首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Potential new inorganic antitumour agents from combining the anticancer traditional Chinese medicine (TCM) matrine with Ga(III), Au(III), Sn(IV) ions, and DNA binding studies
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Potential new inorganic antitumour agents from combining the anticancer traditional Chinese medicine (TCM) matrine with Ga(III), Au(III), Sn(IV) ions, and DNA binding studies

机译:结合抗癌中药苦参碱与Ga(III),Au(III),Sn(IV)离子和DNA结合研究的潜在新型无机抗肿瘤药

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Three new compounds of Ga(III), Au(III), Sn(IV) with matrine (MT), [H-MT][GaCl_4] (1), [H-MT][AuCl_4] (2) and [Sn(H-MT)Cl _5] (3), have been synthesized and characterized by elemental analysis, IR, ESI-MS and single crystal X-ray diffraction methods. The crystal structural analyses indicate that 1 and 2 are ionic compounds, whereas 3 is a tin(IV) complex formed by the monodentate MT via its carbonyl oxygen atom of MT coordinating to Sn(IV). Their in vitro cytotoxicity towards eight selected tumour cell lines has been evaluated by MTT (3-[4,5-Dimentylthiazole-2-yl]-2,5- diphenpyltetra-zolium bromide) method, and compounds 1 and 2 exhibit enhanced activity, such as 1 to SW480, 2 to HeLa, HepG2 and MCF-7, which exceeds matrine and cisplatin, and display synergistic contribution of their components. The cell cycle analyses show that compounds 1, 3 and MT exhibit cell cycle arrest at the G_2/M phase. Interactions of these compounds with calf thymus DNA (ct-DNA) have been investigated by spectroscopic analyses. The planar extension of the intercalative metal-matrine compounds increases the interaction of the metal-matrine with DNA, indicating that the cationic metal ions and configuration of the intercalated metal-matrine will affect the extent of interaction. Compound 2, [H-MT][AuCl_4], exhibits more intensive binding ability to DNA, which may correlate with intercalation and other action mode. The circular dichroism spectra of the ct-DNA bound with metal-MT compounds also suggest that ct-DNA interacted with 1, 2, 3 does not influence its secondary structure. Furthermore, both compounds 1 and 2 exhibit effective inhibition ability to topoisomerase (TOPO I) at concentration of 50 μM, while matrine and compound 3 do not.
机译:Ga(III),Au(III),Sn(IV)与苦参碱(MT),[H-MT] [GaCl_4](1),[H-MT] [AuCl_4](2)和[Sn (H-MT)Cl _5](3)已通过元素分析,IR,ESI-MS和单晶X射线衍射方法合成并表征。晶体结构分析表明1和2是离子化合物,而3是单齿MT通过其MT的配位于Sn(IV)的羰基氧原子形成的锡(IV)配合物。已通过MTT(3- [4,5-二薄荷基噻唑-2-基] -2,5-二联苯基四唑鎓溴化物)方法评估了它们对八种所选肿瘤细胞系的体外细胞毒性,化合物1和2的活性增强,例如1到SW480、2到HeLa,HepG2和MCF-7,它们超过了苦参碱和顺铂,并显示出其成分的协同作用。细胞周期分析表明,化合物1、3和MT在G_2 / M期表现出细胞周期停滞。这些化合物与小牛胸腺DNA(ct-DNA)的相互作用已通过光谱分析进行了研究。嵌入金属-苦参碱化合物的平面延伸增加了金属-苦参碱与DNA的相互作用,表明阳离子金属离子和嵌入金属-苦参碱的构型将影响相互作用的程度。化合物2 [H-MT] [AuCl_4]与DNA的结合强度更高,这可能与嵌入和其他作用方式有关。与金属-MT化合物结合的ct-DNA的圆二色性光谱也表明,与1、2、3相互作用的ct-DNA不会影响其二级结构。此外,化合物1和2在浓度为50μM时均表现出对拓扑异构酶(TOPO I)的有效抑制能力,而苦参碱和化合物3则没有。

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