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Erschienen in: Metabolic Brain Disease 3/2008

01.09.2008 | Original Paper

Acyclovir inhibits rat liver tryptophan-2,3-dioxygenase and induces a concomitant rise in brain serotonin and 5-hydroxyindole acetic acid levels

verfasst von: Adrienne C. Müller, Santy Daya

Erschienen in: Metabolic Brain Disease | Ausgabe 3/2008

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Abstract

Viral diseases of the brain may induce changes in neurotransmitter synthesis and metabolism. In experimental herpes simplex encephalitis, brain serotonin is reduced, whilst it’s major metabolite, 5-hydroxyindole acetic acid and turnover is increased. It is well established that reduced levels of brain monoamines, serotonin and norepinephrine may contribute to the symptoms of clinical depression, which raises the possibility that this condition is prevalent in herpes simplex encephalitis. An inverse relationship exists between liver tryptophan-2,3-dioxygenase activity and brain serotonin levels and there is an interdependency between serotonin and norepinephrine levels. The aim of this study is to determine the effect of acyclovir, an antiviral used in the treatment of herpes simplex encephalitis, on rat liver tryptophan-2,3-dioxygenase activity in vitro and in vivo as well as on rat forebrain serotonin, 5-hydroxyindole acetic acid and norepinephrine levels. The results show that acyclovir inhibits tryptophan-2,3-dioxygenase activity in vitro and in vivo, with a concomitant rise in serotonin and 5-hydroxyindole acetic acid levels. However, acyclovir reduces the turnover of serotonin to 5-hydroxyindole acetic acid, without any effect on norepinephrine levels. It appears that acyclovir may have the potential to reduce the clinical symptoms of depression in herpes simplex encephalitis. However, a greater turnover of serotonin to 5-hydroxyindole acetic acid could possibly be masked by conversion of serotonin to 5-hydroxytryptophol, which needs to be investigated further.
Literatur
Zurück zum Zitat Badawy AAB, Evans M (1975) The regulation of rat liver tryptophan pyrrolase by its cofactor haeme. J Biochem 150:511–520 Badawy AAB, Evans M (1975) The regulation of rat liver tryptophan pyrrolase by its cofactor haeme. J Biochem 150:511–520
Zurück zum Zitat Badawy AAB, Evans M (1981) Inhibition of rat liver tryptophan pyrrolase activity and elevation of brain tryptophan concentration by administration of anti-depressants. Biochem Pharmacol 30:1211–1216PubMedCrossRef Badawy AAB, Evans M (1981) Inhibition of rat liver tryptophan pyrrolase activity and elevation of brain tryptophan concentration by administration of anti-depressants. Biochem Pharmacol 30:1211–1216PubMedCrossRef
Zurück zum Zitat Bender DA (1983) Biochemistry of tryptophan in health and disease. Mol Aspects Med 6:101–197PubMedCrossRef Bender DA (1983) Biochemistry of tryptophan in health and disease. Mol Aspects Med 6:101–197PubMedCrossRef
Zurück zum Zitat Daya S, Nonaka KO, Buzzell GR, Reiter RJ (1989) Haeme precursor 5-aminolevulinic acid alters brain tryptophan and serotonin levels without changing pineal serotonin and melatonin concentrations. Journal Neurosci Res 23:304–309CrossRef Daya S, Nonaka KO, Buzzell GR, Reiter RJ (1989) Haeme precursor 5-aminolevulinic acid alters brain tryptophan and serotonin levels without changing pineal serotonin and melatonin concentrations. Journal Neurosci Res 23:304–309CrossRef
Zurück zum Zitat Delgado PL, Charney RS, Price LH, Aghajanian GK, Randis H, Henninger GR (1990) Serotonin function and the mechanism of antidepressant action. Reversal of antidepressant-induced remission by rapid depletion of plasma tryptophan. Arch Gen Psychiatry 47:411–418PubMed Delgado PL, Charney RS, Price LH, Aghajanian GK, Randis H, Henninger GR (1990) Serotonin function and the mechanism of antidepressant action. Reversal of antidepressant-induced remission by rapid depletion of plasma tryptophan. Arch Gen Psychiatry 47:411–418PubMed
Zurück zum Zitat Gibbons RD, Davis JM (1986) Consistent evidence for a biological subtype of depression characterised by low CSF monoamine levels. Acta Psychiatr Scand 74:8–12PubMedCrossRef Gibbons RD, Davis JM (1986) Consistent evidence for a biological subtype of depression characterised by low CSF monoamine levels. Acta Psychiatr Scand 74:8–12PubMedCrossRef
Zurück zum Zitat Groff JL, Gropper SS (1999) Advanced Nutrition and Human Metabolism, 3rd edn. Wassworth/Thomson Learning, Belmont Groff JL, Gropper SS (1999) Advanced Nutrition and Human Metabolism, 3rd edn. Wassworth/Thomson Learning, Belmont
Zurück zum Zitat Kopin IJ (1981) Mode of action of antidepressants and central stimulants. In: van Praag HM, Lader MH, Rafaelsen OJ, Sachar EJ (eds) Handbook of biological psychiatry: Part IV. Marcel Dekker, New York Kopin IJ (1981) Mode of action of antidepressants and central stimulants. In: van Praag HM, Lader MH, Rafaelsen OJ, Sachar EJ (eds) Handbook of biological psychiatry: Part IV. Marcel Dekker, New York
Zurück zum Zitat Lovenberg W, Weissbach H, Udenfriend A (1962) Aromatic L-amino acid decarboxylase. J Biol Chem 237:89–93PubMed Lovenberg W, Weissbach H, Udenfriend A (1962) Aromatic L-amino acid decarboxylase. J Biol Chem 237:89–93PubMed
Zurück zum Zitat Lovenberg W, Jequier E, Sjoerdsma A (1967) Tryptophan hydroxylation. Measurement in pineal gland, brain stem and carcinoid tumour. Science 155:217–219 Lovenberg W, Jequier E, Sjoerdsma A (1967) Tryptophan hydroxylation. Measurement in pineal gland, brain stem and carcinoid tumour. Science 155:217–219
Zurück zum Zitat Lowry OH, Rosebrough NJ, Farr AL, Randall RJ (1951) Protein measurement with the Folin phenol reagent. J Biol Chem 193:265–275PubMed Lowry OH, Rosebrough NJ, Farr AL, Randall RJ (1951) Protein measurement with the Folin phenol reagent. J Biol Chem 193:265–275PubMed
Zurück zum Zitat Lycke E, Roos B-E (1972) The monoamine metabolism in viral encephalides of the mouse II. Turnover of monoamines in mice infected with herpes simplex virus. Brain Res 44:603–613PubMedCrossRef Lycke E, Roos B-E (1972) The monoamine metabolism in viral encephalides of the mouse II. Turnover of monoamines in mice infected with herpes simplex virus. Brain Res 44:603–613PubMedCrossRef
Zurück zum Zitat McTavish SF, Cowen PJ, Sharp T (1999) Effect of a tyrosine-free amino acid mixture on regional brain catecholamine synthesis and release. Psychopharmacologia 141:182–188CrossRef McTavish SF, Cowen PJ, Sharp T (1999) Effect of a tyrosine-free amino acid mixture on regional brain catecholamine synthesis and release. Psychopharmacologia 141:182–188CrossRef
Zurück zum Zitat Müller AC, Maharaj H, Maharaj DS, Daya S (2005) Acyclovir protects against quinolinic acid-induced oxidative neurotoxicity. J Pharm Pharmacol 57:883–888PubMedCrossRef Müller AC, Maharaj H, Maharaj DS, Daya S (2005) Acyclovir protects against quinolinic acid-induced oxidative neurotoxicity. J Pharm Pharmacol 57:883–888PubMedCrossRef
Zurück zum Zitat Müller AC, Dairam A, Limson JL, Daya S (2007) Mechanisms by which acyclovir reduces the oxidative neurotoxicity and biosynthesis of quinolinic acid. Life Sci 80:918–925PubMedCrossRef Müller AC, Dairam A, Limson JL, Daya S (2007) Mechanisms by which acyclovir reduces the oxidative neurotoxicity and biosynthesis of quinolinic acid. Life Sci 80:918–925PubMedCrossRef
Zurück zum Zitat Muralikrishnan D, Mohanakumar KP (1998) Neuroprotection by bromocriptine against 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine neurotoxicity in mice. FASEB J 12:905–912PubMed Muralikrishnan D, Mohanakumar KP (1998) Neuroprotection by bromocriptine against 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine neurotoxicity in mice. FASEB J 12:905–912PubMed
Zurück zum Zitat Neeley SP, Cross AJ, Crow TJ, Johnson JA, Taylor GR (1985) Herpes simplex virus encephalitis: Neuroanatomical and neurochemical selectivity. J Neurol Sci 71:325–337PubMedCrossRef Neeley SP, Cross AJ, Crow TJ, Johnson JA, Taylor GR (1985) Herpes simplex virus encephalitis: Neuroanatomical and neurochemical selectivity. J Neurol Sci 71:325–337PubMedCrossRef
Zurück zum Zitat Päivärinta MA, Marttila RJ, Lonnberg P, Rinne UK (1993) Decreased raphe serotonin in rabbits with experimental herpes simplex encephalitis. Neurosci Lett 156:1–4PubMedCrossRef Päivärinta MA, Marttila RJ, Lonnberg P, Rinne UK (1993) Decreased raphe serotonin in rabbits with experimental herpes simplex encephalitis. Neurosci Lett 156:1–4PubMedCrossRef
Zurück zum Zitat Reader TA, Ase AR, Le Marec N, Lalonde R (2000) Effects of buspirone on brain indoleamines and catecholamines in wild-type mice and Lurcher mutants. Eur J Pharmacology 398:41–51CrossRef Reader TA, Ase AR, Le Marec N, Lalonde R (2000) Effects of buspirone on brain indoleamines and catecholamines in wild-type mice and Lurcher mutants. Eur J Pharmacology 398:41–51CrossRef
Zurück zum Zitat Richards DM, Carmine AA, Brogden RN, Heel RC, Speight TM, Avery GS (1983) Acyclovir: a review of its pharmacodynamic properties and therapeutic efficacy. Drugs 26:378–438PubMedCrossRef Richards DM, Carmine AA, Brogden RN, Heel RC, Speight TM, Avery GS (1983) Acyclovir: a review of its pharmacodynamic properties and therapeutic efficacy. Drugs 26:378–438PubMedCrossRef
Zurück zum Zitat Schaechter JD, Wurtman RJ (1989) Tryptophan availability modulates serotonin release from rat hypothalamic slices. J Neurochem 53:1925–1935PubMedCrossRef Schaechter JD, Wurtman RJ (1989) Tryptophan availability modulates serotonin release from rat hypothalamic slices. J Neurochem 53:1925–1935PubMedCrossRef
Zurück zum Zitat Shein HM, Wurtman RJ (1971) Stimulation of [14C] tryptophan 5-hydroxylation by norepinephrine and dibutyryl adenosine 3′, 5′ monophosphate in rat pineal organ cultures. Life Sci 10:935–940CrossRef Shein HM, Wurtman RJ (1971) Stimulation of [14C] tryptophan 5-hydroxylation by norepinephrine and dibutyryl adenosine 3′, 5′ monophosphate in rat pineal organ cultures. Life Sci 10:935–940CrossRef
Zurück zum Zitat Uchida K, Usami M, Bandow H, Harada I (1992) Characteristics of substrates and inhibitors in binding to rat liver L-tryptophan-2,3-dioxygenase: a Fourier transform infrared and kinetic study. Biochim Biophys Acta 1121:153–159PubMedCrossRef Uchida K, Usami M, Bandow H, Harada I (1992) Characteristics of substrates and inhibitors in binding to rat liver L-tryptophan-2,3-dioxygenase: a Fourier transform infrared and kinetic study. Biochim Biophys Acta 1121:153–159PubMedCrossRef
Zurück zum Zitat Van Praag HM (1982a) Depression, suicide and serotonin metabolism in the brain. In: Post RM, Ballenger JC (eds) The neurobiology of manic depressive illness. Williams and Wilkins, Baltimore Van Praag HM (1982a) Depression, suicide and serotonin metabolism in the brain. In: Post RM, Ballenger JC (eds) The neurobiology of manic depressive illness. Williams and Wilkins, Baltimore
Zurück zum Zitat Van Praag HM (1982b) Neurotransmitters and CNS disease. Lancet 2:1259–1264PubMed Van Praag HM (1982b) Neurotransmitters and CNS disease. Lancet 2:1259–1264PubMed
Zurück zum Zitat Wurtman RJ, Larin F, Axelrod J, Shein HM, Rosasco K (1968) Formation of melatonin and 5-hydroxy-indole acetic acid from 14C-tryptophan by rat pineal glands in organ culture. Nature 217:953PubMedCrossRef Wurtman RJ, Larin F, Axelrod J, Shein HM, Rosasco K (1968) Formation of melatonin and 5-hydroxy-indole acetic acid from 14C-tryptophan by rat pineal glands in organ culture. Nature 217:953PubMedCrossRef
Zurück zum Zitat Xing-Ming Li S, Perry KW, Wong DT (2002) Influence of fluoxetine on the ability of bupropion to modulate extracellular dopamine and norepinephrine concentrations in three mesocorticolimbic areas of rats. Neuropharmacology 42:181–190CrossRef Xing-Ming Li S, Perry KW, Wong DT (2002) Influence of fluoxetine on the ability of bupropion to modulate extracellular dopamine and norepinephrine concentrations in three mesocorticolimbic areas of rats. Neuropharmacology 42:181–190CrossRef
Zurück zum Zitat Zar JH (1974) Biostatistical Analysis. Prentice Hall, Engelwood Cliffs Zar JH (1974) Biostatistical Analysis. Prentice Hall, Engelwood Cliffs
Metadaten
Titel
Acyclovir inhibits rat liver tryptophan-2,3-dioxygenase and induces a concomitant rise in brain serotonin and 5-hydroxyindole acetic acid levels
verfasst von
Adrienne C. Müller
Santy Daya
Publikationsdatum
01.09.2008
Verlag
Springer US
Erschienen in
Metabolic Brain Disease / Ausgabe 3/2008
Print ISSN: 0885-7490
Elektronische ISSN: 1573-7365
DOI
https://doi.org/10.1007/s11011-008-9095-4

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