The interaction mechanism between
a scarcely soluble copper(II)
complex of Cu(II)-6-hydroxychromone-3-carbaldehyde-(3′-hydroxy)benzoylhydrazone
(CuCHz) in aqueous solution and its DMβCD complex was studied in the
presence of ctDNA through spectroscopy and thermodynamic
methods. The thermodynamic results indicate that the binding process
of the CuCHz–DMβCD inclusion complex is
a spontaneous process and the inclusion is enthalpy-driven. The binding
constants of CuCHz and CuCHz–DMβCD
with ctDNA are 2.69 × 103 and 14.7
× 103 L mol–1, respectively. The
stoichiometry of the complex is 1:1, and the determined thermodynamic
indicates that the process of binding is spontaneous and entropy-driven.
A competitive binding titration with ethidium bromide revealed that CuCHz efficiently displaces EB from the EB–DNA system.
In addition to the thermal denaturation experiments and docking studies,
we can confirm that the mode of binding of this complex to ctDNA is intercalation mode. The presence of DMβCD
enhances the aqueous solubility of CuCHz; nevertheless,
the cyclodextrin did not affect the interaction of CuCHz with ctDNA because the inclusion complex breaks
down when it binds with ctDNA.
Artículo de publicación ISIThe present work describes a study of complexation
efficiency and selectivity of calix[4]arenes bearing
benzoimidazolyl, benzothiazolyl, and benzoxazolyl heterocycles
(5–7) towards several selected metal ions using
fluorescence and UV–Vis spectroscopy. The binding ability
of calixarene derivatives 5–7 toward selected divalent metal
ions such as Ca, Cd, Pb, Ni, Mg, Mn, Co, Fe and Zn has been
investigated by fluorescence spectroscopic techniques.
Fluorescent chemosensor ability of three calixarene derivatives
was highly selective for Pb (II) in contrast with other
divalent metal studied. The highest association constant
corresponds to benzoxazolyl calixarene derivative 7, with a
Ka of (1.37 ± 0.06) 9 104 mol-1 L and detection limit for
lead of 1.14 ± 0.05 mg L-1 in methanol being acceptable
for the recognition of this metal at micromolar
concentrations.FONDECYT (Grant 1100906 and
1050795
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