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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Miniaturized ionophore-based potentiometric sensors for the flow-injection determination of metformin in pharmaceutical formulations and biological fluids
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Miniaturized ionophore-based potentiometric sensors for the flow-injection determination of metformin in pharmaceutical formulations and biological fluids

机译:基于微型离子载体的电位传感器,用于流动注射测定药物制剂和生物流体中的二甲双胍

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摘要

Miniaturized potentiometric sensors based on β-cyclodextrins(β-CDs)are described for determination of metformin(Mf)in pharmaceutical preparations and biological fluids. Electrode matrix compositions are optimized on the basis of the nature and content of sensing ionophore, ionic sites and plasticizers. Coated wire electrodes(CWEs)modified with heptakis(2, 3, 6-tri-O-methyl)-β-CD, sodium tetrakis(4- fluorophenyl)borate(NaTFPB)and 2-fluorophenyl 2-nitrophenyl ether(f-NPE), work satisfactorily in the concentration range from 10~(-6)to 10~(-1)mol L~(-1)with Nernstian compliance(55.7 ± 0.4 mV per decade activity)and a detection limit of 8 x 10~(-7)mol L~(-1). Incorporation of β-CD as a molecular recognition element improved the electrode sensitivity and selectivity due to encapsulation of Mf into the β-CD cavity(host-guest interaction). The developed electrodes have been successfully applied for the potentiometric determination of Mf under batch and flow injection analysis(FIA). FIA allows analysis of 90 samples per h offering the advantages of simplicity, accuracy and automation feasibility. The dissolution profile for metformin pharmaceutical samples(Cidophageo)was monitored using the proposed electrode in comparison with the official spectrophotometric methods. Characterization of the formed Mf-β-CD inclusion complexes is discussed in detail.
机译:描述了基于β-环糊精(β-CDs)的小型电位计传感器,用于测定药物制剂和生物液体中的二甲双胍(Mf)。根据感应离子载体,离子部位和增塑剂的性质和含量优化电极基质的组成。用七(2,3,6-三-O-甲基)-β-CD,四(4-氟苯基)硼酸钠(NaTFPB)和2-氟苯基2-硝基苯基醚(f-NPE)改性的漆包线电极(CWE) ),在10〜(-6)至10〜(-1)mol L〜(-1)的浓度范围内令人满意地工作,符合Nernstian标准(每十进位活性55.7±0.4 mV),检出限为8 x 10〜 (-7)mol L〜(-1)。由于将Mf封装到β-CD腔中(宿主-客体相互作用),因此将β-CD用作分子识别元件可改善电极灵敏度和选择性。所开发的电极已成功应用于分批和流动注射分析(FIA)下的Mf电位测定。 FIA每小时可分析90个样品,具有简便,准确和自动化可行性的优势。与官方的分光光度法相比,使用拟议的电极监测了二甲双胍药物样品(Cidophageo)的溶出度。详细讨论了形成的Mf-β-CD包合物的表征。

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