Fuller R R, Moroz L L, Gillette R, Sweedler J V
Department of Chemistry and the Beckman Institute, University of Illinois, Urbana 61801, USA.
Neuron. 1998 Feb;20(2):173-81. doi: 10.1016/s0896-6273(00)80446-8.
A technique to identify and quantitate simultaneously more than 30 compounds in individual neurons is described. The method uses nanoliter volume sampling, capillary electrophoresis separation, and wavelength-resolved native fluorescence detection. Limits of detection (LODs) range from the low attomole to the femtomole range, with 5-hydroxytryptamine (or serotonin [5-HT]) LODs being approximately 20 attomoles. Although the cellular sample matrix is chemically complex, the combination of electrophoretic migration time and fluorescence spectral information allows positive identification of aromatic monoamines, aromatic amino acids and peptides containing them, flavins, adenosine- and guanosine-nucleotide analogs, and other fluorescent compounds. Individual identified neurons from Aplysia californica and Pleurobranchaea californica are used to demonstrate the applicability and figures of merit of this technique.
本文描述了一种可同时鉴定和定量单个神经元中30多种化合物的技术。该方法采用纳升体积进样、毛细管电泳分离和波长分辨的天然荧光检测。检测限(LOD)范围从低阿托摩尔到飞摩尔,5-羟色胺(或血清素[5-HT])的检测限约为20阿托摩尔。尽管细胞样品基质在化学上很复杂,但电泳迁移时间和荧光光谱信息的结合可对芳香单胺、芳香氨基酸及其含有的肽、黄素、腺苷和鸟苷核苷酸类似物以及其他荧光化合物进行阳性鉴定。利用来自加州海兔和加州侧鳃海牛的单个已鉴定神经元来证明该技术的适用性和性能指标。