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Solvation of platinum anti-cancer drugs in methanol-water mixtures

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Abstract

Solubilities and transfer chemical potentials of carboplatin, cisplatin, iproplatin, and several related platinum complexes have been determined in methanol-water mixtures. the range of solvation behaviour is discussed in relation to possible oral administration of complexes of this type.

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References

  • Alshehri S, Burgess J, Darcey KA, Patel MS. 1994 Solvation of ethylmaltol and of its iron(III) complex. Transition Met Chem 19, 119–122.

    Google Scholar 

  • Barnard CFJ, Cleare MJ, Hydes PC. 1986 Second generation anticancer platinum compounds. Chem Brit 22, 1001–1004.

    Google Scholar 

  • Blandamer MJ, Burgess J. 1988 Solvation of transition metal complexes: thermochemical approaches. Transition Met Chem 13, 1–18.

    Google Scholar 

  • Blandamer MJ, Burgess J, Duce PP, Duffield AJ, Hamshere SJ. 1981 Initial state and transition state solvation in substitution at the square-planar complexes [PtCl4]2− and [Pd(Et4dien)Cl]+. Transition Met Chem 6, 368–371.

    Google Scholar 

  • Burgess J. 1993 Transition metals in diagnosis and therapy. Transition Met Chem 18, 439–448.

    Google Scholar 

  • Burgess J, Abu-Gharib EA. 1984 Solubilities of salts of co- balt(III), chromium(III), and iron(II) complexes in aqueous methanol; transfer chemical potentials of anions. Transition Met Chem 9, 234–236.

    Google Scholar 

  • Burgess J, Drasdo DN. 1993 Solubilities of calcium salts of dicarboxylic acids in methanol-water mixtures; transfer chem- ical potentials of dicarboxylate anions Polyhedron 12, 2905–2911.

    Google Scholar 

  • Burgess J, Patel MS. 1990 Solvation of tris-maltolato-alumin- ium(III) and related complexes in methanol-water mixtures. Inorg Chim Acta 170, 241–243.

    Google Scholar 

  • Burgess J, Radulovic S, Sanchez F. 1987 Solvatochromism and solvation of ternary iron-diimine-cyanide complexes. Transi- tion Met Chem 12, 529–536.

    Google Scholar 

  • Burgess J, Drasdo DN, Patel MS. 1994 Solubilities and solvation of aluminum(III), iron(III), and indium(III) 8-hydroxyquino- linates in methanol/water mixtures. J Pharm Sci 83, 54–57.

    Google Scholar 

  • Canovese L, Cattalini L, Chessa G, Tobe ML. 1988 Kinetics of the displacement of cyclobutane-1,1′-dicarboxylate from diammine-(cyclobutane-1,1′-dicarboxylato)platinum(II) in aqueous solution. J Chem Soc Dalton Trans, 2135–2140.

  • Griffin WC. 1954 Calculation of HLB values for non-ionic surfactants. J Soc Cosmet Chem 5, 249–256.

    Google Scholar 

  • Hansch C, Leo A. 1979 Substitution Constants for Correlation Analysis in Chemistry and Biology. New York: Wiley; 49–54.

    Google Scholar 

  • Hardaway LA, Yalkowsky SH. 1991 Cosolvent effects on diuron solubility. J Pharm Sci 80, 197–198.

    Google Scholar 

  • Kelland LR. 1993 New platinum antitumor complexes. Crit Rev Oncol Hematol 15, 191–219.

    Google Scholar 

  • McKeage MJ, Boxall FE, Jones M, Harrap KR. 1994 Lack of neurotoxicity of oral bisacetatoamminedichlorocyclohexyl- amine-platinum(IV) in comparison to cisplatin and carboplatin in the rat. Cancer Res 54, 629–631.

    Google Scholar 

  • Morikawa K, Honda M, Endoh K, et al. 1991 Synthesis, antitumor activity, and nephrotoxicity of the optical isomers of 2-amino-methylpyrrolidine(1,1′-cyclobutanedicarboxylato)- platinum(II). J Pharm Sci 80, 837–842.

    Google Scholar 

  • Pujol M, Part J, Trillas M, Domenech X. 1993 Stability of aqueous carboplatin solutions under illumination. Monatsh Chem 124, 1077–1081.

    Google Scholar 

  • Reedijk J, Fichtinger-Schepman AMJ, van Oosterom AT, van de Putte P. 1987 Platinum amine coordination compounds as anti-tumor drugs. Molecular aspects of the mechanism of action. Struct Bonding 67, 53–89.

    Google Scholar 

  • Rekker RF, Mannhold R. Calculation of Drug Lipophilicity, Weinheim: VCH.

  • Shkadova AI. 1969 Solubility of sulfanilamide compounds in ethanol-water mixtures. Farm Zh (Kiev) 24, 39–41.

    Google Scholar 

  • Stein WD. 1986 Transport and Diffusion across Cell Membranes. Orlando, FL: Academic Press; 103–107.

    Google Scholar 

  • Van der Veer JL, Reedijk J. 1988 Investigating antitumour drug mechanisms. Chem Brit 24, 775–780.

    Google Scholar 

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Burgess, J., Drasdo, D.N. & Patel, M.S. Solvation of platinum anti-cancer drugs in methanol-water mixtures. Biometals 8, 137–141 (1995). https://doi.org/10.1007/BF00142013

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