Journal of Agricultural and Food Chemistry · 2005 · 44 citations · 9 references
Food ChemistryBiosynthesisEngineeringBiochemistryHigh SensitivityLipid PeroxidationBioanalysisBiotechnologyLuminol OxidationSbp CatalysisRedox ChemistryPhytochemistryMedicineRedox BiologyHydrogen PeroxideBiomolecular EngineeringOxidative Stress
Anionic soybean peroxidase Glycine max (SbP) is shown to efficiently catalyze luminol oxidation by hydrogen peroxide. Contrary to horseradish peroxidase, the presence of p-iodophenol in the reaction medium affects slightly the efficiency of SbP catalysis. A maximal intensity of chemiluminescence, produced through this enzymatic reaction, was detected at pH 8.4-8.6. Contrary to anionic palm tree peroxidase, in the presence of SbP, chemiluminescence intensity increases with the reaction buffer concentration. The detection limit of SbP in the reaction of luminol oxidation is 0.3 x 10(-12) M. Therefore, high sensitivity in combination with the long-term chemiluminescent signal is indicative of good prospects for application of this enzyme in enzyme immunoassay with chemiluminescent detection.
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Advances in Biochemical Engineering/Biotechnology
MF Chaplin · Biochemical Education · 1985 · 867 citations · Full text
Molecular and physiological aspects of plant Peroxidases
Jeffrey B. Harborne · Phytochemistry · 1987 · 300 citations