未修饰和聚苯胺修饰平面多西环素敏感传感器的电分析性能

E. G. Kulapina, Milena N. Gasparyan, O. I. Kulapina, V. D. Ankina
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引用次数: 0

摘要

强力霉素具有广泛的抗菌和抗炎特性,用于治疗各种传染病。采用光谱法、色谱法、电化学法、免疫分析法等方法测定各种物体中的四环素类抗生素。平面传感器允许在小样本量中快速检测抗生素。建立了多西环素-四苯基硼酸盐(Copt = 2-3%)和聚苯胺离子结合的平面电位传感器,用于多西环素的定量测定。研究发现,对于未修饰的传感器,电极函数的线性区间为1×10 -4 - 5×10 -3 M, Cmin -5,0×10-5 M,角系数- 50±2 mV/pC,响应时间- 25 s。结果表明,引入一个修饰词的含碳墨水传感器会导致潜在的稳定,增加电极的角系数函数(56±1),减少响应时间(20岁)和降低检测极限(4.0×纯米)。结果表明,改性剂的引入到传感器的含碳墨水导致稳定的潜力,增加电极的角系数函数(56±1),多西环素敏感传感器对碱离子(Ki/j < < 1)和无机阳离子(Ki/j (K+) = 0.61)具有选择性;Ki/j (Na+) = 0,01;Ki/j (Mg 2+) = 0.01;Ki/j (Ca2+) = 0.09),提示测定人体生物体液中强力霉素的可能性。在口服液背景下,电极函数角系数(45±1 mV/pS)减小,这与口服液背景影响有关。所研制的平面传感器可用于药物和生物介质中强力霉素的测定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electroanalytic properties of unmodified and polyaniline-modified planar sensors sensitive to doxycycline
Doxycycline has a wide range of antimicrobial and anti-inflammatory properties and is used to treat various infectious diseases. Spectroscopic, chromatographic, electrochemical, immunoassay and other methods are used to determine tetracycline antibiotics in various objects. Planar sensors allow express detection of antibiotics in small sample volumes. Planar potentiometric sensors based on ion associations doxycycline – tetraphenylborate (Copt = 2–3%), modifier – polyaniline, for the quantitative determination of doxycycline have been developed. It has been found that for non-modificated sensors, the linearity intervals of electrode functions are 1×10 -4 – 5×10 -3 M, Cmin – 5,0×10-5 M, angular coefficients – 50±2 mV/pC, response time – 25 s. It is shown that the introduction of a modifier into the carbon-containing ink of sensors leads to the stabilization of their potential, to an increase in the angular coefficients of electrode functions (56±1), reduced response time (20 s) and reduced detection limit (4.0 ×10-5 M). It is shown that the introduction of the modifier into the carbon-containing ink of the sensors leads to stabilization of their potential, to an increase in the angular coefficients of electrode functions (56±1), a decrease in response time (20 seconds) and a decrease in the detection limit (4.0 ×10-5 M). Doxycycline sensitive sensors have selectivity to the base ion (Ki/j < < 1) and inorganic cations (Ki/j (K+) = 0.61; Ki/j (Na+) = 0,01; Ki/j (Mg 2+) = 0,01; Ki/j (Ca2+) = 0.09), and indicate the possibility of determining doxycycline in human biological fluids. Against the background of oral liquid, the angular coefficients of electrode functions (45±1 mV/pS) decrease, which is associated with the background influence of oral liquid. The developed planar sensors are used to determination doxycycline in medicinal and biological media.
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