilage microtissues engineered from adult dedifferentiated chondrocytes: safety and role of WNT signaling | Stem cells translational medicine | 2022 | 227 | 78 | |||
Transposon-Directed Insertion-Site Sequencing Reveals Glycolysis Gene gpmA as Part of the H2O2 Defense Mechanisms in Escherichia coli | Antioxidants | 2022 | 166 | 102 | |||
Transcriptomic Analysis of E. coli after Exposure to a Sublethal Concentration of Hydrogen Peroxide Revealed a Coordinated Up-Regulation of the Cysteine Biosynthesis Pathway | Antioxidants | 2022 | 113 | 58 | |||
Identification of pharmacological inhibitors of NADPH oxidases for the treatment of oxidative stress-derived pathologies | 2021 | 246 | 167 | ||||
Dual NADPH oxidases DUOX1 and DUOX2 synthesize NAADP and are necessary for Ca2+ signaling during T cell activation | Science signaling | 2021 | 146 | 0 | |||
Hydrogen Peroxide Affects Growth of S. aureus Through Downregulation of Genes Involved in Pyrimidine Biosynthesis | Frontiers in immunology | 2021 | 141 | 61 | |||
Di-tyrosine crosslinking and NOX4 expression as oxidative pathological markers in the lungs of patients with idiopathic pulmonary fibrosis | Antioxidants | 2021 | 162 | 80 | |||
AG424 and AG427 antibodies recognize the human TrkB protein by western blot | Antibody reports | 2020 | 163 | 76 | |||
Redox activation of excitatory pathways in auditory neurons as mechanism of age-related hearing loss | Redox Biology | 2020 | 284 | 126 | |||
Navigating in vitro bioactivity data by investigating available resources using model compounds | Scientific Data | 2019 | 312 | 14 | |||
Methods for detection of NOX-derived superoxide radical anion and hydrogen peroxide in cells | Methods in Molecular Biology | 2019 | 348 | 3 | |||
NOX5 cell-free assay for the high-throughput screening of small molecules | Methods in Molecular Biology | 2019 | 335 | 3 | |||
Tubular NOX4 expression decreases in chronic kidney disease but does not modify fibrosis evolution | Redox Biology | 2019 | 343 | 224 | |||
Pharmacological characterization of the seven human NOX isoforms and their inhibitors | Redox Biology | 2019 | 336 | 302 | |||
Potential benefits and harms of NADPH oxidase type 4 in the kidneys and cardiovascular system | Nephrology, Dialysis, Transplantation | 2018 | 349 | 0 | |||
The oxidative stress theory of disease: levels of evidence and epistemological aspects | British journal of pharmacology | 2017 | 539 | 0 | |||
Decreased neural precursor cell pool in NADPH oxidase 2-deficiency: From mouse brain to neural differentiation of patient derived iPSC | Redox Biology | 2017 | 451 | 170 | |||
Transcription factor NRF2 controls the fate of neural stem cells in the subgranular zone of the hippocampus | Redox Biology | 2017 | 427 | 167 | |||
NADPH oxidases in Microglia oxidant production: Activating Receptors, Pharmacology, and Association with Disease | British journal of pharmacology | 2017 | 550 | 263 | |||
European contribution to the study of ROS: A summary of the findings and prospects for the future from the COST action BM1203 (EU-ROS) | Redox Biology | 2017 | 521 | 670 | |||
Decreased NOX2 expression in the brain of patients with bipolar disorder: association with valproic acid prescription and substance abuse | Translational Psychiatry | 2017 | 576 | 174 | |||
Microglia antioxidant systems and redox signaling | British journal of pharmacology | 2017 | 529 | 216 | |||
NADPH oxidases as drug targets and biomarkers in neurodegenerative diseases: What is the evidence? | Free Radical Biology & Medicine | 2017 | 399 | 194 | |||
Evaluation of NADPH oxidases as drug targets in a mouse model of familial amyotrophic lateral sclerosis | Free radical biology & medicine | 2016 | 606 | 243 | |||
A subset of N-substituted phenothiazines inhibits NADPH oxidases | Free radical biology & medicine | 2015 | 547 | 507 | |||
Challenges, Progresses, and Promises for Developing Future NADPH Oxidase Therapeutics | Antioxidants & redox signaling | 2015 | 466 | 1 | |||
Pharmacology and Clinical Drug Candidates in Redox Medicine | Antioxidants & redox signaling | 2015 | 443 | 488 | |||
Lentivector Knockdown of CCR5 in Hematopoietic Stem and Progenitor Cells Confers Functional and Persistent HIV-1 Resistance in Humanized Mice | Journal of virology | 2015 | 604 | 363 | |||
Discovery of GSK2795039, a Novel Small Molecule NADPH Oxidase 2 Inhibitor | Antioxidants & redox signaling | 2015 | 126 | 39 | |||
Response to Pick | Antioxidants & redox signaling | 2015 | 426 | 259 | |||
Reactive Oxygen-Related Diseases: Therapeutic Targets and Emerging Clinical Indications | Antioxidants & redox signaling | 2015 | 503 | 368 | |||
ERO, NADPH oxydases et vascularisation des tumeurs | MS. Médecine sciences | 2014 | 602 | 0 | |||
Molecular imaging reveals rapid reduction of endothelial activation in early atherosclerosis with apocynin independent of antioxidative properties | Arteriosclerosis, thrombosis, and vascular biology | 2013 | 608 | 0 | |||
Role of NADPH oxidase isoforms NOX1, NOX2 and NOX4 in myocardial ischemia/reperfusion injury | Journal of Molecular and Cellular Cardiology | 2013 | 585 | 0 | |||
Cell-free screening for NOX inhibitors | Chemistry & biology | 2012 | 570 | 1 | |||
NADPH oxidase elevations in pyramidal neurons drive psychosocial stress-induced neuropathology | Translational psychiatry | 2012 | 568 | 368 | |||
Targeting NOX enzymes in the central nervous system: therapeutic opportunities | Cellular and molecular life sciences | 2012 | 543 | 354 | |||
MALAT-1, a non protein-coding RNA is upregulated in the cerebellum, hippocampus and brain stem of human alcoholics | Alcohol | 2012 | 639 | 0 | |||
Detection of reactive oxygen species derived from the family of NOX NADPH oxidases | Free radical biology & medicine | 2012 | 654 | 2 | |||
NADPH oxidase (NOX) isoforms are inhibited by celastrol with a dual mode of action | British journal of pharmacology | 2011 | 677 | 0 | |||
The NADPH oxidase NOX2 controls glutamate release: a novel mechanism involved in psychosis-like ketamine responses | The Journal of neuroscience | 2010 | 584 | 1 | |||
Involvement of NOX2 in the development of behavioral and pathologic alterations in isolated rats | Biological psychiatry | 2009 | 598 | 0 | |||
Three common polymorphisms in the CYBA gene form a haplotype associated with decreased ROS generation | Human mutation | 2009 | 591 | 0 | |||
Editorial: Genetic mapping--the path of discovery for novel functions of the NOX NADPH oxidases | Journal of leukocyte biology | 2009 | 467 | 0 | |||
Small-molecule NOX inhibitors: ROS-generating NADPH oxidases as therapeutic targets | Antioxidants & redox signaling | 2009 | 607 | 2 | |||
NADPH oxidase 1 deficiency alters caveolin phosphorylation and angiotensin II-receptor localization in vascular smooth muscle | Antioxidants & redox signaling | 2009 | 515 | 0 | |||
Hyperinflammation in chronic granulomatous disease and anti-inflammatory role of the phagocyte NADPH oxidase | Seminars in immunopathology | 2008 | 593 | 345 | |||
NOX5 is expressed at the plasma membrane and generates superoxide in response to protein kinase C activation | Biochimie | 2007 | 631 | 0 |