Barker S L, Clark H A, Swallen S F, Kopelman R, Tsang A W, Swanson J A
Department of Chemistry, University of Michigan, Ann Arbor 48109-1055, USA.
Anal Chem. 1999 May 1;71(9):1767-72. doi: 10.1021/ac9810462.
Ratiometric and lifetime-based sensors have been designed for cellular detection of nitric oxide. These sensors incorporate cytochrome c', a hemoprotein known to bind nitric oxide selectively. The cytochrome c' is labeled with a fluorescent reporter dye, and changes in this dye's intensity or fluorescence lifetime are observed as the protein binds nitric oxide. The ratiometric sensors are composed of dye-labeled cytochrome c' attached to the optical fiber via colloidal gold, along with fluorescent microspheres as intensity standards. These ratiometric sensors exhibit linear response, have fast response times (< or = 0.25 s), and are completely reversible. The sensors are selective over numerous common interferents such as nitrite, nitrate, and oxygen species, and the limit of detection is 8 microM nitric oxide. The lifetime-based measurements are made using free, dye-labeled cytochrome c' in solution and have a limit of detection of 30 microM nitric oxide. The use of these two techniques has allowed measurement of intra- and extracellular macrophage nitric oxide. Employing the ratiometric fiber sensors gave a multicell culture average extracellular nitric oxide concentration of 210 +/- 90 microM for activated macrophages, while an average intracellular concentration of 160 +/- 10 microM was determined from the lifetime-based measurements of dye-labeled cytochrome c' in the macrophage cytosol. Microscopic adaptation of the lifetime-based methods described here would allow direct correlation of intracellular nitric oxide levels with specific cellular activities, such as phagocytosis.
已设计出用于细胞内一氧化氮检测的比率型和基于寿命的传感器。这些传感器包含细胞色素c',一种已知能选择性结合一氧化氮的血红素蛋白。细胞色素c'用荧光报告染料标记,当该蛋白结合一氧化氮时,观察到这种染料强度或荧光寿命的变化。比率型传感器由通过胶体金附着在光纤上的染料标记细胞色素c'以及作为强度标准的荧光微球组成。这些比率型传感器呈现线性响应,响应时间快(≤0.25秒),且完全可逆。该传感器对多种常见干扰物如亚硝酸盐、硝酸盐和氧物种具有选择性,检测限为8微摩尔一氧化氮。基于寿命的测量是使用溶液中的游离染料标记细胞色素c'进行的,一氧化氮检测限为30微摩尔。这两种技术的使用使得能够测量细胞内和细胞外巨噬细胞的一氧化氮。使用比率型光纤传感器测得活化巨噬细胞的多细胞培养平均细胞外一氧化氮浓度为210±90微摩尔,而通过对巨噬细胞胞质溶胶中染料标记细胞色素c'的基于寿命的测量确定平均细胞内浓度为160±10微摩尔。本文所述基于寿命的方法在显微镜下的应用将使细胞内一氧化氮水平与特定细胞活动(如吞噬作用)直接相关。