首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Cytosine derivatized bis(2,2 '-bithienyl)methane molecularly imprinted polymer for selective recognition of 6-thioguanine, an antitumor drug
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Cytosine derivatized bis(2,2 '-bithienyl)methane molecularly imprinted polymer for selective recognition of 6-thioguanine, an antitumor drug

机译:胞嘧啶衍生化的双(2,2'-bithienyl)甲烷分子印迹聚合物,用于选择性识别抗肿瘤药6-硫鸟嘌呤

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摘要

A molecularly imprinted polymer (MIP) was designed and synthesized to serve as a functional material for selective recognition of 6-thioguanine (6TG), an antitumor drug. For that, the newly synthesized functional monomer, cytosine-bis(2,2'-bithienyl)-(4-carboxyphenyl)methane ester (Cyt-S4), revealed Watson-Crick type nucleobase pairing of 6TG. Formation of the Cyt-S4 and 6TG complex of the 2:1 stoichiometry was postulated based on the DFT calculations at the B3LYP/3-21G(*) level and experimentally confirmed by fluorescence titration. The molecularly imprinted polymer (MIP) film was deposited by potentiodynamic electropolymerization on a Pt disk electrode as well as on an Au-coated glass slide and on an Au-quartz crystal resonator. The statistical model of formation of this film was successfully simulated by molecular dynamics. Completeness of the subsequent 6TG template extraction from MIP was confirmed by the UV-visible spectroscopy. An imprinting factor of 2.9 for the MIP film was determined by piezoelectric microgravimetry using ECQM. The double-layer capacity and alternating current measurements under flow-injection analysis (FIA) conditions were selected to transduce the 6TG recognition signal into the change of the double-layer capacity dependence on the 6TG concentration in solution for different supporting electrolyte concentrations. Detectability of the resulting chemosensor was 10 mu M 6TG for the 0.5 M KF carrier solution in HA. Selectivity of the chemosensor with respect to common interferences was high, e.g., it exceeded 130 to 2-amino-6-methylmercaptopurine, a 6TG metabolite. (C) 2015 Elsevier B.V. All rights reserved.
机译:设计并合成了分子印迹聚合物(MIP),用作选择性识别抗肿瘤药6-硫鸟嘌呤(6TG)的功能材料。为此,新合成的功能单体胞嘧啶-双(2,2'-噻吩基)-(4-羧基苯基)甲烷酯(Cyt-S4)揭示了6TG的Watson-Crick型核碱基配对。根据DFT计算在B3LYP / 3-21G(*)水平上推测化学计量比为2:1的Cyt-S4和6TG复合物的形成,并通过荧光滴定实验确定。分子印迹聚合物(MIP)膜通过电位动力学电聚合沉积在Pt圆盘电极上,镀金的载玻片上和金石英晶体谐振器上。通过分子动力学成功地模拟了该膜形成的统计模型。后续的从MIP提取6TG模板的完整性已通过UV-可见光谱确认。使用ECQM通过压电微重力法确定MIP膜的压印因子为2.9。选择在流动注射分析(FIA)条件下的双层容量和交流电测量值,以将6TG识别信号转换为取决于不同支持电解质浓度的溶液中6TG浓度的双层容量变化。对于HA中的0.5 M KF载体溶液,所得化学传感器的可检测性为10μM 6TG。化学传感器对常见干扰的选择性很高,例如,它对6-氨基-6-甲基巯基嘌呤(一种6TG代谢物)的选择性超过130。 (C)2015 Elsevier B.V.保留所有权利。

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