Chiral Measurement of Aspartate and Glutamate in Single Neurons by Large-Volume Sample Stacking Capillary Electrophoresis.
Amit V PatelTakayuki KawaiLiping WangStanislav S RubakhinJonathan V SweedlerPublished in: Analytical chemistry (2017)
d-Amino acids (d-AAs) are endogenous molecules found throughout the metazoan, the functions of which remain poorly understood. Measurements of low abundance and heterogeneously distributed d-AAs in complex biological samples, such as cells and multicellular structures of the central nervous system (CNS), require the implementation of sensitive and selective analytical approaches. In order to measure the d- and l-forms of aspartate and glutamate, we developed and applied a stacking chiral capillary electrophoresis (CE) with laser-induced fluorescence detection method. The achieved online analyte preconcentration led to a 480-fold enhancement of detection sensitivity relative to capillary zone electrophoresis, without impacting separation resolution or analysis time. Additionally, the effects of inorganic ions on sample preconcentration and CE separation were evaluated. The approach enabled the relative quantification of d-aspartate and d-glutamate in individual neurons mechanically isolated from the CNS of the sea slug Aplysia californica, a well characterized neurobiological model. Levels of these structurally similar d-AAs were significantly different in subpopulations of cells collected from the investigated neuronal clusters.
Keyphrases
- capillary electrophoresis
- mass spectrometry
- liquid chromatography
- induced apoptosis
- cell cycle arrest
- healthcare
- high resolution
- amino acid
- primary care
- blood brain barrier
- endoplasmic reticulum stress
- signaling pathway
- energy transfer
- epithelial mesenchymal transition
- cell death
- cerebrospinal fluid
- cell proliferation
- wastewater treatment
- solid phase extraction
- pi k akt