posted on 2016-10-24, 00:00authored byG. Ojeda-Torres, L. Williams, D.E. Featherstone, S.A. Shippy
Brain tissue slices are a common neuroscience model that allows relatively sophisticated analysis of
neuronal networks in a simplified preparation. Most experimental methodology utilizes electrophysiological
tools to probe these model systems. The work here demonstrates the adaptation of low-flow push–
pull perfusion sampling (LFPS) to a brain slice system. LFPS is used to sample from the hippocampus of
mouse brain slices. Perfusate amino acid levels are quantified following sampling with capillary electrophoresis.
Glutamate was measured from the CA1 region of the hippocampus in slices taken from a
cystine-glutamate transporter deletion mutant, xCT −/−, and the background strain C57BL/6J. Sampling is
performed over up to 6.5 h with standard tissue slice preparation and experimentation methods. Four
amino acids were quantified to demonstrate the ability to perform LFPS and show good agreement with
published literature. Perfusate glutamate levels are found to be significantly lower with xCT −/− slices
(1.9(±0.5) µM) relative to controls (4.90(±1.1) µM). But, experiments with control slices show a significant
decrease in glutamate over the 6 h sampling period that are not seen with xCT −/− slices. Increasing the
LFPS sample collection rate during the first 90 min of sampling did not show a sampling artifact in perfusate
glutamate content. Sampling immediately following slicing did not show an early increasing glutamate
level that would be indicative of a significant contribution from blood or tissue damage. The data
presented here show a complementarity to electrophysiological studies of tissue slices. The ability to
characterize extracellular fluid chemical content with LFPS in these slices provides an alternative data
stream for probing neurochemical signaling networks in brain tissue slices