Kaczmarek Renata, Radzikowska-Cieciura Ewa, Królewska-Golińska Karolina, Dolot Rafał, Wheeler Kraig A, Chavez Ferman A, Dembinski Roman
Centre of Molecular and Macromolecular Studies, Polish Academy of Sciences, Sienkiewicza 112, 90-363 Łódź, Poland.
Department of Chemistry, Whitworth University, 300 W. Hawthorne Rd., Spokane, Washington 99251, United States.
ACS Med Chem Lett. 2023 Jun 29;14(7):962-969. doi: 10.1021/acsmedchemlett.3c00152. eCollection 2023 Jul 13.
Dicobalt hexacarbonyl 5-alkynyl furopyrimidine nucleoside analogs, with 4-methylphenyl (-tolyl) and 4-pentylphenyl substituents attached at the C-6 base position, designed in the form of ribose acetyl esters, were synthesized (42-96%). Attached at the C-5 position were propargyl alcohol, its methyl ether and acetate derivatives, butynol, and the 4-methylphenyl- (-tolyl) and 4-pentylphenyl-substituted alkynyl groups, which were coordinated to a dicobalt hexacarbonyl unit. The structure of 5-(3-acetoxyprop-1-yn-1-yl)-6--tolyl-2'-deoxyribofuranosyl-furo[2,3-]pyrimidin-2-one was determined by X-ray crystallography. Density functional theory calculations performed on the corresponding derivative yielded geometric parameters for the dicobalt hexacarbonyl adduct of this ligand. The cytotoxic activity of each of dicobalt modified nucleosides on cancer cells of different phenotypes was determined . The investigated compounds showed antiproliferative effects with median inhibitory concentration (IC) values in the ranges of 14-90 and 9-50 μM for HeLa and K562 cells, respectively. The formation of reactive oxygen species in the presence of modified nucleosides was determined in K562 cells. The results indicate that the mechanism of action for the studied compounds may be related to the induction of oxidative stress.
合成了二钴六羰基 5-炔基呋喃嘧啶核苷类似物,其在 C-6 碱基位置连接有 4-甲基苯基(对甲苯基)和 4-戊基苯基取代基,以核糖乙酰酯的形式存在(产率 42 - 96%)。连接在 C-5 位置的是炔丙醇、其甲基醚和乙酸酯衍生物、丁炔醇以及 4-甲基苯基(对甲苯基)和 4-戊基苯基取代的炔基,它们与二钴六羰基单元配位。通过 X 射线晶体学确定了 5-(3-乙酰氧基丙-1-炔-1-基)-6-对甲苯基-2'-脱氧核糖呋喃糖基-呋喃并[2,3 - ]嘧啶-2-酮的结构。对相应衍生物进行的密度泛函理论计算得出了该配体的二钴六羰基加合物的几何参数。测定了每种二钴修饰核苷对不同表型癌细胞的细胞毒性活性。所研究的化合物对 HeLa 和 K562 细胞分别显示出抗增殖作用,中位抑制浓度(IC)值范围为 14 - 90 μM 和 9 - 5 μM。在 K562 细胞中测定了在修饰核苷存在下活性氧的形成。结果表明,所研究化合物的作用机制可能与氧化应激的诱导有关。