Diruthenacyclopentenone complexes of the general composition [Ru(2)Cp(2)(CO)(2){μ-η(1):η(3)-CHâC(C(OH)(R))C(âO)}] (2a-c; Cp = η(5)-C(5)H(5)) were synthesized in 94-96% yields from the reactions of [Ru(2)Cp(2)(CO)(2){μ-η(1):η(3)-C(Ph)âC(Ph)C(âO)}] (1) with 1-ethynylcyclopentanol, 17α-ethynylestradiol, and 17-ethynyltestosterone, respectively, in toluene at reflux. Protonation of 2a-c by HBF(4) afforded the corresponding allenyl derivatives [Ru(2)Cp(2)(CO)(3){μ-η(1):η(2)-CHâCâR}]BF(4) (3a-c) in 85-93% yields. All products were thoroughly characterized by elemental analysis, mass spectrometry, and IR, UV-vis, and nuclear magnetic resonance spectroscopy. Additionally, 2a and 3a were investigated by cyclic voltammetry, and the single-crystal diffraction method was employed to establish the X-ray structures of 2b and 3a. The cytotoxicity in vitro of 2b and 3a-c was evaluated against nine human cancer cell lines (A2780, A2780R, MCF-7, HOS, A549, PANC-1, Caco-2, PC-3, and HeLa), while the selectivity was assessed on normal human lung fibroblast (MRC-5). Overall, complexes exert stronger cytotoxicity than cisplatin, and 3b (comprising 17α-estradiol derived ligand) emerged as the best-performing complex. Inductively coupled plasma mass spectrometry cellular uptake studies in A2780 cells revealed a higher level of internalization for 3b and 3c compared to 2b, 3a, and the reference compound RAPTA-C. Experiments conducted on A2780 cells demonstrated a noteworthy impact of 3a and 3b on the cell cycle, leading to the majority of the cells being arrested in the G0/G1 phase. Moreover, 3a moderately induced apoptosis and oxidative stress, while 3b triggered autophagy and mitochondrial membrane potential depletion.
Anticancer Potential of Diruthenium Complexes with Bridging Hydrocarbyl Ligands from Bioactive Alkynols.
生物活性炔醇桥联烃基配体的二钌配合物的抗癌潜力
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作者:Bresciani Giulio, VanÄo Ján, Funaioli Tiziana, Zacchini Stefano, Malina Tomáš, Pampaloni Guido, DvoÅák ZdenÄk, TrávnÃÄek ZdenÄk, Marchetti Fabio
| 期刊: | Inorganic Chemistry | 影响因子: | 4.700 |
| 时间: | 2023 | 起止号: | 2023 Oct 2; 62(39):15875-15890 |
| doi: | 10.1021/acs.inorgchem.3c01731 | 研究方向: | 肿瘤 |
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