Department of Inorganic and Analytical Chemistry, University of Debrecen, H-4010, Debrecen, Hungary.
Dalton Trans. 2010 Nov 14;39(42):10272-8. doi: 10.1039/c0dt00469c. Epub 2010 Oct 4.
The interaction between Ru(η(6)-p-cym)(H(2)O)(3) and (O,O) type chelators with different basicity of the donor atoms was studied using combined pH-potentiometric, (1)H-NMR and ESI-TOF-MS techniques. The studied nine ligands are building blocks of reported complexes with antitumor activity or may model (O,O) donor serum components capable of interacting with the administered half-sandwich ruthenium(II) type drug. Composition and stability constants of the [Ru(η(6)-p-cym)(O,O)Y] type species (Y: H(2)O or OH(-)) were determined (T = 25.0 °C; I = 0.20 M (KCl)) and the metal ion binding strengths of the ligands are discussed. It was found that ligands with two low basicity O donors (oxalic and cyclobutane-1,1-dicarboxylic acid) bind the metal ion at acidic conditions but are not able to prevent the hydrolysis at physiologically relevant conditions. Ligands with one low and one high basicity O donor (lactic and salicylic acid) are weak binders for Ru(η(6)-p-cym)(H(2)O)(3)](2+). Pyrone or pyridinone based ligands are capable of binding the metal ion over a wide pH range and no hydrolysis product is detectable at pH = 7.4. The obtained speciation models may help in the rationalization of the biological activity of such complexes and provide a deeper insight into the solution behaviour of half-sandwich Ru(II) complexes with potential anticancer activity.
采用 pH 电位滴定、(1)H-NMR 和 ESI-TOF-MS 技术研究了 Ru(η(6)-p-cym)(H(2)O)(3)与不同供体原子碱性的 (O,O)型螯合剂之间的相互作用。研究的九种配体是具有抗肿瘤活性的报道配合物的结构单元,或者可能模拟(O,O)供体血清成分,能够与给予的半夹心钌(II)型药物相互作用。[Ru(η(6)-p-cym)(O,O)Y]型物种(Y:H(2)O 或 OH(-))的组成和稳定常数(T = 25.0°C;I = 0.20 M (KCl))进行了测定,并讨论了配体与金属离子的结合强度。结果发现,两种低碱性 O 供体(草酸和环丁烷-1,1-二羧酸)的配体在酸性条件下与金属离子结合,但不能在生理相关条件下阻止水解。一个低碱性和一个高碱性 O 供体(乳酸和水杨酸)的配体对 Ru(η(6)-p-cym)(H(2)O)(3)](2+)的结合能力较弱。吡喃酮或吡咯烷酮基配体能够在较宽的 pH 范围内与金属离子结合,在 pH = 7.4 时检测不到水解产物。获得的形态模型可能有助于合理化此类配合物的生物活性,并深入了解具有潜在抗癌活性的半夹心 Ru(II)配合物的溶液行为。