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      Investigation of binding properties of dicationic styrylimidazo[1,2-a]pyridinium dyes to human serum albumin by spectroscopic techniques

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      Embargo Lift Date: 2018-01-08
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      Author(s)
      Özdemir, A.
      Gökoğlu, E.
      Yılmaz, Esra
      Yalçın, E.
      Gökoğlu, E.
      Seferoğlu, Z.
      Tekinay, T.
      Date
      2017
      Source Title
      Luminescence
      Print ISSN
      1522-7235
      Publisher
      John Wiley and Sons Ltd
      Volume
      32
      Issue
      1
      Pages
      86 - 92
      Language
      English
      Type
      Article
      Item Usage Stats
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      226
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      Abstract
      The binding interaction between two dicationic styrylimidazo[1,2-a]pyridinium dyes and human serum albumin (HSA) was investigated at physiological conditions using fluorescence, UV–vis absorption, and circular dichroism (CD) spectroscopies. Analysis of the fluorescence titration data at different temperatures suggested that the fluorescence quenching mechanism of HSA by these dyes was static. The calculated thermodynamic parameters (ΔG°, ΔH° and ΔS°) indicated that hydrogen bonding and van der Waals forces played a major role in the formation of the dye–HSA complex. Binding distances (r) between dyes and HSA were calculated according to Förster's non-radiative energy transfer theory. Studies of conformational changes of HSA using CD measurements indicate that the α-helical content of the protein decreased upon binding of the dyes.
      Keywords
      Binding mode
      Circular dichroism
      Dicationic styryl dyes
      Fluorescence quenching
      Human serum albumin
      Cation
      Fluorescent dye
      Imidazole derivative
      Pyridinium derivative
      Serum albumin
      Styrylimidazo(1,2-a)pyridinium
      Binding site
      Chemistry
      Circular dichroism
      Human
      Spectrofluorometry
      Thermodynamics
      Ultraviolet spectrophotometry
      Binding Sites
      Cations
      Circular Dichroism
      Fluorescent Dyes
      Imidazoles
      Pyridinium Compounds
      Serum Albumin
      Spectrometry
      Spectrophotometry
      Thermodynamics
      Ultraviolet
      Fluorescence
      Permalink
      http://hdl.handle.net/11693/36418
      Published Version (Please cite this version)
      http://dx.doi.org/10.1002/bio.3153
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      • Institute of Materials Science and Nanotechnology (UNAM) 2258
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