Department of Chemistry, Institute of Natural Sciences, South Ural State University, 76 Lenin prospekt, Chelyabinsk 454080, Russian Federation.
Faculty of Science, School of Chemistry, Monash University, Clayton, Melbourne, VIC 3800, Australia.
J Inorg Biochem. 2022 Sep;234:111864. doi: 10.1016/j.jinorgbio.2022.111864. Epub 2022 May 20.
Eight tetra-arylantimony carboxylates of the general formula ArSbOC(O)R with Ar = Ph (a), p-Tol (b), R = CF (1), CHCF (2), CFBr (3), CFCFCF (4) have been synthesised and characterised. Two of them (2b, 3b) are structurally novel. All structures were analytically characterised by FT-IR, H, C NMR spectroscopy. Previously synthesised structures were also analysed by X-ray diffraction and their solid-state structures authenticated. The solid-state structures exhibited a typical trigonal-bipyramidal geometry at the antimony centre, with the carboxylic oxygen and one of the aryl group carbons occupying axial positions with the remaining three aryl groups in the equatorial plane. All complexes were screened for their anti-leishmanial activity and cytotoxicity towards mammalian macrophages. No anti-leishmanial testing on tetra-arylantimony carboxylates have been previously performed. It was observed that the tetra-phenylantimony analogues are far more effective in comparison to the tetra-(p-tolyl)antimony complexes, with IC values in the ranges of 2.90-7.75 μM and 64.97-124.71 μM, respectively, for the promastigote assay, and 70.87-76.28 μM, 9.08-10.18 μM for the macrophages. Interestingly, the dose-response curve for tetra-phenylantimony carboxylates is a standard sigmoid curve, while for all tetra-(p-tolyl)antimony complexes it has an unusual inverted U-shape, indicating they are effective only at a low dose. All tetra-phenylantimony carboxylates were assessed for their anti-amastigote activity and showed promising results: 1.00% ± 1.44 (1a), 5,25% ± 1.72 (2a), 20.75% ± 8.46 (3a), 5.75% ± 1.62 (4a) at 10 μM.
八种通式为 ArSbOC(O)R 的四芳基锑羧酸盐(其中 Ar = Ph(a),p-Tol(b),R = CF(1),CHCF(2),CFBr(3),CFCFCF(4))已被合成并进行了表征。其中两种(2b、3b)具有新颖的结构。所有结构均通过 FT-IR、H、C NMR 光谱进行分析。先前合成的结构也通过 X 射线衍射进行了分析,并确认了其固态结构。固态结构在锑中心表现出典型的三角双锥几何形状,其中羧酸氧原子和一个芳基碳原子占据轴向位置,其余三个芳基在赤道平面上。所有配合物均进行了抗利什曼原虫活性和对哺乳动物巨噬细胞的细胞毒性筛选。以前从未对四芳基锑羧酸盐进行过抗利什曼原虫测试。观察到四苯基锑类似物比四-(对甲苯基)锑配合物更有效,在原虫检测中,IC 值分别在 2.90-7.75μM 和 64.97-124.71μM 范围内,对于巨噬细胞,IC 值分别为 70.87-76.28μM 和 9.08-10.18μM。有趣的是,四苯基锑羧酸盐的剂量反应曲线是标准的 S 形曲线,而所有四-(对甲苯基)锑配合物的曲线呈异常的倒 U 形,表明它们仅在低剂量时有效。所有四苯基锑羧酸盐均进行了抗包囊期检测,结果显示有一定的效果:1.00%±1.44(1a),5.25%±1.72(2a),20.75%±8.46(3a),5.75%±1.62(4a)在 10μM 时。