Journal of Medicinal Chemistry · 2007 · 85 citations · 30 references
Inorganic ChemistryMedicinal ChemistryBiochemistryMedicineNatural SciencesPlatinum CompoundsCoordination ComplexCysteine ThiolatesNew Generation DrugsMolecular ComplexAnti-cancer AgentDrug DevelopmentPharmacologyPharmaceutical ChemistryInorganic SynthesisBiomolecular EngineeringDrug DiscoveryInorganic Compound
Intrinsic and acquired resistance are major drawbacks of platinum-based cancer therapy. The protein superfamily of cysteine- and ZnII-rich proteins, metallothioneins (MT), efficiently inactivate these antitumor drugs because of the strong reactivity of platinum compounds with S-donor molecules. In this study the reactions of human Zn7MT-2 with twelve cis/trans-[Pt(N-donor)2Cl2] compounds and [Pt(dien)Cl]Cl, including new generation drugs, were investigated and the products characterized. A comparison of reaction kinetics revealed that trans-PtII compounds react faster with Zn7MT-2 than cis-PtII compounds. The characterization of the products showed that while all ligands in cis-PtII compounds were replaced by cysteine thiolates, trans-PtII compounds retained their N-donor ligands, thus remaining in a potentially active form. These results provide an increased understanding of the role of MT in the acquired resistance to platinum-based anticancer drugs.
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Encyclopedia of inorganic chemistry
Choice Reviews Online · 2006 · 1.1K citations
Overexpression of Metallothionein Confers Resistance to Anticancer Drugs
Susan L. Kelley, Alakananda Basu, Beverly A. Teicher et al. · Science · 1988 · 604 citations