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Flow injection analysis for nitric oxide quantification based on reduced fluoresceinamine

机译:基于还原型荧光素胺的流动注射分析一氧化氮定量

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A fluorescence flow injection analysis (FIA) methodology for nitric oxide (NO) quantification was optimized by factorial analysis for the lowest limit of detection of nitric oxide. This methodology is based on the reaction of the NO with the non-fluorescent reduced fluoresceinamine given a high fluorescent oxidized fluoresceinamine. Box–Behnken and central composite optimization experimental design methodologies were used. The factors initially analysed by a screening experimental design methodology were the flow rate of the pump (Q), loop volume (L), reactor length (R), reduced fluoresceinamine concentration (CFl) and cobalt chloride concentration (CCoCl2). The response variables under analysis were the maximum fluorescence intensity, response repeatability and peak width. The optimum conditions were: one flow stream FIA configuration, Q = 0.60 mL min?1, L = 100 μL, R = 2 m, CFl = 1.50 mM and without CoCl2. A linear working range between 5 to 40 μM was evaluated with a limit of detection of 1.20 μM. Hydrogen peroxide, superoxide, nitrite and nitrate did not interfere with the NO detection. Good results were found in the quantification of NO liberated by a NO donor at pH 7.4 and in fortified serum samples...
机译:通过阶乘分析优化了一氧化氮(NO)定量的荧光流动注射分析(FIA)方法,以检测一氧化氮的最低限度。该方法是基于在高荧光氧化的荧光素胺的条件下,NO与非荧光还原的荧光素的反应。使用Box–Behnken和中心综合优化实验设计方法。最初通过筛选实验设计方法分析的因素是泵的流量(Q),回路体积(L),反应器长度(R),降低的荧光素浓度(CF1)和氯化钴浓度(CCoCl2)。分析下的响应变量为最大荧光强度,响应重复性和峰宽。最佳条件为:一种气流FIA配置,Q = 0.60 mL min?1,L = 100μL,R = 2 m,CF1 = 1.50 mM,无CoCl2。评估的线性工作范围为5至40μM,检出限为1.20μM。过氧化氢,超氧化物,亚硝酸盐和硝酸盐不会干扰NO的检测。在pH 7.4的NO供体释放的NO和强化的血清样品中定量获得了良好的结果...

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