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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Structure-activity relationships for organometallic osmium arene phenylazopyridine complexes with potent anticancer activity
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Structure-activity relationships for organometallic osmium arene phenylazopyridine complexes with potent anticancer activity

机译:具有有效抗癌活性的有机金属are芳烃苯基偶氮吡啶配合物的构效关系

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We report the synthesis and characterisation of 32 half sandwich phenylazopyridine Os~(II) arene complexes [Os(η~6-arene) (phenylazopyridine)X]~+ in which X is chloride or iodide, the arene is p-cymene or biphenyl and the pyridine and phenyl rings contain a variety of substituents (F, Cl, Br, I, CF3, OH or NO_2). Ten X-ray crystal structures have been determined. Cytotoxicity towards A2780 human ovarian cancer cells ranges from high potency at nanomolar concentrations to inactivity. In general the introduction of an electron-withdrawing group (e.g. F, Cl, Br or I) at specific positions on the pyridine ring significantly increases cytotoxic activity and aqueous solubility. Changing the arene from p-cymene to biphenyl and the monodentate ligand X from chloride to iodide also increases the activity significantly. Activation by hydrolysis and DNA binding appears not to be the major mechanism of action since both the highly active complex [Os(η~6-bip)(2-F-azpy)I]PF_6 (9) and the moderately active complex [Os(η~6-bip)(3-Cl-azpy)I]PF_6 (23) are very stable and inert towards aquation. Studies of octanol-water partition coefficients (log P) and subcellular distributions of osmium in A2780 human ovarian cancer cells suggested that cell uptake and targeting to cellular organelles play important roles in determining activity. Although complex 9 induced the production of reactive oxygen species (ROS) in A2780 cells, the ROS level did not appear to play a role in the mechanism of anticancer activity. This class of organometallic osmium complexes has new and unusual features worthy of further exploration for the design of novel anticancer drugs.
机译:我们报道了32个半夹心苯基偶氮吡啶Os〜(II)芳烃配合物[Os(η〜6-芳烃)(苯基偶氮吡啶)X]〜+的合成和表征,其中X是氯或碘化物,芳烃是对-异丙基或联苯吡啶和苯环含有各种取代基(F,Cl,Br,I,CF3,OH或NO_2)。已经确定了十个X射线晶体结构。对A2780人卵巢癌细胞的细胞毒性范围从纳摩尔浓度的高效力到无活性。通常,在吡啶环上特定位置引入吸电子基团(例如F,Cl,Br或I)显着增加细胞毒性活性和水溶性。将芳烃从对甲基异丙基苯变为联苯,将单齿配体X从氯化物变为碘化物也显着增加了活性。由于高活性复合物[Os(η〜6-bip)(2-F-azpy)I] PF_6(9)和中等活性复合物[Os],水解和DNA结合的激活似乎不是主要的作用机理。 (η〜6-bip)(3-Cl-azpy)I] PF_6(23)非常稳定并且对水合反应呈惰性。对A2780人卵巢癌细胞中辛醇-水分配系数(log P)和sub的亚细胞分布的研究表明,细胞摄取和靶向细胞器在确定活性中起重要作用。尽管复合物9诱导了A2780细胞中活性氧(ROS)的产生,但ROS水平似乎并未在抗癌活性的机制中起作用。这类有机金属配合物具有新奇和不寻常的特征,值得在新型抗癌药物的设计中进一步探索。

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