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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

Level of reactive oxygen species induced by p21WAF(1)/CIP(1) is critical for the determination of cell fateINOUE, Takafumi; KATO, Kiyoko; KATO, Hidenori et al.Cancer science. 2009, Vol 100, Num 7, pp 1275-1283, issn 1347-9032, 9 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

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

Chemical Quenching of Singlet Oxygen by Carotenoids in PlantsRAMEL, Fanny; BIRTIC, Simona; CUINE, Stéphan et al.Plant physiology (Bethesda). 2012, Vol 158, Num 3, pp 1267-1278, issn 0032-0889, 12 p.Article

Roles of Reactive Oxygen Species in Female ReproductionRIZZO, A; ROSCINO, M. T; BINETTI, F et al.Reproduction in domestic animals (1990). 2012, Vol 47, Num 2, pp 344-352, issn 0936-6768, 9 p.Article

Organelles Contribute Differentially to Reactive Oxygen Species-Related Events during Extended DarknessROSENWASSER, Shilo; ROT, Ilona; SOLLNER, Evelyn et al.Plant physiology (Bethesda). 2011, Vol 156, Num 1, pp 185-201, issn 0032-0889, 17 p.Article

Reactive oxygen species and endothelial function in diabetesFATEHI-HASSANABAD, Zahra; CHAN, Catherine B; FURMAN, Brian L et al.European journal of pharmacology. 2010, Vol 636, Num 1-3, pp 8-17, issn 0014-2999, 10 p.Article

Antioxidant properties of oxime 3-(phenylhydrazono) butan-2-onePUNTEL, Gustavo Orione; GUBERT, Priscila; LOURO PERES, Gisele et al.Archives of toxicology. 2008, Vol 82, Num 10, pp 755-762, issn 0340-5761, 8 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

Role of reactive oxygen species in antibiotic action and resistanceDWYER, Daniel J; KOHANSKI, Michael A; COLLINS, James J et al.Current opinion in microbiology. 2009, Vol 12, Num 5, pp 482-489, issn 1369-5274, 8 p.Article

Borrelia burgdorferi membranes are the primary targets of reactive oxygen speciesBOYLAN, Julie A; LAWRENCE, Kevin A; DOWNEY, Jennifer S et al.Molecular microbiology (Print). 2008, Vol 68, Num 3, pp 786-799, issn 0950-382X, 14 p.Article

Reactive Oxygen Species and Autophagy in Plants and AlgaePEREZ-PEREZ, Maria Esther; LEMAIRE, Stéphane D; CRESPO, Jose L et al.Plant physiology (Bethesda). 2012, Vol 160, Num 1, pp 156-164, issn 0032-0889, 9 p.Article

Inhibitors of Reactive Oxygen Species Accumulation Delay and/or Reduce the Lethality of Several Antistaphylococcal AgentsYUANLI LIU; XINGHAN LIU; YILIN QU et al.Antimicrobial agents and chemotherapy. 2012, Vol 56, Num 11, pp 6048-6050, issn 0066-4804, 3 p.Article

Human Cytomegalovirus Induces Multiple Means To Combat Reactive Oxygen SpeciesTILTON, Carisa; CLIPPINGER, Amy J; MAGUIRE, Tobi et al.Journal of virology. 2011, Vol 85, Num 23, pp 12585-12593, issn 0022-538X, 9 p.Article

Reactive oxygen species in abiotic stress signalingJASPERS, Pinja; KANGASJÄRVI, Jaakko.Physiologia Plantarum (København. 1948). 2010, Vol 138, Num 4, pp 405-413, issn 0031-9317, 9 p.Article

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