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resumen

Resumen
During the cattle breeding, the animals are exposed to stressful conditions (confinement, competition, extreme temperatures, pathogens); these have been associated to the increase of reactive oxygen species that attack cell membrane unsaturated lipids and other biomolecules and thus, inducing oxidation. This oxidative stress increases the incidence of degenerative diseases and decreases productivity. It has been proposed that the supplementation of the [ver mas...]
dc.contributor.authorYonny, Melisa Evangelina
dc.contributor.authorGarcía, Elisa Mariana
dc.contributor.authorLopez, Agustin
dc.contributor.authorArroquy, Jose Ignacio
dc.contributor.authorNazareno, Mónica Azucena
dc.date.accessioned2018-06-06T14:10:43Z
dc.date.available2018-06-06T14:10:43Z
dc.date.issued2016-11
dc.identifier.issn0026-265X
dc.identifier.otherhttps://doi.org/10.1016/j.microc.2016.07.010
dc.identifier.urihttps://www.sciencedirect.com/science/article/pii/S0026265X16301734
dc.identifier.urihttp://hdl.handle.net/20.500.12123/2558
dc.description.abstractDuring the cattle breeding, the animals are exposed to stressful conditions (confinement, competition, extreme temperatures, pathogens); these have been associated to the increase of reactive oxygen species that attack cell membrane unsaturated lipids and other biomolecules and thus, inducing oxidation. This oxidative stress increases the incidence of degenerative diseases and decreases productivity. It has been proposed that the supplementation of the animal diet with antioxidants decreases the oxidative stress. Malondialdehyde (MDA) is an advanced oxidation product and a recognized oxidative stress biomarker. The aims of this work were to validate a methodology to determine MDA in goat plasma by HPLC-DAD and its assay in an animal feeding experiment. The MDA level was measured after condensation reaction with thiobarbituric acid (TBA). Free MDA (FMDA) was directly quantified after TBA condensation; while, Protein-bound MDA (PBMDA) needed to be released by an alkaline hydrolysis step and followed by TBA condensation. The MDA detection and quantitation limits were 0.034 μM and 0.086 μM, respectively. The linear range was 0.086–9.1 μM (R2 = 0.9998). The accuracy was 100.5% to FMDA and 102.4% to PBMDA. The precision values intra and interday were 3.7 and 3.9%, respectively, for FMDA; and 3.8 and 4.1%, respectively, for PBMDA. Samples were analyzed in triplicate to obtain the figures of merit. The MDA level was quantified in plasma samples of 19 goats (Capra hircus) randomly distributed in three groups and fed with isocaloric and isoproteic diets: control, and supplemented with 12.5% d.b. of native woody species as polyphenol sources. The MDA plasma levels were statistically different among treatments in regard to the animal diet. A protector effect of the supplementation against oxidative stress was observed. The proposed methodology was selective, sensitive, reproducible, and suitable to evaluate MDA in goat plasma as oxidative stress biomarker.eng
dc.formatapplication/pdfes_AR
dc.language.isoenges_AR
dc.rightsinfo:eu-repo/semantics/restrictedAccesses_AR
dc.sourceMicrochemical journal 129 : 281-285. (November 2016)es_AR
dc.subjectCaprinoses_AR
dc.subjectGoatseng
dc.subjectPlasma Sanguíneoes_AR
dc.subjectBlood Plasmaeng
dc.subjectMalondialdehídoes_AR
dc.subjectMalondialdehydeeng
dc.subjectEstrés Oxidativoes_AR
dc.subjectOxidative Stresseng
dc.titleMeasurement of malondialdehyde as oxidative stress biomarker in goat plasma by HPLC-DADes_AR
dc.typeinfo:ar-repo/semantics/artículoes_AR
dc.typeinfo:eu-repo/semantics/articlees_AR
dc.typeinfo:eu-repo/semantics/publishedVersiones_AR
dc.description.origenEEA Santiago del Esteroes_AR
dc.description.filFil: Yonny, Melisa Evangelina. Consejo Nacional de Investigaciones Científicas y Técnicas. Centro de Investigaciones y Transferencia de Santiago del Estero. Universidad Nacional de Santiago del Estero. Centro de Investigaciones y Transferencia de Santiago del Estero; Argentinaes_AR
dc.description.filFil: García, Elisa Mariana. Consejo Nacional de Investigaciones Científicas y Técnicas. Centro de Investigaciones y Transferencia de Santiago del Estero. Universidad Nacional de Santiago del Estero. Centro de Investigaciones y Transferencia de Santiago del Estero; Argentinaes_AR
dc.description.filFil: López, Agustín. Instituto Nacional de Tecnología Agropecuaria (INTA). Estación Experimental Agropecuaria Santiago del Estero; Argentinaes_AR
dc.description.filFil: Arroquy, Jose Ignacio. Instituto Nacional de Tecnología Agropecuaria (INTA). Estación Experimental Agropecuaria Santiago del Estero; Argentinaes_AR
dc.description.filFil: Nazareno, Mónica Azucena. Consejo Nacional de Investigaciones Científicas y Técnicas. Centro de Investigaciones y Transferencia de Santiago del Estero. Universidad Nacional de Santiago del Estero. Centro de Investigaciones y Transferencia de Santiago del Estero; Argentinaes_AR
dc.subtypecientifico


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