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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Synthesis, structural characterisation and anti-proliferative activity of NHC gold amino acid and peptide conjugates
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Synthesis, structural characterisation and anti-proliferative activity of NHC gold amino acid and peptide conjugates

机译:NHC金氨基酸和肽结合物的合成,结构表征和抗增殖活性

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We report the synthesis of new NHC gold(I) and NHC gold(III) halide, amino acid and dipeptide complexes. Transmetallation of the N-phenylalanine-substituted NHC silver complex 3 with Me2SAuCl yields the phenylalanine-NHC gold(I) conjugate 4a. Halide exchange with LiBr and oxidation of 4a with Br-2 in CH2Cl2 yields the phenylalanine-NHC Au(I) and Au(III) bromides 4b and 4c, respectively. Reaction of N-Boc protected cysteine methyl ester (Boc-Cys-OMe) or the dipeptide N-Boc-Leu-Cys-OMe with the NHC gold chloride 6a yields the (NHC) Au-S complexed amino acid and dipeptide derivatives 8 and 9. The NHC gold(III) complexes 4c and 6c were characterised by single crystal X-ray analysis. All of the tested gold carbene complexes showed significant anti-tumor activity on the HeLa, HepG2 and HT-29 cancer cell lines. The best compounds show activity comparable to the well-known anti-cancer drug cisplatin. There seems to be no clear cut structure-activity relationship in the compounds tested, nor did we observe a dependence on the metal oxidation state or the different halide substituents. Given the ease of preparation, stability and high activity of the compounds described herein, it may be possible to design tumor-specific anti-cancer agents based on NHC gold amino acid conjugates in the future.
机译:我们报告了新的NHC金(I)和NHC金(III)卤化物,氨基酸和二肽配合物的合成。 N-苯丙氨酸取代的NHC银络合物3与Me2SAuCl的金属转移生成苯丙氨酸-NHC金(I)共轭物4a。与LiBr进行卤化物交换,并在CH2Cl2中用Br-2氧化4a,分别生成苯丙氨酸-NHC Au(I)和Au(III)溴化物4b和4c。 N-Boc保护的半胱氨酸甲酯(Boc-Cys-OMe)或二肽N-Boc-Leu-Cys-OMe与NHC金氯化物6a的反应产生了(NHC)Au-S络合的氨基酸和二肽衍生物8和9.通过单晶X射线分析表征了NHC金(III)配合物4c和6c。所有测试的金卡宾复合物均对HeLa,HepG2和HT-29癌细胞系显示出显着的抗肿瘤活性。最好的化合物显示出与众所周知的抗癌药顺铂相当的活性。在测试的化合物中似乎没有明确的结构-活性关系,也没有观察到对金属氧化态或不同卤化物取代基的依赖性。考虑到本文所述化合物易于制备,稳定性和高活性,将来可能有可能基于NHC金氨基酸缀合物设计肿瘤特异性抗癌药。

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