6533b871fe1ef96bd12d10a3
RESEARCH PRODUCT
INTERACTIONS OF ORGANOTIN(IV) HALIDES WITH REDUCED GLUTATHIONE IN AQUEOUS-SOLUTION
Francesca CapolongoAnna Maria GiulianiUmberto RussoMarcello Giominisubject
Aqueous solutionChemistryRadicalInorganic chemistrychemistry.chemical_elementQuadrupole splittingBiochemistryMedicinal chemistryInorganic ChemistryTrigonal bipyramidal molecular geometryMössbauer spectroscopyProton NMRTinCoordination geometrydescription
Abstract Glutathione (GSH) is a compound extremely common among many living organisms in which it plays a fundamental role in the processes of detoxification. Also, organotin(IV) derivatives are more and more commonly used in technological processes or as antitumor drugs. So it seemed interesting to investigate the possible interactions between GSH and organotin compounds in water. Particularly, it has been studied because of its role in the organic radicals linked to the tin center on the stoichiometry and the structure of the adducts. Information was obtained following the reaction between Me n SnCl 4-n (n = 1 to 3) and GSH by Mossbauer and NMR spectroscopies on the assumption that changes of the characteristic parameters such as the quadrupole splitting and the chemical shift and coupling constants, respectively, are closely related to modifications in the coordination of the tin atom. In the case of addition of GSH to a solution of CH 3 SnCl 3 in HEPES, complex equilibria are evidenced, while in the case of Me 2 SnCl 2 and of Me 3 SnCl only a single species is present. Mossbauer effect data together with point charge calculations and 1 H NMR results point to a 2:1 and a 1:1 complex, respectively; GSH is coordinated by the S thiolic ; atom and the coordination geometry around the tin center appears to be trigonal bipyramidal.
year | journal | country | edition | language |
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1993-03-01 |