首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Polymer-cobalt(III) complexes: Structural analysis of metal chelates on DNA interaction and comparative cytotoxic activity
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Polymer-cobalt(III) complexes: Structural analysis of metal chelates on DNA interaction and comparative cytotoxic activity

机译:聚合物-钴(III)配合物:金属螯合物在DNA相互作用和比较细胞毒性活性方面的结构分析

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A new series of pendant-type polymer-cobalt(III) complexes, [Co(LL) 2(BPEI)Cl]2+, (where BPEI = branched polyethyleneimine, LL = dipyrido[3,2-a:2′,3′-c](6,7,8,9-tetrahydro)phenazine (dpqc), dipyrido[3,2-d:2′,3′-f]quinoxaline (dpq) and imidazo[4,5-f]1,10- phenanthroline (ip)) each with three different degrees of coordination have been synthesized and characterized. Studies to know the mode and strength of interaction between these polymer-metal complexes and calf thymus DNA have been performed by UV-Visible absorption and emission techniques. Among these series, each polymer metal complex having higher binding strength with DNA has been selected to test against human cancerormal cell lines. On the basis of these spectral studies, it is proposed that our polymer-metal complexes bind with DNA mainly through intercalation along with some electrostatic binding. The order of binding strength for the complexes with ligand, dpqc dpq ip. The analysis of the results suggests that polymer-cobalt(III) complexes with higher degree of coordination effectively binds with DNA due to the presence of large number of positively charged cobalt(III) chelates in the polymer chain which cooperatively act to increase the overall binding strength. These polymer-cobalt(III) complexes with hydrophobic ligands around the cobalt(III) metal centre favour the base stacking interactions via intercalation. All the complexes show very good anticancer activities and increasing of binding strength results in higher inhibition value. The polymer-cobalt(III) complex with dpqc ligand possess two fold increased anticancer activity when compared to complexes with other ligands against MCF-7 cells. Besides, the complexes were insensitive towards the growth of normal cells (HEK-293) at the IC50 concentration.
机译:一系列新的侧链型聚合物-钴(III)配合物,[Co(LL)2(BPEI)Cl] 2 +,(其中BPEI =支链聚乙烯亚胺,LL =二吡啶基[3,2-a:2',3 ′-c](6,7,8,9-四氢)吩嗪(dpqc),双嘧啶[3,2-d:2',3'-f]喹喔啉(dpq)和咪唑并[4,5-f] 1合成并表征了具有10种不同配位度的10-菲咯啉(ip)。已经通过紫外线可见吸收和发射技术进行了研究,以了解这些聚合物-金属络合物与小牛胸腺DNA之间相互作用的方式和强度。在这些系列中,已选择了与DNA具有更高结合强度的每种聚合物金属络合物,以测试抗人类癌症/正常细胞系的能力。在这些光谱研究的基础上,提出我们的聚合物-金属络合物主要通过嵌入以及一些静电结合与DNA结合。具有配体的复合物的结合强度的顺序为dpqc> dpq> ip。结果分析表明,由于聚合物链中存在大量带正电荷的钴(III)螯合物,它们具有较高配位度的聚合物-钴(III)复合物可与DNA有效结合,从而协同作用以增加总体结合力强度。这些在钴(III)金属中心周围具有疏水性配体的聚合物-钴(III)配合物有助于通过插层进行碱基堆积相互作用。所有的复合物都显示出非常好的抗癌活性,结合强度的增加导致更高的抑制值。与具有针对MCF-7细胞的其他配体的复合物相比,具有dpqc配体的聚合物-钴(III)复合物具有两倍的抗癌活性。此外,该复合物在IC50浓度下对正常细胞(HEK-293)的生长不敏感。

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