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dc.contributor.authorFathi, F
dc.contributor.authorEzzati Nazhad Dolatanbadi, J
dc.contributor.authorRashidi, MR
dc.contributor.authorOmidi, Y
dc.date.accessioned2018-08-26T05:37:29Z
dc.date.available2018-08-26T05:37:29Z
dc.date.issued2016
dc.identifier.urihttp://dspace.tbzmed.ac.ir:8080/xmlui/handle/123456789/39873
dc.description.abstractPropyl gallate (PG) and tert-butylhydroquinone (TBHQ) are examples of phenolic antioxidant agents, which have widespread uses in food industry. In this study, for the first time, we report on the interaction of PG and TBHQ with bovine serum albumin (BSA) using surface plasmon resonance (SPR). In order to modify Au slide with carboxyl functional group, 11-mercaptoundecanoic acid (MUA) was used. After activation of carboxylic groups, BSA was immobilized onto the MUA through both covalent amide bond and electrostatic binding formation. The SPR analysis showed dose-response sensograms of BSA upon increasing concentration of PG and TBHQ. At pH 4.5, the equilibrium dissociation constant or affinity unit (KD) for PG and TBHQ were 1.89e(-10) and 1.49e(-10) and at pH 7.5 were 4.74e(-10) and 1.83e(-9), respectively. The smaller amount of KD demonstrated high food additive molecules affinity to BSA. Based on these findings, it can be concluded that PG and TBHQ molecules can interact with BSA and effectively distributed within the body. Besides, SPR can be considered as useful automatic tool for quantification of PG and TBHQ interaction with serum albumin and it can deliver precise real-time kinetic data.
dc.language.isoEnglish
dc.relation.ispartofInternational journal of biological macromolecules
dc.subjectAmines
dc.subjectAnimals
dc.subjectCattle
dc.subjectFood Additives
dc.subjectHydroquinones
dc.subjectImmobilized Proteins
dc.subjectKinetics
dc.subjectModels, Molecular
dc.subjectPropyl Gallate
dc.subjectProtein Binding
dc.subjectProtein Conformation
dc.subjectSerum Albumin, Bovine
dc.subjectSurface Plasmon Resonance
dc.titleKinetic studies of bovine serum albumin interaction with PG and TBHQ using surface plasmon resonance.
dc.typearticle
dc.citation.volume91
dc.citation.spage1045
dc.citation.epage50
dc.citation.indexPubmed
dc.identifier.DOIhttps://doi.org/10.1016/j.ijbiomac.2016.06.054


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