Novel oxidoreductase-based sensor for optical neurotransmitter detection

S. Baluta, J. Cabaj, K. Malecha
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引用次数: 1

Abstract

In our previous work [1], we have reported the developed optical biosensor for detection of dopamine, where graphene quantum dots (GQDs) were used in the detection system. In such sensor dopamine molecules coated the GQD surface — as a result occurred quenching of fluorescence due to Resonance Energy Transfer (FRET). Changes in fluorescence corresponded to specific concentrations of the neurotransmitter in tested sample. Now we present constructed new optical biosensor for epinephrine detection, which proved a facile and convenient method for this neurotransmitter determination. Epinephrine does not possess any fluorescence properties in opposite to dopamine, so it was essential to prepare a new dye solution for detection system and carrier for epinephrine. The working Fe(II) solution was prepared freshly by mixing with the optimized alkaline buffer. To such prepared dye-solution epinephrine was added (different concentrations), and detected with LTCC (Low Temperature Co-fired Ceramics)-based sensor connected with immobilized biologically active material. An outer platinum electrode was modified with semi-conductive polymer layer based on 2-([2,2'-bithiophene]-5-yl)-6-([2,3'-bithiophene]-5'-yl)-4-(5-hexylthiophene-2-yl)pyridine and laccase, as a basis for determination system of epinephrine. In result, constructed biosensor exhibits good performance, strong affinity between enzyme and catecholamine, fast response and good linear range. Obtained results have shown that the developed system could be used in medical diagnostics for neurotransmitters convenient detection.
光学神经递质检测的新型氧化还原酶传感器
在我们之前的工作[1]中,我们已经报道了用于检测多巴胺的光学生物传感器,其中石墨烯量子点(GQDs)用于检测系统。在这种传感器中,多巴胺分子包裹在GQD表面,结果由于共振能量转移(FRET)而发生荧光猝灭。荧光的变化与被测样品中神经递质的特定浓度相对应。本文构建了一种新的肾上腺素检测光学生物传感器,为肾上腺素检测提供了一种简便易行的方法。肾上腺素不具有与多巴胺相反的荧光性质,因此有必要制备一种新的染料溶液作为肾上腺素的检测系统和载体。将优化后的碱性缓冲液与新制备的Fe(II)溶液混合。在制备的染料溶液中加入不同浓度的肾上腺素,用LTCC(低温共烧陶瓷)传感器与固定化生物活性材料连接进行检测。以2-([2,2'-噻吩]-5-基)-6-([2,3'-噻吩]-5'-基)-4-(5-己基噻吩-2-基)吡啶和漆酶为基料,用半导电聚合物层修饰外铂电极,作为肾上腺素测定体系的基础。结果表明,所构建的生物传感器性能良好,酶与儿茶酚胺亲和力强,响应速度快,线性范围好。实验结果表明,该系统可用于医学诊断,方便检测神经递质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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