Powell Paula R, Paxon Tracy L, Han Kyung-An, Ewing Andrew G
Department of Chemistry, 104 Chemistry Research Building, InterCollege Graduate Program in Genetics, and Department of Biology, 208 Mueller Laboratory, Pennsylvania State University, University Park, Pennsylvania 16802.
Anal Chem. 2005 Nov 1;77(21):6902-6908. doi: 10.1021/ac050963m.
Neurochemical variability among individual Drosophila heads has been examined with the sensitivity of electrochemical detection and the selectivity of micellar electrokinetic capillary chromatography. Homogenization of single Drosophila heads in volumes as small as 100 nL has been accomplished. Here we demonstrate reproducible separations for single fly heads in 250-nL volumes providing a 4-fold increase in sensitivity without overloading the electrochemical detector. This increase in sensitivity allows detection of previously undetected analytes, such as N-acetyltyramine (naTA) and octopamine (OA). Analytes including L-3,4-dihydroxyphenylalanine, N-acetyl octopamine, N-acetyldopamine, naTA, N-acetylserotonin, OA, dopamine, tyramine, and serotonin also have been consistently identified in single-head homogenates and observed with homogenates representing populations of Drosophila. Neurochemical variation between individual flies as well as the consistency within a population indicates varying amounts of neurotransmitter turnover. The inception, design, and fabrication of a miniature tissue homogenizer has enabled the separation of biogenic amines and metabolites from these severely volume-limited single Drosophila head homogenates.
利用电化学检测的灵敏度和胶束电动毛细管色谱的选择性,对单个果蝇头部的神经化学变异性进行了研究。已经实现了在低至100 nL体积的情况下对单个果蝇头部进行匀浆。在此,我们展示了在250 nL体积中对单个果蝇头部进行可重复的分离,灵敏度提高了4倍,且不会使电化学检测器过载。灵敏度的提高使得能够检测到以前未检测到的分析物,如N - 乙酰酪胺(naTA)和章鱼胺(OA)。包括L - 3,4 - 二羟基苯丙氨酸、N - 乙酰章鱼胺、N - 乙酰多巴胺、naTA、N - 乙酰血清素、OA、多巴胺、酪胺和血清素在内的分析物也在单个头部匀浆中得到了一致鉴定,并在代表果蝇群体的匀浆中观察到。个体果蝇之间的神经化学变化以及群体内部的一致性表明神经递质周转量不同。一种微型组织匀浆器的发明、设计和制造,使得能够从这些体积严重受限的单个果蝇头部匀浆中分离出生物胺和代谢物。