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用于毛细管电泳系统中检测激光诱导荧光的椭球面镜:标记抗体分析的应用

An ellipsoidal mirror for detection of laser-induced fluorescence in capillary electrophoresis system: applications for labelled antibody analysis.

作者信息

Rodat Audrey, Kalck Fabien, Poinsot Véréna, Feurer Bernard, Couderc François

机构信息

Laboratoire des IMRCP, Université de Toulouse, Université Paul Sabatier, Toulouse, France.

出版信息

Electrophoresis. 2008 Feb;29(3):740-6. doi: 10.1002/elps.200700369.

Abstract

An LIF detector was integrated into a CE system which uses a ball lens to focus the laser beam on the CE capillary. The detector employs an ellipsoid that is glued on the capillary window, to permit the collection of the fluorescence in the capillary. This 'trapped' fluorescence stays in the capillary because the angle of the silica/air interface is greater than the critical angle. The performance of this new detector setup is found to be identical to the collinear setup using the same ball lens. An application to the analysis of FITC-labeled IgG was optimized using a 14 cm effective length capillary. The LOD of an FITC-labeled IgG2 at an excitation wavelength of 488 nm was 150 pg/mL, which was 10 times better than the LOD recorded with slab gel silver staining. Using a tetramethylrhodamine (TAMRA)-labeled IgG2 and a 532 nm excitation wavelength the LOD is 50 pg/mL. The electropherograms of four different commercial FITC conjugates of IgG were studied. The presence of aggregates was observed in two samples while close kinetics of reduction was observed between free aggregates and high aggregates concentration samples. The integrated LIF detector provides an extremely powerful and convenient tool for antibody analysis and should be useful for therapeutic MAb control in pharmaceutical facilities.

摘要

将激光诱导荧光(LIF)检测器集成到一个毛细管电泳(CE)系统中,该系统使用球透镜将激光束聚焦在CE毛细管上。该检测器采用一个粘贴在毛细管窗口上的椭球体,以收集毛细管内的荧光。这种“捕获”的荧光留在毛细管内,因为二氧化硅/空气界面的角度大于临界角。发现这种新的检测器设置的性能与使用相同球透镜的共线设置相同。使用14 cm有效长度的毛细管对异硫氰酸荧光素(FITC)标记的IgG分析应用进行了优化。在488 nm激发波长下,FITC标记的IgG2的检测限为150 pg/mL,比平板凝胶银染记录的检测限好10倍。使用四甲基罗丹明(TAMRA)标记的IgG2和532 nm激发波长时,检测限为50 pg/mL。研究了四种不同商业FITC偶联IgG的电泳图谱。在两个样品中观察到聚集物的存在,而在游离聚集物和高聚集物浓度样品之间观察到相近的还原动力学。集成的LIF检测器为抗体分析提供了一个极其强大且方便的工具,应该对制药设施中的治疗性单克隆抗体控制有用。

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