TY - JOUR
T1 - Determination of binding constants and stoichiometries for platinum anticancer drugs and serum transport proteins by capillary electrophoresis using the Hummel-Dreyer method
AU - Rudnev, Alexander V.
AU - Aleksenko, Svetlana S.
AU - Semenova, Olga
AU - Hartinger, Christian
AU - Timerbaev, Andrei
AU - Keppler, Bernhard
N1 - Zeitschrift: Journal of Separation Science
DOI: 10.1002/jssc.200401930
Coden: JSSCC
Affiliations: Vernadsky Inst. of Geochemistry, Russian Academy of Sciences, Kosygin St. 19, 117975 Moscow, Russian Federation; Institute of Inorganic Chemistry, Vienna University, Währinger Str. 42, A-1090 Vienna, Austria; Saratov Institute of Radiation, Chemical/Biological Warfare Defense, 410037 Saratov, Russian Federation
Adressen: Timerbaev, A.; Institute of Inorganic Chemistry; Vienna University; Währinger Str. 42 A-1090 Vienna, Austria; email: [email protected]
Source-File: ChemieErgScopus.csv
Import aus Scopus: 2-s2.0-14944347152
Importdatum: 09.01.2007 14:09:33
12.02.2008: Datenanforderung 2112 (Import Sachbearbeiter)
09.02.2010: Datenanforderung UNIVIS-DATEN-DAT.RA-2 (Import Sachbearbeiter)
PY - 2005
Y1 - 2005
N2 - A CE method has been developed to evidence and quantitatively characterize the interaction between platinum-based antitumor drugs and human serum proteins. This method is a variant of affinity CE modified regarding both experimental setup and data treatment so as to measure the peaks (or vacancies) that correspond to the bound drug when it slowly binds to the protein. Using the formalism of the Hummel-Dreyer method and cisplatin and oxaliplatin as test compounds, a protocol for determining albumin and transferrin binding constants and stoichiometries, including (and distinguished by) 48 hours of incubation of the reaction mixture, was elaborated. Relative affinities of drugs toward different proteins in aqueous solution at physiological pH, chloride concentration, and temperature were compared in terms of overall binding constants and numbers of drug molecules attached to the protein. The results indicate that both platinum drugs bind to albumin more strongly than to transferrin, supporting the concept that the albumin fraction is a major drug supply route for chemotherapeutical needs. From a comparison with the binding parameters measured previously for cisplatin by other methods, conclusions were drawn about the validity of CE as a simple and convenient method for assaying protein-drug reactions with slow kinetics. Œ 2005 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim.
AB - A CE method has been developed to evidence and quantitatively characterize the interaction between platinum-based antitumor drugs and human serum proteins. This method is a variant of affinity CE modified regarding both experimental setup and data treatment so as to measure the peaks (or vacancies) that correspond to the bound drug when it slowly binds to the protein. Using the formalism of the Hummel-Dreyer method and cisplatin and oxaliplatin as test compounds, a protocol for determining albumin and transferrin binding constants and stoichiometries, including (and distinguished by) 48 hours of incubation of the reaction mixture, was elaborated. Relative affinities of drugs toward different proteins in aqueous solution at physiological pH, chloride concentration, and temperature were compared in terms of overall binding constants and numbers of drug molecules attached to the protein. The results indicate that both platinum drugs bind to albumin more strongly than to transferrin, supporting the concept that the albumin fraction is a major drug supply route for chemotherapeutical needs. From a comparison with the binding parameters measured previously for cisplatin by other methods, conclusions were drawn about the validity of CE as a simple and convenient method for assaying protein-drug reactions with slow kinetics. Œ 2005 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim.
M3 - Article
SN - 1615-9306
VL - 28
SP - 121
EP - 127
JO - Journal of Separation Science
JF - Journal of Separation Science
IS - 2
ER -