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Amino acid transmitters in the mammalian central nervous system

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166 D.R. CURTIS and G.A.R. JOHNSTON :<br />

ANDERSEN, P., CURTIS, D. R. : The pharmacology of <strong>the</strong> synaptic and acetylchol<strong>in</strong>e-<strong>in</strong>duced excitation<br />

of ventrobasal thalamic neurones. Acta physiol, scand. 61, 100 120 (1964b).<br />

ANDERSEN, P., ECCLES, J.C., LOYNING,Y. : Pathway of postsynaptic <strong>in</strong>hibition <strong>in</strong> <strong>the</strong> hippocampus.<br />

J. Neurophysiol. 27, 608-619 (1964).<br />

ANDERSEN, P., ECCLES, J.C., LOYNING, Y., VOORHOEVE, P. E. : Strychn<strong>in</strong>e-resistant <strong>in</strong>hibition <strong>in</strong> <strong>the</strong><br />

bra<strong>in</strong>. Nature (Lond.) 200, 843 845 (1963).<br />

ANDERSEN, P., ECCLES, J.C., OSHIMA, T., SCHM1DT, R.F.: Mechanisms of synaptic transmission<br />

<strong>in</strong> <strong>the</strong> cuneate nucleus. J. Neurophysiol. 27, 1096-1116 (1964).<br />

ANDERSEN, P., ETHOLM, B., GORDON, G.: Presynaptic and postsynaptic <strong>in</strong>hibition elicited <strong>in</strong> <strong>the</strong><br />

cat's dorsal column nuclei by mechanical stimulation of sk<strong>in</strong>. J. Physiol. (Lond.) 210, 433 455<br />

(1970).<br />

APRISON, M.H.: Evidence of <strong>the</strong> release of C14-glyc<strong>in</strong>e from hemisectioned toad sp<strong>in</strong>al cord with<br />

dorsal root stimulation. Pharmacologist 12, No. 2, 126 (1970).<br />

APRISON, M.H., DAVIDOFF, R.A., WERMAN, R.: Glyc<strong>in</strong>e: its metabolic and possible transmitter<br />

roles <strong>in</strong> <strong>nervous</strong> tissue. In : Handbook of neurochemistry, v01.3, Metabolic reactions <strong>in</strong> <strong>the</strong> <strong>nervous</strong><br />

<strong>system</strong>, ed. A. Lajtha, p. 381 397. New York: Plenum Press 1970.<br />

APR1SON, M.H., McBRJDE, W.J. : Evidence for <strong>the</strong> net accumulation of glyc<strong>in</strong>e <strong>in</strong>to a synaptosomal<br />

fraction isolated from <strong>the</strong> telecephalon and sp<strong>in</strong>al cord of <strong>the</strong> rat. Life Sci. 12, Part I, 449 458<br />

(1973).<br />

APrtISON, M.H., SHANK, R.P., DAVIDOEV, R.A.: A comparison of <strong>the</strong> concentration of glyc<strong>in</strong>e.<br />

a transmitter suspect, <strong>in</strong> different areas of <strong>the</strong> bra<strong>in</strong> and sp<strong>in</strong>al cord <strong>in</strong> seven different vertebrates.<br />

Comp. Biochem, Physiol. 28, 1345--1355 (1969).<br />

APR1SON, M. H., WERMAN, R. : A comb<strong>in</strong>ed neurochemical and neurophysiological approach to identification<br />

of <strong>central</strong> <strong>nervous</strong> <strong>system</strong> <strong>transmitters</strong>. In : Neurosciences research, vol. 1, eds. S. Ehrenpeels<br />

and P.C. Solnitzky, p. 143 174. New York: Academic Press t968.<br />

ARNFRED, T., HERZ, L.: Effects of potassium and glutamate on bra<strong>in</strong> cortex slices: uptake and<br />

release of glutamic and o<strong>the</strong>r am<strong>in</strong>o <strong>acid</strong>s. J. Neurochem. 18, 259 265 (1971).<br />

ARRE~UI, A., LOGAN, W.J., BENNETT, J.P., SNYDER~ S. H. : Specific glyc<strong>in</strong>e - accumulat<strong>in</strong>g synaptosomes<br />

<strong>in</strong> <strong>the</strong> sp<strong>in</strong>al cord of rats. Proc. nat. Acad. Sci. (Wash.) 69, 3485-3489 (1972).<br />

AWAPURA, J.: The taur<strong>in</strong>e concentration of organs from fed and fasted rats. J. biol. Chem. 218,<br />

571-576 (1956).<br />

BAKER, W.W., KRATKY, M., BENEDICT, F. : Electrographic responses to <strong>in</strong>trahippocampal <strong>in</strong>jections<br />

of convulsant drugs. Exp. Neurol. 12, 136-145 (1965).<br />

BAL~,ZS, R., MACHIYAMA, Y., HAMMOND, B.J., JULIAN, T., RICHTER, D.: The operation of <strong>the</strong> 7-<br />

am<strong>in</strong>obutyrate bypath of <strong>the</strong> tricarboxylic <strong>acid</strong> cycle <strong>in</strong> bra<strong>in</strong> tissue <strong>in</strong> vitro. Biochem. J. 116,<br />

445-467 (1970).<br />

BAL.kZS, R., PATEL, A.J., RICHTER, D. : Metabolic compartments <strong>in</strong> <strong>the</strong> bra<strong>in</strong>: <strong>the</strong>ir properties and<br />

relation to morphological structures. In : Metabolic compartmentation <strong>in</strong> <strong>the</strong> bra<strong>in</strong>, eds. R. Balfizs<br />

and J.E. Cremer, p. 167-184. London: Macmillan 1973.<br />

BALCAR, V. J., JOHNSTON, G. A. R. : Glutamate uptake by bra<strong>in</strong> slices and its relation to <strong>the</strong> depolarization<br />

of neurones by <strong>acid</strong>ic am<strong>in</strong>o <strong>acid</strong>s. J. Neurobiot. 3, 295-301 (1972a).<br />

BALCAR, V. J., JOHNSTON, G. A. R. : The structural specificity of <strong>the</strong> high aff<strong>in</strong>ity uptake of L-glutamate<br />

and L-aspartate by rat bra<strong>in</strong> slices. J. Neurochem. 19, 2657-2666 (1972b).<br />

BALCAR, V.J., JOHNSTON, G.A.R.: High aff<strong>in</strong>ity uptake of <strong>transmitters</strong>: studies on <strong>the</strong> uptake of<br />

L-aspartate, GABA, L-glutamate and glyc<strong>in</strong>e <strong>in</strong> cat sp<strong>in</strong>al cord. J. Neurochem. 20, 529-539<br />

(1973).<br />

BANNA, N.R., JABBUR, S.J.: Pharmacological studies on <strong>in</strong>hibition <strong>in</strong> <strong>the</strong> cuneate nucleus of <strong>the</strong><br />

cat. Int. J. Neuropharmacol. 8, 299 307 (1969).<br />

BANNA, N.R., JABBUR, S.J.: The effects of deplet<strong>in</strong>g GABA on cuneate presynaptic <strong>in</strong>hibition.<br />

Bra<strong>in</strong> Res. 33, 530 532 (1971).<br />

BANNA, N. R., NACCACHE, A., JABBUR, S. J. : Picrotox<strong>in</strong>-like action of bicucull<strong>in</strong>e. Europ. J. Pharmacol.<br />

17, 301-302 (1972).<br />

BANDS, G., DANIEL, P.M., MOORHOUSE, S.R., PRATT, O.E.: The entry of am<strong>in</strong>o <strong>acid</strong>s <strong>in</strong>to <strong>the</strong><br />

bra<strong>in</strong> of <strong>the</strong> rat dur<strong>in</strong>g <strong>the</strong> postnatal period. J. Physiol. (Lond.) 213, 45-46P (1971).<br />

BARKER, J. L., CRAYTON, J. W., N1COLL, R. A. : Noradrenal<strong>in</strong>e and acetylchol<strong>in</strong>e responses of supraoptic<br />

neurosecretory cells. J. Physiol. (Load.) 218, 19-32 (1971).<br />

BARKER, J.L., NICOLE, R.A.: The pharmacology and ionic dependency of am<strong>in</strong>o <strong>acid</strong> responses<br />

<strong>in</strong> <strong>the</strong> frog sp<strong>in</strong>al cord. J. Physiol. (Lond.) 228, 259-277 (1973).

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