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Antiproliferative Homoleptic and Heteroleptic Phosphino Silver(I) Complexes: Effect of Ligand Combination on Their Biological Mechanism of Action

机译:抗增殖的经络和异磷酸氨基银(I)配合物:配体组合对其生物机制的影响

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摘要

A series of neutral mixed-ligand [HB(pz)3]Ag(PR3) silver(I) complexes (PR3 = tertiary phosphine, [HB(pz)3]− = tris(pyrazolyl)borate anion), and the corresponding homoleptic [Ag(PR3)4]BF4 compounds have been synthesized and fully characterized. Silver compounds were screened for their antiproliferative activities against a wide panel of human cancer cells derived from solid tumors and endowed with different platinum drug sensitivity. Mixed-ligand complexes were generally more effective than the corresponding homoleptic derivatives, but the most active compounds were [HB(pz)3]Ag(PPh3) (5) and [Ag(PPh3)4]BF4 (10), both comprising the lipophilic PPh3 phosphine ligand. Detailed mechanistic studies revealed that both homoleptic and heteroleptic silver complexes strongly and selectively inhibit the selenoenzyme thioredoxin reductase both as isolated enzyme and in human ovarian cancer cells (half inhibition concentration values in the nanomolar range) causing the disruption of cellular thiol-redox homeostasis, and leading to apoptotic cell death. Moreover, for heteroleptic Ag(I) derivatives, an additional ability to damage nuclear DNA has been detected. These results confirm the importance of the type of silver ion coordinating ligands in affecting the biological behavior of the overall corresponding silver complexes, besides in terms of hydrophilic–lipophilic balance, also in terms of biological mechanism of action, such as interaction with DNA and/or thioredoxin reductase.
机译:一系列中性混合 - 配体[HB(PZ)3] Ag(PR3)银(I)配合物(PR3 =叔膦,[HB(PZ)3] - = Tris(吡唑基)硼酸酯阴离子),以及相应的杂种[Ag(Pr3)4] BF4化合物已合成并完全表征。筛选银化合物,用于抗衍生自固体瘤的宽面板的抗增殖活动,并赋予不同的铂药物敏感性。混合配体络合物通常比相应的常规衍生物更有效,但最活性化合物是[Hb(PP)3] Ag(PPH3)(5)和[Ag(PPH3)4] BF4(10),包括所述亲脂PPH3膦配体。详细的机械研究表明,均蛋白和异孔银复合物都强烈,选择性地抑制硒酶硫氧化酶还原酶作为分离的酶和人类卵巢癌细胞(纳米粗糙范围的半抑制浓度值),导致细胞硫醇氧化钠稳态的破坏,以及导致凋亡细胞死亡。此外,对于异致毒剂(I)衍生物,已经检测到额外的损害核DNA能力。这些结果证实了银离子协调配体的类型的重要性影响整体相应的银色复合物的生物学行为,除了亲水性 - 亲脂性平衡方面,也就是与DNA的相互作用和/ / / /或硫酸辛还原酶。

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