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Nitric Oxide : Biology and Chemistry|December 29, 2016
In vitro nitro-fatty acid release from Cys-NO<sub>2</sub>-fatty acid adducts under nitro-oxidative conditionsMaría N Padilla, Capilla Mata-Pérez, Manuel Melguizo, et al.Journal of Investigational Allergology & Clinical Immunology|January 4, 2024
Effect of Different Therapeutic Strategies on Olfactory Outcomes in Patients With Chronic Rhinosinusitis With Nasal Polyps: A Systematic ReviewI Alobid, B Barroso, C Calvo, et al.Redox Biology|January 17, 2017
Plant peroxisomes: A nitro-oxidative cocktailFrancisco J Corpas, Juan B Barroso, José M Palma, et al.Journal of Experimental Zoology. Part A, Ecological Genetics and Physiology|November 22, 2007
Serine dehydratase and tyrosine aminotransferase activities increased by long-term starvation and recovery by refeeding in rainbow trout (Oncorhynchus mykiss)Juan Peragón, Juan B Barroso, M De la Higuera, et al.Plant Physiology|September 29, 2009
Peroxisomes are required for in vivo nitric oxide accumulation in the cytosol following salinity stress of Arabidopsis plantsFrancisco J Corpas, Makoto Hayashi, Shoji Mano, et al.Plant Science : an International Journal of Experimental Plant Biology|January 29, 2013
Water stress induces a differential and spatially distributed nitro-oxidative stress response in roots and leaves of Lotus japonicusSantiago Signorelli, Francisco J Corpas, Omar Borsani, et al.Journal of Investigational Allergology & Clinical Immunology|December 19, 2023
Nonasthmatic Eosinophilic Bronchitis: A Systematic Review of Current Treatment OptionsD Betancor, M Valverde-Monge, B Barroso, et al.Frontiers in Plant Science|February 28, 2013
Protein tyrosine nitration in higher plants grown under natural and stress conditionsFrancisco J Corpas, José M Palma, Luis A Del Río, et al.Sub-Cellular Biochemistry|July 4, 2013
Peroxisomes as cell generators of reactive nitrogen species (RNS) signal moleculesFrancisco J Corpas, Juan B Barroso, José M Palma, et al.Thescientificworldjournal|June 1, 2012
NADP-dependent isocitrate dehydrogenase from Arabidopsis roots contributes in the mechanism of defence against the nitro-oxidative stress induced by salinityMarina Leterrier, Juan B Barroso, Raquel Valderrama, et al.Pageof 14