Background
Type: Article

Spectroscopic studies of the interaction between alprazolam and apo-human serum transferrin as a drug carrier protein

Journal: International Journal of Biological Macromolecules (01418130)Year: 2018/03/01Volume: 108Issue: Pages: 263 - 271
Karimian Amroabadi M.Taheri Kafrani A.a Heidarpoor Saremi L. Asghar Rastegari A.
DOI:10.1016/j.ijbiomac.2017.11.179Language: English

Abstract

The interaction between apo-human serum transferrin (Apo-hTf) and alprazolam was investigated using various spectroscopic techniques. The drug quenched the fluorescence intensity of Apo-hTf and the mechanism behind the quenching was static. The thermodynamic parameters (ΔG, ΔH, and ΔS) that obtained from tryptophan fluorescence study revealed that the interactions between alprazolam and Apo-hTf were spontaneous. Collectively, hydrophobic interactions and hydrogen bonding most likely played major roles in Apo-hTf/alprazolam interactions. Also, the absorption spectra of Apo-hTf increased in the presence of increasing concentration of alprazolam, reflecting Apo-hTf structural alteration after drug's binding. The CD results demonstrated that the Apo-hTf/alprazolam interaction does not affect the protein secondary and tertiary structure significantly until the molar ratios (alprazolam/Apo-hTf) of 10, but the conformational changes become visible at higher molar ratios. The DSC results suggested that alprazolam stabilized the Apo-hTf at alprazolam/Apo-hTf molar ratio of 20. Based on the achieved results, this potentially therapeutic agent can significantly bind to Apo-hTf which also further confirmed by molecular docking study. This study on the interaction of the drug with Apo-hTf should be helpful for understanding the transportation and distribution of drugs in vivo, as well as the action mechanism and dynamics of a drug at the molecular level. © 2017 Elsevier B.V.


Author Keywords

AlprazolamApo-human serum transferrinCircular dichroismFluorescence spectroscopyMolecular docking

Other Keywords

AlprazolamBinding SitesCalorimetry, Differential ScanningCircular DichroismDrug CarriersHumansMolecular Docking SimulationMolecular Dynamics SimulationProtein BindingSpectrum AnalysisThermodynamicsTransferrinapo humann serum transferrindrug carriertryptophanunclassified drugabsorption spectroscopyArticleconformational transitiondrug bindingdrug distributiondrug interactiondrug mechanismdrug structuredrug transportenergy transferfluorescence analysishydrogen bondin vivo studymolecular dockingprotein interactionprotein secondary structureprotein tertiary structurespectroscopybinding sitechemistrydifferential scanning calorimetryhumanmolecular dynamicsprocedures