Wang S L, Huang X J, Fang Z L
Research Center for Analytical Sciences, Northeastern University, Shenyang, PR China.
Anal Chem. 2001 Sep 15;73(18):4545-9. doi: 10.1021/ac010341a.
A novel miniaturized capillary electrophoresis (CE) system is described where a Teflon AF-coated silica capillary serves both as the separation channel and as a transversely illuminated liquid core waveguide. This device uniquely uses flow injection (FI)-based split-flow sample introduction through a falling-drop interface. An H-channel structure fixed on a microscope glass slide utilizes a horizontal separation capillary with tubular sidearms on each end that serve as inlet and outlet flow-through electrode reservoirs. The inlet reservoir also functions as a falling-drop interface for coupling to the FI system. A blue LED is used as excitation source. A large-core optical fiber takes the emitted fluorescence to an inexpensive PMT with two layers of green plastic used for optical filtering. No focusing arrangement is needed. Continuous FI introduction of a series of 30-microL samples containing a mixture of of fluorescein isothiocyanate (FITC)-labeled amino acids allowed a throughput rate up to 144 samples/ h, with approximately 2% carryover and good precision (3.2% RSD). Baseline separation was achieved for FITC-labeled arginine, phenylalanine, glycine, and FITC in sodium tetraborate buffer (pH 9.5) with plate heights of 5.4-5.5 microm and plate numbers of 2.34 x 10(4)-2.37 x 10(4) under electrical field strengths of 214 V/cm for injection and 500 V/cm for separation (14-cm capillary, 48-microm i.d.). Detection limits (S/N = 3) were 1.3 microM for arginine and 1.9 microM for phenylalanine and glycine.
本文描述了一种新型的微型毛细管电泳(CE)系统,其中涂有特氟龙AF的硅胶毛细管既作为分离通道,又作为横向照明的液芯波导。该装置独特地采用了基于流动注射(FI)的分流进样方式,通过液滴界面实现。固定在显微镜载玻片上的H通道结构利用了一根水平分离毛细管,其两端各有一个管状侧臂,用作进样和出样的流通电极池。进样池还作为与FI系统耦合的液滴界面。使用蓝色发光二极管作为激发源。一根大芯光纤将发射的荧光传输到一个廉价的光电倍增管,两层绿色塑料用于光学滤波。无需聚焦装置。连续流动注射一系列30微升含有异硫氰酸荧光素(FITC)标记氨基酸混合物的样品,通量率可达144个样品/小时,残留率约为2%,精密度良好(相对标准偏差为3.2%)。在硼酸钠缓冲液(pH 9.5)中,对FITC标记的精氨酸、苯丙氨酸、甘氨酸和FITC实现了基线分离,在214 V/cm的电场强度下进样、500 V/cm的电场强度下分离(14厘米毛细管,内径48微米)时,塔板高度为5.4 - 5.5微米,塔板数为2.34×10⁴ - 2.37×10⁴。精氨酸的检测限(信噪比 = 3)为1.3微摩尔/升,苯丙氨酸和甘氨酸的检测限为1.9微摩尔/升。