de J Parra Yonathan, Andueza L Felix D, Ferrer M Rosa E, Bruno Colmenarez Julia, Acosta María E, Charris Jaime, Rosenthal Philip J, Gut Jiri
Escuela de Ingeniería Ambiental, Facultad de Ingeniería en Geología, Minas, Petróleos y Ambiental, Universidad Central del Ecuador, Quito 170521, Ecuador.
Departamento de Química, Facultad de Humanidades y Educación, Universidad del Zulia, Apartado 526, Maracaibo, Estado Zulia, Venezuela.
EXCLI J. 2019 Oct 28;18:962-987. doi: 10.17179/excli2019-1805. eCollection 2019.
The synthesis of the compounds [(7-chloroquinolin-4-yl)amino]acetophenones (, ) and their copper(II) complexes (, ) is reported. The compounds were characterized using a wide range of spectroscopic and spectrometric techniques, such as FTIR, UV-vis, NMR, EPR, ESI-CID-MS. The spectral results suggested that the ligand acted as chelating species coordinating the metal through the endocyclic nitrogen of the quinoline ring in both complexes, with general formulae expressed in two ways, according to the phase in which they are: [Cu(L)Cl] for solid phase and [Cu(L)][2Cl] for liquid phase. The EPR study of the Cu (II) complexes indicated a probable distorted tetrahedral coordination geometry. This result was confirmed by the calculated optimized structures at the DFT/B3LYP method with the 6-31G (d,p) basis set. The characterization of the fragmentation pattern of protonated free ligands was extended here to fragments as low as 43, while for coordination complexes it extends to fragments at 80 and 111. The antimalarial activity of the compounds was determined through three different tests: inhibitory activity against growth of (W2), inhibition of hemozoin formation (β-hematin) and inhibitory activity against recombinant falcipain-2, where compound 5 showed considerable activity. However, the activity of free ligands against was increased by complexing with the Cu (II) metal ion. The values of the HOMO-LUMO energy gap of 3.847 eV () and 3.932 eV () were interpreted with high chemical activity and thus, could influence on biological activity. In both compounds, the total electron density surface mapped with electrostatic potential clearly revealed the presence of high negative charge on the Cu atom. Also, this study reported the molecular docking of free ligands (, ) using software package ArgusLab 4.0.1. The results revealed the importance of water molecules as interaction bridges through hydrogen bonds between free ligands and β-hematin; at the same time, the hypothesis that π-π interaction between quinoline derivatives and the electronic system of hematin governs the formation of adducts was confirmed.
报道了[(7-氯喹啉-4-基)氨基]苯乙酮类化合物(, )及其铜(II)配合物(, )的合成。使用多种光谱和光谱技术对这些化合物进行了表征,如傅里叶变换红外光谱(FTIR)、紫外可见光谱(UV-vis)、核磁共振(NMR)、电子顺磁共振(EPR)、电喷雾碰撞诱导解离质谱(ESI-CID-MS)。光谱结果表明,在两种配合物中,配体作为螯合物种通过喹啉环的内环氮与金属配位,根据其所处相态,通式有两种表示方式:固相为[Cu(L)Cl],液相为[Cu(L)][2Cl]。对铜(II)配合物的电子顺磁共振研究表明其配位几何结构可能为扭曲的四面体。采用密度泛函理论/ B3LYP方法并结合6-31G(d,p)基组计算得到的优化结构证实了这一结果。本文将质子化游离配体的碎片模式表征扩展至低至43的碎片,而对于配位配合物,其扩展至80和111的碎片。通过三种不同的测试确定了这些化合物的抗疟活性:对恶性疟原虫(W2)生长的抑制活性、对疟原虫血红素形成(β-血红素)的抑制作用以及对重组恶性疟原蛋白酶-2的抑制活性,其中化合物5表现出相当高的活性。然而,游离配体与铜(II)金属离子络合后对恶性疟原虫的活性增强。3.847 eV( )和3.932 eV( )的最高占据分子轨道-最低未占据分子轨道能隙值表明其具有较高的化学活性,因此可能影响生物活性。在这两种化合物中,用静电势映射的总电子密度表面清楚地显示出铜原子上存在高负电荷。此外,本研究还报道了使用软件包ArgusLab 4.0.1对游离配体(, )进行分子对接。结果揭示了水分子作为游离配体与β-血红素之间通过氢键形成相互作用桥的重要性;同时,证实了喹啉衍生物与血红素电子系统之间的π-π相互作用控制加合物形成的假设。