三齿N′N′螯合体铂(II)配合物的潜在抗癌活性

IF 0.4 4区 化学 Q4 Chemistry
J. Lasri, M. Aly, N. E. Eltayeb, M. Alamri, Bandar A. Babgi, M. Hussien
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引用次数: 0

摘要

顺式/反式-[PtCl (R), CH), CH 4 (p - ch 3) (1d)))与1,3-二亚胺异吲哚啉2结合,可以得到相应的对称(1,3,5,7,9-五氮杂合-1,3,6,8-四烯杂合)铂(II)配合物[PtCl{NH=C(R)N=C(C 6 H 4)NC=NC(R)=NH}] 3a-d,产率为65-77%)。化合物3a-d通过IR、1h、13c和DEPT-135 NMR、ESI-MS和元素分析进行了表征。通过比较实验和理论的1 H和13 C核磁共振化学位移,通过GIAO/DFT研究证实了铂(II)-钳子3d的分子结构,质子和碳的实验和计算的化学位移具有良好的相关性,相关系数分别为0.9947和0.9968。分子静电势用于研究分子三维中的亲核区或亲电区。测定了化合物3a-d对不同病原菌和酵母菌的抑菌活性。作为实验生物,在3a-c条件下,对Artemia saline没有毒性记录,而在0.62µM条件下,对3d有中等毒性。发现3a-d对人结肠癌HCT116和人乳腺癌(MCF-7)癌细胞的抗肿瘤活性相当。配合物3a-d与ct-DNA的结合亲和力在6.0010.5 ~ 8.3310.5范围内,分子对接研究表明配体的异吲哚片段与DNA的结合具有插层模式。总之,这类三齿配体在设计具有良好生物活性和抗癌活性的铂(II)配合物方面显示出良好的潜力。此外,配体上侧链的存在通过引入一些化学和/或物理特性提供了很大的设计灵活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The potential anticancer activities of platinum(II) complexes with tridentate N'N'N' pincer ligands
of cis/trans -[PtCl (R ), C H ), ), C H 4 ( p -CH 3 ) ( 1d )) with 1,3-diiminoisoindoline 2 gives access to the corresponding symmetrical (1,3,5,7,9-pentaazanona-1,3,6,8-tetraenato) platinum(II) complexes [PtCl{NH=C(R)N=C(C 6 H 4 )NC=NC(R)=NH}] 3a-d , in good yields (65–77%). The compounds 3a-d have been characterized by IR, 1 H, 13 C and DEPT-135 NMR spectroscopies, ESI-MS and elemental analyses. GIAO/DFT studies have been performed to confirm the molecular structure of the platinum(II)-pincer 3d by comparing the experimental and theoretical 1 H and 13 C NMR chemical shifts, and it has shown good correlations between experimental and calculated chemical shifts for proton and carbon with correlation coefficients of 0.9947 and 0.9968, respectively. Molecular electrostatic potential is used to investigate the nucleophilic or electrophilic regions in the molecule 3d . The antimicrobial activities of compounds 3a-d are determined against different bacterial pathogens and yeasts. No toxicity is recorded against Artemia saline as a test organism for 3a-c , while moderate toxicity is found for 3d at 0.62 µM. Comparable antitumor activities are found for 3a-d against human colon HCT116 and human breast (MCF-7) cancer cell lines. The complexes 3a-d have shown good binding affinities to ct-DNA in the range of 6.00  10 5 to 8.33  10 5 and the conducted molecular docking studies suggest an intercalation mode of binding with DNA by the isoindole fragment of the ligands. Overall, this class of tridentate ligands have shown good potential in designing platinum(II) complexes with promising biological and anticancer activities. Moreover, the presence of the side chains on the ligands provides great design flexibility by introducing some chemical and/or physical characteristics.
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