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New activation mechanism for half-sandwich organometallic anticancer complexes

机译:半三明治有机金属抗癌复合物的新激活机制

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摘要

The Cpx C–H protons in certain organometallic RhIII half-sandwich anticancer complexes [(η5-Cpx)Rh(N,N′)Cl]+, where Cpx = Cp*, phenyl or biphenyl-Me4Cp, and N,N′ = bipyridine, dimethylbipyridine, or phenanthroline, can undergo rapid sequential deuteration of all 15 Cp* methyl protons in aqueous media at ambient temperature. DFT calculations suggest a mechanism involving abstraction of a Cp* proton by the Rh–hydroxido complex, followed by sequential H/D exchange, with the Cp* rings behaving like dynamic molecular ‘twisters’. The calculations reveal the crucial role of pπ orbitals of N,N′-chelated ligands in stabilizing deprotonated Cpx ligands, and also the accessibility of RhI–fulvene intermediates. They also provide insight into why biologically-inactive complexes such as [(Cp*)RhIII(en)Cl]+ and [(Cp*)IrIII(bpy)Cl]+ do not have activated Cp* rings. The thiol tripeptide glutathione (γ-l-Glu-l-Cys-Gly, GSH) and the activated dienophile N-methylmaleimide, (NMM) did not undergo addition reactions with the proposed RhI–fulvene, although they were able to control the extent of Cp* deuteration. We readily trapped and characterized RhI–fulvene intermediates by Diels–Alder [4+2] cyclo-addition reactions with the natural biological dienes isoprene and conjugated (9Z,11E)-linoleic acid in aqueous media, including cell culture medium, the first report of a Diels–Alder reaction of a metal-bound fulvene in aqueous solution. These findings will introduce new concepts into the design of organometallic Cp* anticancer complexes with novel mechanisms of action.
机译:某些有机金属Rh III 半三明治抗癌复合物[(η 5 -Cp x x C–H质子sup>)Rh(N,N')Cl] + ,其中Cp x = Cp *,苯基或联苯基-Me4Cp,N,N'=联吡啶,二甲基联吡啶,或菲咯啉可在环境温度下对水性介质中的所有15 Cp *甲基质子进行快速连续氘化。 DFT计算表明一种机制涉及通过Rh-羟基过氧化物络合物提取Cp *质子,然后依次进行H / D交换,Cp *环的行为类似于动态分子“扭曲”。计算结果揭示了N,N'螯合配体的pπ轨道在稳定去质子化的Cp x 配体中的关键作用,以及Rh I -富烯中间体的可及性。他们还提供了有关为什么无生物学活性的复合物的见解,例如[(Cp *)Rh III (en)Cl] + 和[(Cp *)Ir III (bpy)Cl] + 没有激活的Cp *环。巯基三肽谷胱甘肽(γ-1-Glu-1-Cys-Gly,GSH)和活化的亲二烯体N-甲基马来酰亚胺(NMM)没有与拟议的Rh I -富烯进行加成反应,尽管他们能够控制Cp *氘的程度。我们通过Diels-Alder [4 + 2]与天然生物二烯异戊二烯和共轭(9Z,11E)-亚油酸在水性介质中的Diels-Alder [4 + 2]环加成反应,轻松捕获和表征Rh I -富勒烯中间体。包括细胞培养基,这是金属结合的富烯在水溶液中的Diels-Alder反应的第一个报告。这些发现将把新概念引入具有新颖作用机理的有机金属Cp *抗癌复合物的设计中。

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