Ekengard Erik, Glans Lotta, Cassells Irwin, Fogeron Thibault, Govender Preshendren, Stringer Tameryn, Chellan Prinessa, Lisensky George C, Hersh William H, Doverbratt Isa, Lidin Sven, de Kock Carmen, Smith Peter J, Smith Gregory S, Nordlander Ebbe
Inorganic Chemistry Research Group, Chemical Physics, Department of Chemistry, Lund University, Box 124, SE-221 00 Lund, Sweden.
Dalton Trans. 2015 Nov 28;44(44):19314-29. doi: 10.1039/c5dt02410b. Epub 2015 Oct 22.
Eight new ruthenium and five new osmium p-cymene half-sandwich complexes have been synthesized, characterized and evaluated for antimalarial activity. All complexes contain ligands that are based on a 4-chloroquinoline framework related to the antimalarial drug chloroquine. Ligands HL(1-8) are salicylaldimine derivatives, where HL(1) = N-(2-((2-hydroxyphenyl)methylimino)ethyl)-7-chloroquinolin-4-amine, and HL(2-8) contain non-hydrogen substituents in the 3-position of the salicylaldimine ring, viz. F, Cl, Br, I, NO2, OMe and (t)Bu for HL(2-8), respectively. Ligand HL(9) is also a salicylaldimine-containing ligand with substitutions in both 3- and 5-positions of the salicylaldimine moiety, i.e. N-(2-((2-hydroxy-3,5-di-tert-butylphenyl)methyl-imino)ethyl)-7-chloroquinolin-4-amine, while HL(10) is N-(2-((1-methyl-1H-imidazol-2-yl)methylamino)ethyl)-7-chloroquinolin-4-amine) The half sandwich metal complexes that have been investigated are [Ru(η(6)-cym)(L(1-8))Cl] (Ru-1-Ru-8, cym = p-cymene), [Os(η(6)-cym)(L(1-3,5,7))Cl] (Os-1-Os-3, Os-5, and Os-7), [M(η(6)-cym)(HL(9))Cl2] (M = Ru, Ru-HL(9); M = Os, Os-HL(9)) and [M(η(6)-cym)(L(10))Cl]Cl (M = Ru, Ru-10; M = Os, Os-10). In complexes Ru-1-Ru-8 and Ru-10, Os-1-Os-3, Os-5 and Os-7 and Os-10, the ligands were found to coordinate as bidentate N,O- and N,N-chelates, while in complexes Ru-HL(9) and Os-HL(9), monodentate coordination of the ligands through the quinoline nitrogen was established. The antimalarial activity of the new ligands and complexes was evaluated against chloroquine sensitive (NF54 and D10) and chloroquine resistant (Dd2) Plasmodium falciparum malaria parasite strains. Coordination of ruthenium and osmium arene moieties to the ligands resulted in lower antiplasmodial activities relative to the free ligands, but the resistance index is better for the ruthenium complexes compared to chloroquine. Overall, osmium complexes appeared to be less active than the corresponding ruthenium complexes.
已合成、表征并评估了八种新型钌和五种新型对异丙基苯半夹心锇配合物的抗疟活性。所有配合物均含有基于与抗疟药物氯喹相关的4-氯喹啉骨架的配体。配体HL(1 - 8)是水杨醛亚胺衍生物,其中HL(1) = N-(2-((2-羟基苯基)甲基亚氨基)乙基)-7-氯喹啉-4-胺,HL(2 - 8)在水杨醛亚胺环的3-位分别含有非氢取代基,即HL(2 - 8)的F、Cl、Br、I、NO₂、OMe和(t)Bu。配体HL(9)也是一种在水杨醛亚胺部分的3-位和5-位均有取代的含水杨醛亚胺配体,即N-(2-((2-羟基-3,5-二叔丁基苯基)甲基亚氨基)乙基)-7-氯喹啉-4-胺,而HL(10)是N-(2-((1-甲基-1H-咪唑-2-基)甲基氨基)乙基)-7-氯喹啉-4-胺)。所研究的半夹心金属配合物为[Ru(η(6)-对异丙基苯)(L(1 - 8))Cl] (Ru - 1 - Ru - 8,对异丙基苯 = 对异丙基苯)、[Os(η(6)-对异丙基苯)(L(1 - 3,5,7))Cl] (Os - 一Os - 3, Os - 5和Os - 7)、[M(η(6)-对异丙基苯)(HL(9))Cl₂] (M = Ru,Ru - HL(9); M = Os, Os - HL(9))和[M(η(6)-对异丙基苯)(L(10))Cl]Cl (M = Ru,Ru - 10; M = Os, Os - 10)。在配合物Ru - 1 - Ru - 8和Ru - 10、Os - 1 - Os - 3、Os - 5和Os - 7以及Os - 10中,发现配体以双齿N,O - 和N,N - 螯合物的形式配位,而在配合物Ru - HL(9)和Os - HL(9)中,通过喹啉氮建立了配体的单齿配位。针对氯喹敏感(NF54和D10)和氯喹耐药(Dd2)恶性疟原虫疟原虫菌株评估了新配体和配合物的抗疟活性。钌和锇芳烃部分与配体的配位导致相对于游离配体的抗疟活性较低,但与氯喹相比,钌配合物的耐药指数更好。总体而言,锇配合物似乎比相应的钌配合物活性更低。