Transport of D-aspartate in cerebellar granule cells under cell-damaging conditions
Oja, S.S.; Saransaari, P.
Proceedings of the Western Pharmacology Society 44: 169-172
2001
ISSN/ISBN: 0083-8969 PMID: 11793972 Document Number: 534754
Document emailed within 1 workday
Related Documents
Szekely, A.M.; Barbaccia, M.L.; Alho, H.; Costa, E. 1989: In primary cultures of cerebellar granule cells the activation of N-methyl-D-aspartate-sensitive glutamate receptors induces c-fos mRNA expression Molecular Pharmacology 35(4): 401-408Aronica, E.; Dell'Albani, P.; Condorelli, D.F.; Nicoletti, F.; Hack, N.; Balázs, R. 1993: Mechanisms underlying developmental changes in the expression of metabotropic glutamate receptors in cultured cerebellar granule cells: homologous desensitization and interactive effects involving N-methyl-D-aspartate receptors Molecular Pharmacology 44(5): 981-989
Bardoni, R.; Belluzzi, O. 1991: Kinetic analysis of a transient potassium current in rat cerebellar granule cells in vitro Bollettino della Societa Italiana di Biologia Sperimentale 67(12): 1015-1021
Kedar, V.; Purohit, H.; Freeze, E.; Hempel, F. 1997: Cerebellar granule cell membranes and glutamate mediates transactivation of glutamine synthetase promoter Indian Journal of Experimental Biology 35(2): 123-127
Xu, J.; Wojcik, W.J. 1986: Gamma aminobutyric acid B receptor-mediated inhibition of adenylate cyclase in cultured cerebellar granule cells: blockade by islet-activating protein Journal of Pharmacology and Experimental Therapeutics 239(2): 568-573
Mei, Y.A. 1999: High-voltage-activated calcium current and its modulation by dopamine D4 and pituitary adenylate cyclase activating polypeptide receptors in cerebellar granule cells Zhongguo Yao Li Xue Bao 20(1): 3-9
Ring, K.; Grimm, E.; Schwarz, M. 1976: Interrelationship between the transport of L-aspartate and potassium ions into the cell Arzneimittel-Forschung 26(6): 1195-1201
Herndon, R.M.; Coyle, J.T. 1977: Selective destruction of purkinje cells, basket-stellate cells, and golgi type Ii cells of the cerebellum by kainic acid: further evidence that glutamate is the granule cell transmitter Transactions of the American Neurological Association 102: 93-96
Fukamauchi, F.; Saunders, P.A.; Hough, C.; Chuang, D.M. 1993: Agonist-induced down-regulation and antagonist-induced up-regulation of m2- and m3-muscarinic acetylcholine receptor mRNA and protein in cultured cerebellar granule cells Molecular Pharmacology 44(5): 940-949
Widdowson, P.S.; Briggs, I.; BoSmith, R.E.; Sturgess, N.C.; Rosbottom, A.; Smith, J.C.; Wyatt, I. 1997: L-2-chloropropionic acid inhibits glutamate and aspartate release from rat cerebellar slices but does not activate cerebellar NMDA receptors: implications for L-2-chloropropionic acid-induced neurotoxicity Neurotoxicology 18(1): 169-177
Handgretinger, R.; Dopfer, R.; Hammer, S.; Lang, P.; Daurer, B.; Kimmig, A.; Siedner, R.; Jalowy, B.; Treuner, J.; Niethammer, D. 1990: The efficiency of a new cell separation technique in bone marrow purging without damaging the purged tumor cells Progress in Clinical and Biological Research 333: 303-309
Taguchi, T. 1990: Clinical results of UFT granule of enteric coating (UFT e granule). Osaka UFT e Granule Study Group Gan to Kagaku Ryoho. Cancer and ChemoTherapy 17(7): 1295-1301
Ulybina, I.N.; Tsyndrenko, S.N. 1974: The relationship between dark and light rat cerebellar Purkinje cells using different fixation methods under normal conditions and in hypoxia Tsitologiia 16(2): 155-159
Sorokin, A.B.; Sorkin, A.D.; Nikol'skiĭ, N.N. 1981: Uridine transport and phosphorylation in 3T3 and CHO cells depending on the culture growth conditions Tsitologiia 23(4): 419-426
Klose, T.; Putzker, M.; Pru, A.ß; Hans-Hubert Borchert 2008: Novel System for Worldwide Qualified Transport of Red Blood Cell Concentrates (RBC) under Extreme Environmental Conditions Clinical Laboratory 54(1-2): 25-28
Plagemann, P.G. 1976: Transport, phosphorylation, and toxicity of a tricyclic nucleoside in cultured Novikoff rat hepatoma cells and other cell lines and relase of its monophosphate by the cells Journal of the National Cancer Institute 57(6): 1283-1295
Franic, L.I.; Martínez-Rodriguez, R. 1988: Light and electron microscope immunocytochemical localization of cytosolic aspartate aminotransferase (c-AAT-A) in the cerebellar cortex of the rat during postnatal development Cellular and Molecular Biology 34(1): 7-15
Tachikawa, E.; Takahashi, S.; Shimizu, C.; Ohtsubo, N.; Kashimoto, T.; Takahashi, E. 1984: Effects of nicardipine and other Ca2+-antagonists on catecholamine transport into chromaffin granule membrane vesicles Research Communications in Chemical Pathology and Pharmacology 45(2): 305-308
Zhu, W.J.; Wang, J.F.; Vicini, S.; Grayson, D.R. 1996: Alpha 6 and gamma 2 subunit antisense oligodeoxynucleotides alter gamma-aminobutyric acid receptor pharmacology in cerebellar granule neurons Molecular Pharmacology 50(1): 23-33
Minnicozzi, M.; Durán, W.N.; Gleich, G.J.; Egan, R.W. 1994: Eosinophil granule proteins increase microvascular macromolecular transport in the hamster cheek pouch Journal of Immunology 153(6): 2664-2670