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首页> 外文期刊>Journal of Medicinal Chemistry >Cisplatinum and transplatinum complexes with benzyliminoether ligands; Synthesis, characterization, structure-activity relationships, and in vitro and in vivo antitumor efficacy
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Cisplatinum and transplatinum complexes with benzyliminoether ligands; Synthesis, characterization, structure-activity relationships, and in vitro and in vivo antitumor efficacy

机译:具有苄基亚氨基醚配体的顺铂和跨铂配合物;合成,表征,结构活性关系以及体外和体内抗肿瘤功效

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New benzyliminoether derivatives [PtCl2{N(H)=C(OMe)CH2Ph}(2)] of cis (1a, 1b) and trans (2a, 2b) geometry were prepared and characterized by means of elemental analysis, multinuclear NMR and FT-IR techniques, and X-ray crystallography; this latter was carried out for 1b. The cytotoxic properties of these new platinum(11) complexes were evaluated in terms of cell growth inhibition against a panel of different types of human cancer cell lines. CiS-[PtCl2{E-N(H)=C(OMe)CH2Ph}(2)] (1a) was significantly more potent than cisplatin against all tumor cell lines tested, showing IC50 values from about 2- to 17-fold lower than the reference compound. Chemosensitivity tests performed on cisplatin-sensitive and -resistant cell lines have demonstrated that complex la is able to overcome cisplatin resistance. Analyzing the mechanism by which complex la led to cell death, we have found that it induced apoptosis in a dose-dependent manner, accompanied by the activation of caspase-3. The in vivo studies carried out using two transplantable tumor models (L1210 leukemia and Lewis lung carcinoma) showed that derivative la induced a remarkable antitumor activity in both tumor models, as measured by prolonged survival and reduced tumor mass compared to control groups.
机译:制备了顺式(1a,1b)和反式(2a,2b)几何结构的新苄基亚氨基醚衍生物[PtCl2 {N(H)= C(OMe)CH2Ph}(2)],并通过元素分析,多核NMR和FT表征-IR技术和X射线晶体学;后者进行了1b。这些新的Platinum(11)配合物的细胞毒性特性是通过针对一组不同类型的人类癌细胞系的细胞生长抑制来评估的。在所有测试的肿瘤细胞系中,CiS- [PtCl2 {EN(H)= C(OMe)CH2Ph}(2)](1a)的效力明显高于顺铂,显示IC50值比顺铂低约2至17倍。参考化合物。在对顺铂敏感和耐药的细胞系上进行的化学敏感性测试表明,复合物1a能够克服对顺铂的耐药性。分析复合物1a导致细胞死亡的机制,我们发现其以剂量依赖性方式诱导凋亡,并伴有caspase-3的活化。使用两种可移植肿瘤模型(L1210白血病和Lewis肺癌)进行的体内研究表明,与对照组相比,衍生物1a在两种肿瘤模型中均具有显着的抗肿瘤活性,这是通过延长生存期和降低肿瘤质量来衡量的。

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