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通过高效液相色谱法和核磁共振技术相结合的方法研究顺铂水解产物与蛋氨酸、半胱氨酸及血浆超滤液的反应。

Reactions of cisplatin hydrolytes with methionine, cysteine, and plasma ultrafiltrate studied by a combination of HPLC and NMR techniques.

作者信息

el-Khateeb M, Appleton T G, Gahan L R, Charles B G, Berners-Price S J, Bolton A M

机构信息

Chemistry Department, University of Queensland, Brisbane, Australia.

出版信息

J Inorg Biochem. 1999 Oct;77(1-2):13-21. doi: 10.1016/s0162-0134(99)00146-4.

Abstract

The reactions of cis-[PtCl(NH3)2(H2O)]+ with L-methionine have been studied by 1D 195Pt and 15N NMR, and by 2D[1H, 15N] NMR. When the platinum complex is in excess, the initial product, cis-[PtCl(NH3)2(Hmet-S)]+ undergoes slow ring closure to [Pt(NH3)2(Hmet-N,S)]2+. Slow ammine loss then occurs to give the isomer of [PtCl(NH3)(Hmet-N,S)]+ with chloride trans to sulfur. When methionine is in excess, a reaction sequence is proposed in which trans-[PtCl(NH3)(Hmet-S)2]+ isomerises to the cis-isomer, with subsequent ring closure reactions leading to cis-[Pt(Hmet-N,S)2]2+. Near pH 7, methionine is unreactive toward cis-[PtCl(OH)(NH3)2]. By contrast, L-cysteine reacts readily with cis-[PtCl(OH)(NH3)2] at pH 7, but there were many reaction products, including bridged species. Cis-[PtCl(OH)(NH3)2] reacts with reduced thiols in ultrafiltered plasma but these are oxidized if the plasma is not fresh or appropriately stored. With very low concentrations of the platinum complexes (35.5 microM), HPLC experiments (UV detection at 305 nm) indicate that the thiolate (probably cysteine) reactions become simpler as bridging becomes less important.

摘要

通过一维¹⁹⁵Pt和¹⁵N核磁共振以及二维[¹H,¹⁵N]核磁共振研究了顺式-[PtCl(NH₃)₂(H₂O)]⁺与L-蛋氨酸的反应。当铂配合物过量时,初始产物顺式-[PtCl(NH₃)₂(Hmet-S)]⁺会缓慢闭环生成[Pt(NH₃)₂(Hmet-N,S)]²⁺。随后会缓慢失去氨,生成氯与硫呈反式的[PtCl(NH₃)(Hmet-N,S)]⁺异构体。当蛋氨酸过量时,提出了一个反应序列,其中反式-[PtCl(NH₃)(Hmet-S)₂]⁺异构化为顺式异构体,随后的闭环反应生成顺式-[Pt(Hmet-N,S)₂]²⁺。在pH约为7时,蛋氨酸对顺式-[PtCl(OH)(NH₃)₂]无反应。相比之下,L-半胱氨酸在pH 7时能与顺式-[PtCl(OH)(NH₃)₂]迅速反应,但有许多反应产物,包括桥连物种。顺式-[PtCl(OH)(NH₃)₂]与超滤血浆中的还原型硫醇反应,但如果血浆不新鲜或储存不当,这些硫醇会被氧化。对于非常低浓度的铂配合物(35.5微摩尔),高效液相色谱实验(305纳米处的紫外检测)表明,随着桥连变得不那么重要,硫醇盐(可能是半胱氨酸)反应变得更简单。

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