Please use this identifier to cite or link to this item: http://repositorio.ufla.br/jspui/handle/1/56047
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dc.creatorPaula, Hauster Maximiler Campos de-
dc.creatorCoelho, Yara Luiza-
dc.creatorCastro, Alan Stampini Benhame de-
dc.creatorMarques, Isabela Araujo-
dc.creatorHudson, Eliara Acipreste-
dc.creatorRezende, Jaqueline de Paula-
dc.creatorPires, Ana Clarissa dos Santos-
dc.creatorSilva, Luis Henrique Mendes da-
dc.date.accessioned2023-02-23T16:48:08Z-
dc.date.available2023-02-23T16:48:08Z-
dc.date.issued2022-11-
dc.identifier.citationPAULA, H. M. C. de et al. Dynamics and energetics of bovine lactoferrin and phenylmethane dyes interaction followed by surface plasmon resonance. Colloids and surfaces B: Biointerfaces, [S.l.], v. 219, p. 1-8, Nov. 2022. DOI: 10.1016/j.colsurfb.2022.112794.pt_BR
dc.identifier.urihttps://www.sciencedirect.com/science/article/pii/S0927776522004775pt_BR
dc.identifier.urihttp://repositorio.ufla.br/jspui/handle/1/56047-
dc.description.abstractAlthough toxic and dangerous, Phenylmethane (PhM) dyes have a variety of medicinal functions. To optimize the use of these dyes, it is essential to understand their interaction mechanism with proteins. Through surface plasmon resonance, we investigated the kinetics and thermodynamics of interaction between bovine lactoferrin (BLF) and PhM dyes at pH 7.4, which allowed elucidate the effect of the dyes’ functional groups on the binding process. Negative ΔG° revealed that at thermodynamic equilibrium the formed [BLF-PhM]° complex was more stable than the free BLF and PhM molecules. The increase in the number of methyl groups in the PhM structure led to an increase in the rates of association (ka) and dissociation (kd) and the binding constant (Kb). A similar effect was observed when comparing methyl violet B (MVB) and methyl violet 6 B (MV6B), in which the charged MV6B structure promoted an increase in the ka, kd, and Kb values. By contrast, an increase in the number of phenyl groups (2–3 rings) led to a decrease in the Kb values. The [BLF-PhM]° formation was entropically driven, indicating that hydrophobic interactions are critical for stabilizing these complexes These results are beneficial for understanding the molecular dynamics of protein-dye interactions.pt_BR
dc.languageen_USpt_BR
dc.publisherElsevierpt_BR
dc.rightsrestrictAccesspt_BR
dc.sourceColloids and surfaces B: Biointerfacespt_BR
dc.subjectLactoferrin bovinept_BR
dc.subjectPhenylmethane dyespt_BR
dc.subjectProtein-dye interactionpt_BR
dc.subjectThermodynamicspt_BR
dc.subjectKineticspt_BR
dc.subjectSPRpt_BR
dc.subjectSurface plasmon resonancept_BR
dc.titleDynamics and energetics of bovine lactoferrin and phenylmethane dyes interaction followed by surface plasmon resonancept_BR
dc.typeArtigopt_BR
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