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Spectroscopic exploring the affinities, characteristics, and mode of binding interaction of curcumin with DNA. | LitMetric

Spectroscopic exploring the affinities, characteristics, and mode of binding interaction of curcumin with DNA.

Mol Biol Rep

Hubei Key Laboratory of Pollutant Analysis & Reuse Technology, Department of Chemistry, Hubei Normal University, Huangshi, 435002, People's Republic of China.

Published: July 2013

AI Article Synopsis

  • Curcumin, a compound in turmeric, exhibits various biological effects and shows a strong affinity for binding to herring sperm DNA (hs-DNA) through intercalation.
  • This was investigated using fluorescence and UV-Vis spectroscopy, revealing binding affinities in the range of 10^4 L mol(-1) under various conditions including ionic strength and pH.
  • The findings suggest that the techniques used could be useful for exploring curcumin's interactions with other biological systems and drug delivery applications.

Article Abstract

Curcumin is a polyphenolic bioactive compound found in the spice turmeric endowed with diverse pharmacological and biological activities. In this study, fluorescence spectroscopy in combination with UV-Vis absorbance spectroscopy was employed to investigate the high affinity binding of curcumin to herring sperm DNA (hs-DNA). From the series of studies undertaken in the present program, for example, steady-state emission; absorption; the effect of denaturants; competition experiment; and anion (iodide) ion-induced fluorescence quenching; the mode of binding of curcumin into the DNA helix has been substantiated to be principally intercalative. Binding parameters calculating from Stern-Volmer method and Scatchard method showed that curcumin bind to hs-DNA with the binding affinities of the order 10(4 )L mol(-1). The effects of ionic strength, chemical denaturants, thermal denaturation and pH were studied to show the factors of the interaction, and provided further support for the intercalative binding mode. In addition, the methods and techniques used in the present work can also be exploited to study the interaction of curcumin with other biological, biomimicking assemblies and drug delivery vehicles, and so forth.

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Source
http://dx.doi.org/10.1007/s11033-013-2530-6DOI Listing

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