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铂(IV)前药水解惰性的研究。

Investigation of the Inertness to Hydrolysis of Platinum(IV) Prodrugs.

作者信息

Ritacco Ida, Mazzone Gloria, Russo Nino, Sicilia Emilia

机构信息

Department of Chemistry and Chemical Technologies, Università della Calabria , 87036 Arcavacata di Rende, CS, Italy.

出版信息

Inorg Chem. 2016 Feb 15;55(4):1580-6. doi: 10.1021/acs.inorgchem.5b02484. Epub 2016 Jan 26.

Abstract

Platinum(IV) complexes are an important class of compounds that can act as prodrugs, and due to their inertness, if correctly designed, they could have low toxicity outside the cancer cell and improve the pharmacological properties of the platinum(II) anticancer agents that are currently used in the clinic. Because of the efforts that are concentrated on the use of axial ligands able to control the reduction potentials, lipophilicity, charge, selectivity, targeting, and cell uptake of the Pt(IV) complexes, we considered to be of interest to probe the inertness of such complexes that is assumed to be a fulfilled prerequisite. To this aim, a density functional theory computational analysis of the hydrolysis mechanism and the corresponding energy profiles for a series of Pt(IV) derivatives of cisplatin, carboplatin, and oxaliplatin with acetato, haloacetato, and chlorido ligands was performed to probe their stability in biological fluids. The heights of the barriers calculated along the hydrolysis pathways for the associative displacement of ligands both in axial and equatorial positions confirm that Pt(IV) complexes are, in general, more inert than the corresponding Pt(II) drugs even if inertness is lower than expected. Some exceptions exist, such as derivatives of oxaliplatin for the hydrolysis in equatorial position. The nature of the axial ligands influences the course of the hydrolysis reaction even if a decisive role is played by the ligands in equatorial positions. The mechanism of the aquation in axial position of cisplatin Pt(IV) derivative with two chlorido axial ligands assisted by Pt(II) cisplatin was elucidated, and the calculated activation energy confirms the catalytic role played by the Pt(II) complex.

摘要

铂(IV)配合物是一类重要的化合物,可作为前药,并且由于其惰性,如果设计得当,它们在癌细胞外可能具有低毒性,并能改善目前临床上使用的铂(II)抗癌药物的药理性质。由于人们致力于使用能够控制铂(IV)配合物的还原电位、亲脂性、电荷、选择性、靶向性和细胞摄取的轴向配体,我们认为探究此类配合物的惰性很有意义,因为这被认为是一个已满足的前提条件。为此,对顺铂、卡铂和奥沙利铂的一系列带有乙酸根、卤代乙酸根和氯配体的铂(IV)衍生物的水解机理和相应的能量分布进行了密度泛函理论计算分析,以探究它们在生物流体中的稳定性。沿着水解途径计算得到的轴向和赤道位置配体缔合取代的势垒高度证实,一般来说,铂(IV)配合物比相应的铂(II)药物更具惰性,即使惰性低于预期。也存在一些例外情况,例如奥沙利铂赤道位置水解的衍生物。轴向配体的性质会影响水解反应的进程,尽管赤道位置的配体起决定性作用。阐明了具有两个轴向氯配体的顺铂铂(IV)衍生物在轴向位置水合反应的机理,计算得到的活化能证实了铂(II)配合物所起的催化作用。

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