Artigo Revisado por pares

Brain γ‐aminobutyric acid, glutamic acid decarboxylase, glutamate, and ammonia in mice during hyperbaric oxygenation

1977; Wiley; Volume: 28; Issue: 4 Linguagem: Inglês

10.1111/j.1471-4159.1977.tb10640.x

ISSN

1471-4159

Autores

Morris D. Faiman, R.J. Nolan, Claude F. Baxter, Darol E. Dodd,

Tópico(s)

Amino Acid Enzymes and Metabolism

Resumo

Journal of NeurochemistryVolume 28, Issue 4 p. 861-865 Brain γ-aminobutyric acid, glutamic acid decarboxylase, glutamate, and ammonia in mice during hyperbaric oxygenation M. D. Faiman, M. D. Faiman Department of Pharmacology and Tuxicology, School of Pharmacy, University of Kansas, Lawrence, KS 66045Search for more papers by this authorR. J. Nolan, R. J. Nolan Department of Pharmacology and Tuxicology, School of Pharmacy, University of Kansas, Lawrence, KS 66045Search for more papers by this authorC. F. Baxter, C. F. Baxter Veterans Adminisrration Hospital. Neurochemistry Laboratories Sepulveda, CA 91343, U.S.A.Search for more papers by this authorD. E. Dodd, D. E. Dodd Department of Pharmacology and Tuxicology, School of Pharmacy, University of Kansas, Lawrence, KS 66045Search for more papers by this author M. D. Faiman, M. D. Faiman Department of Pharmacology and Tuxicology, School of Pharmacy, University of Kansas, Lawrence, KS 66045Search for more papers by this authorR. J. Nolan, R. J. Nolan Department of Pharmacology and Tuxicology, School of Pharmacy, University of Kansas, Lawrence, KS 66045Search for more papers by this authorC. F. Baxter, C. F. Baxter Veterans Adminisrration Hospital. Neurochemistry Laboratories Sepulveda, CA 91343, U.S.A.Search for more papers by this authorD. E. Dodd, D. E. Dodd Department of Pharmacology and Tuxicology, School of Pharmacy, University of Kansas, Lawrence, KS 66045Search for more papers by this author First published: April 1977 https://doi.org/10.1111/j.1471-4159.1977.tb10640.xCitations: 16Read the full textAboutPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShare Give accessShare full text accessShare full-text accessPlease review our Terms and Conditions of Use and check box below to share full-text version of article.I have read and accept the Wiley Online Library Terms and Conditions of UseShareable LinkUse the link below to share a full-text version of this article with your friends and colleagues. Learn more.Copy URL Share a linkShare onEmailFacebookTwitterLinkedInRedditWechat REFERENCES Alderman J. D., Culver B. W. & Shellenberger M. K. (1974) J. Pharmac. exp. Ther. 190. 334–340. Balentine J. D. (1974) Lab. Invest. 31. 580–592. Balzer H., Holtz P. & Palm D. (1961) Experientia 17, 38–40. Baxter C. F. (1972) Assay of γ-aminobutyric acid and enzymes involved in its metabolism, in Methods of Neurochemistry ( R. Fried, ed.) Vol. 3, pp. 1–73. Dekker, New York . Baxter C. F. & Roberts E. (1960) Proc. Soc. exp. Biol. Med. 104, 426–427. Cohen H. P., Vasconetto C. & Ayala C. F. (1972) J. Neurochem. 19, 525–534. Crawford I. L. & Connor J. D. (1973) Nature, Lond. 244, 442–443. Currie W. D., Gelein R. M. & Sanders A. P. (1969) Proc. Soc. exp. Biol. Med. 132, 660–662. DeFeudis F. V. (1971) Experientia 27, 1284. Duffy T. E., Vergara F. & Plum F. (1974) α-Ketoglutaramate in hepatic encephalopathy in Brain Dysfunction in Metabolic Disorders ( F. Plum, ed.) pp. 39–52. Raven Press, New York . Essman W. B., Barker L. A. & Keller A. (1972) Fedn Proc. Fedn Am. Socs exp. Biol. 31, 249. Faiman M. D., Mehl R. G. & Oehme F. W. (1971a) Biochem. Pharmac. 20, 3059–3067. Faiman M. D., Mehl R. G. & Myers M. B. (1971b) Life Sci. 10, 21–34. Folbergrová J., Passonneau J. V., Lowry O. H. & Schultz D. W. (1969) J. Neurochem. 16, 191–203. Gabibov M. M. (1975) Kosm. Bid. Aviakosm. Med. 9, 12–16. Gastaut H., Saier J., Mano T., Santos D. & Lyagoubi S. (1968) Epilepsia 9, 317–327. Gershenovich Z. S., Krichevskaya A. A. & Kolosek J. (1963) J. Neurochem. 10, 79–82. Growdon W. A., Bratton Houston M. C., Tarpley H. L. & Regen D. M. (1971) Am. J. Physiol. 221, 1738–1745. Haugaard N. (1968) Physiol. Rev. 48, 311–373. Holness D. E. & Radomski M. S. (1972) Experientia 28, 1277. Johnson J. L. (1972) Brain Res. 37, 1–19. Karlson A., Fonnum F., Malthe-Sorenssen D. & Storm-Mathisen J. (1974) Biochem. Pharmac. 23, 3053–3061. Kato L., Gözsv B., Roy P. B. & Groh V. (1967) Int. J. Neuropsych. 3, 46–51. Koyama T. (1972) Can. J. Physiol. Pharmac. 50, 740–752. Kuriyama K. & Sze P. Y. (1971) Neuropharmacology 10, 103–108. Leonard B. E. & Palfreyman M. G. (1972) Biochem. Pharmac. 21, 1206–1209. Lowry O. H. & Passonneau J. V. (1972) A Flexible System of Enzymatic Analysis, pp. 146–218. Academic Press, New York . Lux H. D. (1971) Science 173, 555–557. Mayevsky A., Jamieson D. & Chance B. (1974) Brain Res. 76, 481–491. Maynert E. W. & Kaji H. K. (1962) J. Pharmac. exp. Ther. 137, 114–121. Menjeritskaia L. C. & Gershenovich Z. S. (1971) Biol. ZH. 14, 45–49. Nelson S. R., Lowry O. H. & Passonneau J. V. (1966) in Head Injury: Conference Proceedings ( W. F. Careness & A. E. Walker, eds.) p. 444, Lippincott, Philadelphia . Nolan R. J. & Faiman M. D. (1974) J. Neurochem. 22, 645–650. Oldfield D. G., Doull J. & Plzak V. (1965) Rad. Res. 26, 25–31. Richter D. & Crossland J. (1949) Am. J. Physiol. 159, 247–255. Roberts E. & Simonsen D. G. (1963) Biochem. Pharmac. 12, 113–134. Sanders A. P., Currie W. D. & Woodhall B. (1969) Proc. Soc. exp. Biol. Med. 130, 1021–1027. Schatz R. A. & Lal H. (1971) J. Neurochem. 18, 2553–2555. Smissman E. E., Inloes R. L., El-Antably S. & Shaffer P. J. (1976) J. Med. Chem. 19, 161–163. Sokal R. R. & Rohlf J. F. (1969) Biometry. Freeman, San Francisco . Tapia R. (1975) Biochemical Pharmacology of GABA in CNS, in Handbook of Psychopharmacology ( L. L. Iversen, S. D. Iversen & S. H. Snyder, eds.) pp. 1–58. Plenum Press, New York . Carter T. J. K., Carter S. H. & Stone W. E. (1965) J. Neurochern. 12, 679–693. Tsukada Y. (1966) Amino acid metabolism and its relation to brain functions, in Progress in Brain Research ( T. Tokizane & J. P. Schade eds.) Vol. 21A, pp. 288–291. Elsevier, Amsterdam . Weil-Malherbe H. (1974) Molec. Cell. Biochem. 4, 31–44. Wood J. D. & Abrahams D. E. (1971) J. Neurochem. 18, 1017–1025. Wood J. D. & Peesker S. J. (1972) J. Neurochem. 19, 1527–1537. Wood J. D. & Peesker S. J. (1974) J. Neurochem. 23, 703–712. Wood J. D. & Watson W. J. (1963) Can. J. Biochem. Physiol. 41, 1907–1913. Wood J. D. & Watson W. J. (1964) Can. J. Physiol. Pharmacol. 42, 641–646. Wood J. D., Watson W. J. & Stacey N. E. (1966) J. Neurochem. 13, 361–370. Wood J. D., Watson W. J. & Ducker A. J. (1967) J. Neurochem. 14, 1067–1074. Citing Literature Volume28, Issue4April 1977Pages 861-865 ReferencesRelatedInformation

Referência(s)