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Using BioTek's Synergy™ HT Reader to Measure Reactive Oxygen Species (ROS) Generation in Stimulated CellsHELD, Paul; NEWICK, Kheng.BioTechniques. 2009, Vol 46, Num 1, pp 61-62, issn 0736-6205, 2 p.Article

Calcium and Reactive Oxygen Species Rule the Waves of Signaling : Calcium SignalingSTEINHORST, Leonie; KUDLA, Jörg.Plant physiology (Bethesda). 2013, Vol 163, Num 2, pp 471-485, issn 0032-0889, 15 p.Article

Emerging Complexity in Reactive Oxygen Species Production and Signaling during the Response of Plants to PathogensVELLOSILLO, Tamara; VICENTE, Jorge; KULASEKARAN, Satish et al.Plant physiology (Bethesda). 2010, Vol 154, Num 2, pp 444-448, issn 0032-0889, 5 p.Article

Reactive oxygen species generation in fungal development and pathogenesis : Growth and development: eukaryotesTUDZYNSKI, Paul; HELLER, Jens; SIEGMUND, Ulrike et al.Current opinion in microbiology. 2012, Vol 15, Num 6, pp 653-659, issn 1369-5274, 7 p.Article

Role of reactive oxygen species in fungal cellular differentiationsSCOTT, Barry; EATON, Carla J.Current opinion in microbiology. 2008, Vol 11, Num 6, pp 488-493, issn 1369-5274, 6 p.Article

Cofacteurs de la pollinose = Pollinosis cofactorsVITTE, J.Revue française d'allergologie (Amsterdam. Print). 2012, Vol 52, Num 3, pp 189-193, issn 1877-0312, 5 p.Conference Paper

Reactive oxygen species and Ca2+ are involved in sodium arsenite-induced cell killing in yeast cellsLIHUA WU; HUILAN YI; HUFANG ZHANG et al.FEMS microbiology letters. 2013, Vol 343, Num 1, pp 57-63, issn 0378-1097, 7 p.Article

Reactive oxygen species are involved in the morphology-determining mechanism of Fremyella diplosiphon cells during complementary chromatic adaptationSINGH, Shailendra P; MONTGOMERY, Beronda L.Microbiology (Reading). 2012, Vol 158, pp 2235-2245, issn 1350-0872, 11 p., 9Article

Ozone-triggered rapid stomatal response involves the production of reactive oxygen species, and is controlled by SLAC1 and OST1VAHISALU, Triin; PUZORJOVA, Irina; LOOG, Mart et al.Plant journal. 2010, Vol 62, Num 3, pp 442-453, issn 0960-7412, 12 p.Article

Reactive Oxygen Species Are Involved in Plant Defense against a Gall MidgeXUMING LIU; WILLIAMS, Christie E; NEMACHECK, Jill A et al.Plant physiology (Bethesda). 2010, Vol 152, Num 2, pp 985-999, issn 0032-0889, 15 p.Article

Respiratory Syncytial Virus Infection Induces a Reactive Oxygen Species-MSK1-Phospho-Ser-276 RelA Pathway Required for Cytokine ExpressionJAMALUDDIN, Mohammad; BING TIAN; BOLDOGH, Istvan et al.Journal of virology. 2009, Vol 83, Num 20, pp 10605-10615, issn 0022-538X, 11 p.Article

The Variegated Mutants Lacking Chloroplastic FtsHs Are Defective in D1 Degradation and Accumulate Reactive Oxygen SpeciesKATO, Yusuke; MIURA, Eiko; IDO, Kunio et al.Plant physiology (Bethesda). 2009, Vol 151, Num 4, pp 1790-1801, issn 0032-0889, 12 p.Article

Reactive Oxygen Species Inhibit Polycystin-2 (TRPP2) Cation Channel Activity In Term Human SyncytiotrophoblastMONTALBETTI, N; CANTERO, M. R; DALGHI, M. G et al.Placenta (Eastbourne). 2008, Vol 29, Num 6, pp 510-518, issn 0143-4004, 9 p.Article

Singlet Oxygen Is the Major Reactive Oxygen Species Involved in Photooxidative Damage to PlantsTRIANTAPHYLIDES, Christian; KRISCHKE, Markus; HOEBERICHTS, Frank Alfons et al.Plant physiology (Bethesda). 2008, Vol 148, Num 2, pp 960-968, issn 0032-0889, 9 p.Article

The rolB Gene Suppresses Reactive Oxygen Species in Transformed Plant Cells through the Sustained Activation of Antioxidant DefenseBULGAKOV, Victor P; GORPENCHENKO, Tatiana Y; VEREMEICHIK, Galina N et al.Plant physiology (Bethesda). 2012, Vol 158, Num 3, pp 1371-1381, issn 0032-0889, 11 p.Article

An Apoplastic H-Type Thioredoxin Is Involved in the Stress Response through Regulation of the Apoplastic Reactive Oxygen Species in Rice1[C][W][OA]ZHANG, Cui-Jun; ZHAO, Bing-Chun; GE, Wei-Na et al.Plant physiology (Bethesda). 2011, Vol 157, Num 4, pp 1884-1899, issn 0032-0889, 16 p.Article

Ablation of TAK1 Upregulates Reactive Oxygen Species and Selectively Kills Tumor CellsOMORI, Emily; MATSUMOTO, Kunihiro; SONGYUN ZHU et al.Cancer research (Chicago, Ill.). 2010, Vol 70, Num 21, pp 8417-8425, issn 0008-5472, 9 p.Article

High-Fat Diet-Induced Mitochondrial Biogenesis Is Regulated by Mitochondrial-Derived Reactive Oxygen Species Activation of CaMKIIJAIN, Swati S; PAGLIALUNGA, Sabina; HOLLOWAY, Graham P et al.Diabetes (New York, NY). 2014, Vol 63, Num 6, pp 1907-1913, issn 0012-1797, 7 p.Article

ROSMETER: A Bioinformatic Tool for the Identification of Transcriptomic Imprints Related to Reactive Oxygen Species Type and Origin Provides New Insights into Stress ResponsesROSENWASSER, Shilo; FLUHR, Robert; JOSHI, Janak Raj et al.Plant physiology (Bethesda). 2013, Vol 163, Num 2, pp 1071-1083, issn 0032-0889, 13 p.Article

Apoplastic Reactive Oxygen Species Transiently Decrease Auxin Signaling and Cause Stress-Induced Morphogenic Response in Arabidopsis1[W][OA]BLOMSTER, Tiina; SALOJÄRVI, Jarkko; SIPARI, Nina et al.Plant physiology (Bethesda). 2011, Vol 157, Num 4, pp 1866-1883, issn 0032-0889, 18 p.Article

NADPH Oxidase-Mediated Reactive Oxygen Species Production: Subcellular Localization and Reassessment of Its Role in Plant DefenseLHERMINIER, Jeannine; ELMAYAN, Taline; FROMENTIN, Jérôme et al.Molecular plant-microbe interactions. 2009, Vol 22, Num 7, pp 868-881, issn 0894-0282, 14 p.Article

Extending Cassava Root Shelf Life via Reduction of Reactive Oxygen Species ProductionZIDENGA, Tawanda; LEYVA-GUERRERO, Elisa; MOON, Hangsik et al.Plant physiology (Bethesda). 2012, Vol 159, Num 4, pp 1396-1407, issn 0032-0889, 12 p.Article

New Developments in Therapy for Oxidative Stress-Related Diseases: Pathophysiological and Clinical ConsequencesVICTOR, Victor M.Current pharmaceutical design (Print). 2011, Vol 17, Num 36, issn 1381-6128, 143 p.Serial Issue

β-Aminobutyric Acid Primes an NADPH Oxidase-Dependent Reactive Oxygen Species Production During Grapevine-Triggered ImmunityDUBREUIL-MAURIZI, Carole; TROUVELOT, Sophie; FRETTINGER, Patrick et al.Molecular plant-microbe interactions. 2010, Vol 23, Num 8, pp 1012-1021, issn 0894-0282, 10 p.Article

Ce-Duox1/BLI-3 Generates Reactive Oxygen Species as a Protective Innate Immune Mechanism in Caenorhabditis elegansCHAVEZ, Violeta; MOHRI-SHIOMI, Akiko; GARSIN, Danielle A et al.Infection and immunity. 2009, Vol 77, Num 11, pp 4983-4989, issn 0019-9567, 7 p.Article

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