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Titlebook: Excitatory Amino Acids; Peter J. Roberts,Jon Storm-Mathisen,Harry F. Bradf Book 1986 The Editors and the Contributors 1986 amino acid.huma

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https://doi.org/10.1007/978-3-319-63664-1gh capacity transporter. In addition, glutamine synthesis and catabolism are intimately associated with neurotransmitter glutamate. The enzyme, glutamine synthetase, is highly enriched in astrocytes. The catabolic enzyme, glutaminase, may or may not be enriched in glutamergic nerve endings. Experime
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https://doi.org/10.1007/978-3-658-29144-0e and GABA can be explained from a two-compartment model. (Berl et al, 1961; Berl and Clarke, 1978; van den Berg and Garfinkel, 1971; Balazs et al, 1970). Such a simple classification is surprising in view of the heterogenous composition of the brain both in anatomical and biochemical terms. The two
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A Review of the Relevant Literature,mino acids. Glutaminase is found to be enriched in several putative excitatory amino acid neurons including the auditory nerve, neurons of the hippocampus and cerebral cortex and granule cells of the cerebellum. Cytoplasmic aspartate aminotransferase is enriched in some excitatory amino acid neurons
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The Power of Formative Assessment,e antisera reacted selectively with brain protein-glutarai dehyde conjugates of Glu or Asp, as assessed in a model system that permitted testing under conditions closely similar to those of the immunocytochemical procedure. Specific staining was abolished after solid phase adsorption with fixation c
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Formatives Assessment in der Grundschulel nervous system, and this has led to the characterisation of at least three subtypes (viz. those activated by N-methyl-Daspartate (NMDA), quisqualate and kainate) on the basis of electrophysiological studies (see Watkins, this volume). In contrast to the postsynaptic receptors, relatively little at
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