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介孔 SBA-15 用钛卡烯配合物和离子液体修饰:通过固态电化学技术研究与 DNA 和其他生物相关分子的相互作用。

Mesoporous SBA-15 modified with titanocene complexes and ionic liquids: interactions with DNA and other molecules of biological interest studied by solid state electrochemical techniques.

机构信息

Departamento de Biología y Geología, Física y Química Inorgánica, ESCET, Universidad Rey Juan Carlos, Calle Tulipán S/N, E-28933 Móstoles (Madrid), Spain.

出版信息

Dalton Trans. 2018 Sep 25;47(37):12914-12932. doi: 10.1039/c8dt02011f.

DOI:10.1039/c8dt02011f
PMID:30131980
Abstract

The immobilization of two titanocene complexes on SBA-15 has been accomplished following post-synthetic procedures. The ionic liquid, 1-methyl-3-[(triethoxysilyl)propyl]imidazolium chloride, has also been incorporated into the titanium containing materials to determine its influence on the interaction with molecules of biological interest. Cyclic voltammetry has been used to study the influence of the ionic liquid on the mechanism of reduction of titanocene derivatives. The interaction of titanocene and titanocene/ionic liquid-containing mesoporous silica SBA-15 materials, with molecules of biological interest associated with important processes of metallodrug action against cancer cells, has been studied. Thus, we have carried out hydrolysis experiments on the materials functionalized with titanocene derivatives in physiological media to determine their stability and the interaction with serum/transport proteins such as transferrin and BSA and with target molecules such as guanosine, single-stranded DNA and double-stranded DNA by means of solid state voltammetry techniques. A qualitative analysis of the data based on peak current and reduction potential value changes of the couple Ti(iv)/Ti(iii) in the presence of biomolecules at physiological pH, has revealed that grafted titanocene complexes show higher affinity for serum/transport proteins than for nucleic acids, indicating that the transport steps to the cells may be easier than the subsequent attack on DNA.

摘要

采用后合成程序将两种二茂钛络合物固定在 SBA-15 上。将离子液体 1-甲基-3-[(三乙氧基硅基)丙基]咪唑氯化物也掺入含钛材料中,以确定其对与生物感兴趣的分子相互作用的影响。循环伏安法已用于研究离子液体对二茂钛衍生物还原机理的影响。研究了二茂钛和含二茂钛/离子液体的介孔硅 SBA-15 材料与与抗癌细胞金属药物作用的重要过程相关的生物感兴趣分子的相互作用。因此,我们在生理介质中对功能化有二茂钛衍生物的材料进行了水解实验,以确定其在生理 pH 值下与血清/转运蛋白(如转铁蛋白和 BSA)和靶分子(如鸟嘌呤、单链 DNA 和双链 DNA)的稳定性和相互作用通过固态伏安技术。基于在存在生物分子时 Ti(iv)/Ti(iii) 偶对的峰电流和还原电位值变化的数据分析表明,接枝的二茂钛络合物对血清/转运蛋白的亲和力高于对核酸的亲和力,表明向细胞的转运步骤可能比随后对 DNA 的攻击更容易。

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