首页> 外文期刊>Asian Journal of Chemistry: An International Quarterly Research Journal of Chemistry >Interaction of CT-DNA with Ruthenium(II) Metallosurfactant Complexes: Synthesis, CMC Determination, Antitumour and Antimicrobial Activities
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Interaction of CT-DNA with Ruthenium(II) Metallosurfactant Complexes: Synthesis, CMC Determination, Antitumour and Antimicrobial Activities

机译:CT-DNA与钌(II)金属活性剂复合物的相互作用:合成,CMC测定,抗肿瘤和抗微生物活性

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摘要

To enhance the application of metalosurfactants in the field of drug delivery, it is essential to acquire the role of surfactants in terms of micellization, hydrophobicity, interaction with nucleic acids, reactive changes with abnormal cells and pathogenic organisms. A new class of two ruthenium(II) metallosurfactant complexes [Ru(DMP)2(CA)Cl](ClO4) (1) and [Ru(DMP)2(CA)2](ClO4)2 (2), where DMP = 2,9-dimethyl[1,10]phenanthroline) and CA = cetyl amine were synthesized and characterized. The critical micelle concentration (CMC) and the thermodynamic parameters of micellization were determined and the variations suggest the expression of hydrophobic interaction in these complexes. The binding affinity of ruthenium(II) metallosurfactant complexes with CT-DNA has been investigated by spectroscopic and viscosity magnitudes. The outcomes expose that the complexes associate with CT-DNA through intercalation mode. Subsequently the complexes were taken for in vitro anticancer and antimicrobial inhibition study against human cervical cancer cell lines (HeLa) and pathogenic microorganisms and found that the complexes exhibited remarkable inhibitory action. The cytotoxic nature of the complexes towards, HeLa cells, was adopted by MTT assay and apoptosis were examined by AO/EB (acridine orange/edudium bromide) and tryphanblue staining methods showing that complexes affected the viability of the cells significantly.
机译:为了增强药物胶质剂在药物递送领域的应用,必须在胶束化,疏水性,与核酸的相互作用方面获得表面活性剂的作用,具有异常细胞和病原体的反应性变化。新类别的两个钌(II)金属活化剂配合物[Ru(DMP)2(Ca)Cl](ClO 4)(1)和[Ru(DMP)2(Ca)2](ClO 4)2(2),其中DMP = 2,9-二甲基[1,10]菲咯啉)和Ca =十六烷基胺被合成并表征。确定临界胶束浓度(CMC)和胶束化的热力学参数,变化表明这些配合物中的疏水性相互作用的表达。通过光谱和粘度幅度研究了钌(II)钌(II)金属活性剂复合物与CT-DNA的结合亲和力。结果暴露了复合物通过嵌入模式与CT-DNA相关联。随后,对体外抗癌和抗微生物抑制研究进行了对抗人类宫颈癌细胞系(HELA)和病原微生物的体外抗药性和抗微生物抑制研究,发现该配合物表现出显着的抑制作用。通过AO / EB(吖啶橙/亚硼脂溢性)和Tryphanflue染色方法检查了MTT测定和细胞凋亡的络合物的细胞毒性本质,并通过AO / EB(吖啶橙/亚硼脂溢性)和络合物显着影响细胞的可生存性,以显着影响细胞的活力。

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