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存在一氧化氮时用于过氧亚硝酸盐定量的荧光胺减少。

Reduced fluoresceinamine for peroxynitrite quantification in the presence of nitric oxide.

机构信息

Centro de Investigação em Química, Faculdade de Farmácia da Universidade de Coimbra, Pólo das Ciências da Saúde, 3000-548, Coimbra, Portugal.

出版信息

J Fluoresc. 2012 Jul;22(4):1127-40. doi: 10.1007/s10895-012-1051-3. Epub 2012 Apr 3.

Abstract

A new fluorescent analytical methodology for the quantification of peroxynitrite (ONOO(-)) in the presence of nitric oxide (NO) was developed. The quantification of ONOO(-) is based in the oxidation of the non-fluorescent reduced fluoresceinamine to a high fluorescent oxidized fluoresceinamine in reaction conditions where the interference of NO is minimized. Screening factorial experimental designs and optimization Box-Behnken experimental design methodologies were used in order to optimize the detection of ONOO(-) in the presence of NO. The factors analysed were: reduced fluoresceinamine concentration (C( Fl)); cobalt chloride concentration (C(CoCl2)); presence of oxygen (O(2)); and, the pH (pH). The concentration of sodium hydroxide (C(NaOH)) needed to diluted the initially solution of ONOO(-) was also evaluated. An optimum region for ONOO(-) quantification where the influence of NO is minimal was identified - C(Fl) from 0.50 to 1.56 mM, C(CoCl2) from 0 to 1.252 × 10(-2) M, pH from 6 to 8 and C(NaOH) 0.10 M. Better results were found in the presence of NO at pH 7.4, C(Fl) 0.5 mM, without oxygen, without cobalt chloride and with a previous dilution of peroxynitrite solution with C(NaOH) 0.1 M. This methodology shows a linear range from 0.25 to 40 μM with a limit of detection of 0.08 μM. The bioanalytical methodology was successfully applied in the ONOO(-) quantification of fortified serum and macrophage samples.

摘要

开发了一种新的荧光分析方法,用于在存在一氧化氮 (NO) 的情况下定量检测过氧亚硝酸盐 (ONOO(-))。ONOO(-) 的定量检测基于在最小化 NO 干扰的反应条件下,将非荧光还原型荧光素胺氧化为高荧光氧化型荧光素胺。采用筛选析因实验设计和优化 Box-Behnken 实验设计方法来优化在存在 NO 的情况下检测 ONOO(-)。分析的因素包括:还原型荧光素胺浓度 (C(Fl));氯化钴浓度 (C(CoCl2));氧气存在 (O(2));以及 pH (pH)。还评估了用于稀释初始 ONOO(-)溶液所需的氢氧化钠浓度 (C(NaOH))。确定了一个 ONOO(-)定量的最佳区域,在该区域中 NO 的影响最小 - C(Fl) 从 0.50 到 1.56 mM,C(CoCl2) 从 0 到 1.252×10(-2) M,pH 从 6 到 8,C(NaOH) 0.10 M。在 pH 7.4、C(Fl) 0.5 mM、无氧气、无氯化钴且用过氧化氢溶液用 C(NaOH) 0.1 M 预先稀释的情况下,NO 的存在下得到了更好的结果。该方法在线性范围从 0.25 到 40 μM 内具有 0.08 μM 的检测限。该生物分析方法成功应用于强化血清和巨噬细胞样品中 ONOO(-)的定量检测。

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