Kaczmarek Renata, Korczyński Dariusz, Królewska-Golińska Karolina, Wheeler Kraig A, Chavez Ferman A, Mikus Agnieszka, Dembinski Roman
Department of Bioorganic Chemistry Centre of Molecular and Macromolecular Studies Polish Academy of Sciences Sienkiewicza 11290-363 Łódź Poland.
Department of Chemistry Whitworth University 300 W. Hawthorne Rd. Spokane WA 99251 USA.
ChemistryOpen. 2018 Jan 18;7(3):237-247. doi: 10.1002/open.201700168. eCollection 2018 Mar.
Reactions of dicobalt octacarbonyl [Co(CO)] with 2'-deoxy-5-oxopropynyluridines and related compounds gave dicobalt hexacarbonyl nucleoside complexes (83-31 %). The synthetic outcomes were confirmed by X-ray structure determination of dicobalt hexacarbonyl 2'-deoxy-5-(4-hydroxybut-1-yn-1-yl)uridine, which exhibits intermolecular hydrogen bonding between a modified base and ribose. The electronic structure of this compound was characterized by the DFT calculations. The growth inhibition of HeLa and K562 cancer cell lines by organometallic nucleosides was examined and compared to that by alkynyl nucleoside precursors. Coordination of the dicobalt carbonyl moiety to the 2'-deoxy-5-alkynyluridines led to a significant increase in the cytotoxic potency. The cobalt compounds displayed antiproliferative activities with median inhibitory values (IC) in the range of 20 to 80 μm for the HeLa cell line and 18 to 30 μm for the K562 cell line. Coordination of an acetyl-substituted cobalt nucleoside was expanded by using the 1,1-bis(diphenylphosphino)methane (dppm) ligand, which exhibited cytotoxicity at comparable levels. The formation of reactive oxygen species in the presence of cobalt compounds was determined in K562 cells. The results indicate that the mechanism of action for most antiproliferative cobalt compounds may be related to the induction of oxidative stress.
八羰基二钴[Co₂(CO)₈]与2'-脱氧-5-氧代丙炔基尿苷及相关化合物反应生成了六羰基二钴核苷配合物(产率83 - 31%)。通过对六羰基二钴2'-脱氧-5-(4-羟基丁-1-炔-1-基)尿苷进行X射线晶体结构测定,证实了合成结果,该化合物在修饰碱基与核糖之间存在分子间氢键。通过密度泛函理论(DFT)计算对该化合物的电子结构进行了表征。研究了有机金属核苷对HeLa和K562癌细胞系的生长抑制作用,并与炔基核苷前体的抑制作用进行了比较。二钴羰基部分与2'-脱氧-5-炔基尿苷的配位导致细胞毒性显著增强。钴化合物对HeLa细胞系的半数抑制浓度(IC₅₀)在20至80 μM范围内,对K562细胞系的IC₅₀在18至30 μM范围内,表现出抗增殖活性。使用1,1-双(二苯基膦基)甲烷(dppm)配体扩展了乙酰基取代钴核苷的配位,该配体表现出相当水平的细胞毒性。在K562细胞中测定了钴化合物存在下活性氧的形成。结果表明,大多数抗增殖钴化合物的作用机制可能与氧化应激的诱导有关。