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Nutritional Neuroscience
An International Journal on Nutrition, Diet and Nervous System
Volume 3, 2000 - Issue 6
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Original Articles

Hyperphagia and Decreases of Brain Serotonin in Rats Fed Freely on Sugar Rich Diet for Three Weeks

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Pages 399-405 | Received 16 Feb 2000, Published online: 13 Jul 2016

References

  • Bantle, J.P. (1989) Clinical aspects of sucrose and fructose metabolism. Diabetic Care 12, 56–61.
  • Beck-Nielsen, H., Pederson, O. and Linskov, H.O. (1980) Impaired cellular insulin binding and sensitivity induced by high fructose feeding in normal subjects. Am. J. Clin. Nutr. 33, 273–278.
  • Bernardis, L.L. and Bellinger, L.L. (1993) The lateral hypothalamic area revisited: Neuroanatomy, body weight regulation, Neuroendocrinology and metabolism. Neuroscie. Biobehav. Rev. 17, 141–193.
  • Blundell, J. (1991) Pharmacological approaches to appetite suppression. TIPS 12, 147–157.
  • Boadle-Biber, M.C. (1993) Regulation of serotonin synthesis. Prog. Biopliys. Mol. Biol. 60, 11–15.
  • Bolton-Smith, C. and Woodward, M. (1994) Dietary consumption and fat to sugar ratios in relation to obesity. Int. J. Obes. Relat Metab Disord. 18, 820–828.
  • Booth, D.A. (1971) Some characteristics of feeding during streptozotocin-induced diabetes in rat. J. Comp. Physiol. Psychol. 80, 238–249.
  • Chen, C.C. and Yang, J.C. (1991) Effects of short and long lasting diabetes mellitus on mouse brain monoamines. Brain Res. 552, 175–179.
  • Curzon, G. (1990) Serotonin and appetite. Ann. NY Acad. Sci. 600, 521–530.
  • DeKloet, E.R., Sybesma, H. and Reul, M.H.M. (1986) Selective control by corticosterone of serotonin receptor capacity in raphe hippocampal system. Neuroendocrinology 42, 513–521.
  • Fernstrom, J.D. (1983) Role of precursor availability in control of monoamine biosynthesis in brain. Physiol. Rev. 63, 484–546.
  • Fernstrom, J.D. and Wurtman, R.J. (1972) Brain serotonin content: increase following ingestion of carbohydrate diet. Science 174, 1023–1025.
  • Gerozissis, K., Rouch, C., Nicolaidis, S. and Orosco, M. (1999) Brain insulin response to feeding in the rat is both macronutrient and area specific. Physiol. Behav. 66, 271–275.
  • Gupta, G., Azam, M. and Baquer, N.Z. (1992) Effects of experimental diabetes on the catecholamine metabolism in rat brain. J. Neurochem. 58, 95–100.
  • Hargrave, K.R., Wright, B.E., Svec, F. and Porter, J.R. (1997) Dietary and hypothalamic changes in delta 4-androstenedione-treated rats. Physiol. Behav. 61, 619–626.
  • Haleem, D.J. (1990) Injected tryptophan increases brain but not plasma tryptophan levels more in ethanol treated rats. Life Scie. 47, 971–979.
  • Haleem, D.J. (1992) Repeated corticosterone treatment attenuates behavioral effects of 8-hydroxy-2-(di-n-propylamino)tetralin. Life Scie. 50, PL221–PL226.
  • Haleem, D.J. (1999) Attenuation of 8-OH-DPAT-induced decreases in 5-HT synthesis in brain regions of rats adapted to a repeated stress schedule. Stress 3/2, 123–129.
  • Haleem, D.J. and Haider, S. (1996) Food restriction decreases serotonin and its synthesis rate in the hypothalamus. Neuro Report 7, 1153–1156.
  • Haleem, D.J., Kennett, G.A. and Curzon, G. (1988) Adaptation of female rats to stress: shift to male pattern by inhibition of corticosterone synthesis. Brain Res. 458, 339–347.
  • Haleem, D.J., Kennett, G.A. and Curzon, G. (1990) Hippocampal 5-HT synthesis is greater in females and is more decreased by 5-HT agonist 8-OH-DPAT. J. Neural. Transm. 79, 93–101.
  • Haleem, D.J. and Perveen, T. (1994) Brain regional serotonin synthesis following adaptation to repeated restraint. Neuro Report 5, 1785–1788.
  • Haleem, D.J., Zafar, A., Azam, S. and Yasmeen, A. (1994) Tolerance to diacetylmorphine: Effects on brain serotonin. NeuroReport 5, 781–784.
  • Hernandez, L. and Bries, E. (1972) Analysis of diabetic hyperphagia and polydypsia. Physiol. Behav. 9, 741–747.
  • Hjorth, S., Carlsson, A., Lindber, P., Sanchez, D., Wikstrom, A., Arvidsson, L.E., Hacksell, V. and Nilsson, J.L.G. (1982) 8-hydroxy-2-(di-n-propylamino)tetralin, (8-OH-DPAT), a potent selective simplified ergot congener with central 5-HT receptor stimulating activity. J. Neural Transm. 55, 169–188.
  • Hutson, P.M., Sarna, G.S., O'Connell, M.T. and Curzon, G. (1989) Hippocampal 5-HT synthesis and release in vivo is decreased by infusion of 8-OH-DPAT into the nucleus raphe dorsalis. Neurosci. Lett. 100, 276–280.
  • Liu, G., Coulston, A., Hollenbeck, C. and Reaven, G. (1984) The effects of sucrose content in high and low carbohydrate diets on plasma glucose, insulin and lipid responses in hypertriglyceridemic humans. J. Clin. Endocrinol. Metab. 59, 634–642.
  • Lyons, P.M. and Truswell, A.S. (1988) Serotonin precursor influenced by the carbohydrate meal in healthy adults. Am. J. Clin. Nutr. 47, 433–439.
  • McNut, K. (1980) Dietary advice to the public 1957–1980. Nutr Rev. 38, 353–360.
  • Moller, M.E. (1992) Serotonin, carbohydrate and atypical depression. Pharmacol. Toxicol. 71(suppl 1), 61–71.
  • Mooradian, A.D. (1988) Diabetic complications of the central nervous system. Endocr. Rev. 9, 346–356.
  • Orosco, M., Rouch, C. and Nicolaidis, S. (1996) Rostromedial hypothalamic monoamine changes in response to intravenous infusion of insulin and glucose in freely feeding obese Zucker rats. A microdialysis study. Appetite 26, 11–20.
  • Piji, H., Koppeschaar, H.P., Cohen, A.F., Lestra, J.A., Schoemaker, H.C. and Frolich, M. (1993) Evidence of brain serotonin mediated control of carbohydrate consumption in normal weight and obese humans, Int. J. Obes. Relate Metabol. Disord. 17, 513–520.
  • Reiser, S., Hallfrisch, Fields, M., Powell, A., Mertz, W., Prather, E.S. and Canary, J.J. (1986) Effects of sugars on indices of glucose tolerance in humans. Am. J. Clin. Nutr. 43, 151–159.
  • Rowland, N.E., Morein, A. and Li, B. (1996) The physiology and brain mechanism of feeding. Nutrition 12, 626–639.
  • Sahu, A., Sninsky, C.A., Phelps, C.P., Dube, M.G., Kalra, P.S. and Kalra, S.P. (1992) Neuropeptide γ release from the paraventricular nucleus increases in association with hyperphagia in streptozotocin-induced diabetes in rats. Endocrinology 131, 2979–2985.
  • Schwartz, H., Hernandez, L. and Hoebex, I.S.U. (1990) Tryptophan increases extracellular serotonin in the lateral hypothalamus of food deprived rats. Brain Res. Bull. 25, 803–807.
  • Schweiger, U., Broocks, A., Tuschl, R.J. and Pirke, K.M. (1989) Serotonin turnover in rat brain during semistarvation with high protein and high carbohydrate diets. J. Neural Transm. 77, 131–139.
  • Sharp, T., Bramwell, S.R. and Grahame-Smith, D.G. (1989) 5-HT-1 agonist reduce 5-hydroxytryptamine release in rat hippocampus in vivo as determined by brain microdialysis. Br. J. Pharmacol. 96, 283–290.
  • Shields, P.J. and Eccleston, D. (1972) Effects of electrical stimulation of rat midbrain on 5-hydroxytryptamine synthesis as determined by sensitive radio-isotope method. J. Neurochem. 19, 265–272.
  • Singh, V.B., Hao-Phan, T., Corley, K.C. and Boadle-Biber. (1992) Increase in cortical and midbrain tryptophan hydroxylase activity by intracerebroventricular administration of corticotropin releasing factor: block by adrenalectomy, by RU38486 and by bilateral lesions of the central nucleus of amygdala. Neurochem. Int. 20, 181–192.
  • Sipols, A.J., Baskin, D. J. G. and Schwartz, M.W. (1994) Effects of intracerebroventricular insulin infusion on diabetic hyperphagia and hypothalamic neuropeptide gene expression. Diabetes 44, 147–151.
  • Sugrue, M.F. (1987) Neuropharmacology of drugs affecting food intake. Pharmac. Ther. 32, 145–182.
  • Thibault, L. (1994) Dietary carbohydrates: effects on self selection, plasma glucose and insulin and brain indoleaminergic system. Appetite 23, 275–286.
  • Trulson, M.E., Jacoby, J.H. and Mackenzie, R.G. (1986) Streptozotocin-induced diabetes reduces brain serotonin synthesis in rats. J. Neurochem. 46, 1068–1072.
  • Woods, S.C., Seeley, R.J., Porte Jr, D. and Schwartz, M.W. (1998) Signals that regulate food intake and energy homeostasis. Science 28, 1378–1382.
  • Wurtman, R.J., O'Rourke, D. and Wurtman, J.J. (1989) Nutrient imbalances in depressive disorders: possible brain mechanisms. Ann. NY. Acad. Sci. 575, 75–82.
  • Young, J.B. and Landsberg, L. (1980) Impaired suppression of sympathetic activity during fasting in the gold thio-glucose treated mouse. J. Clin. Invest. 65, 1086–1094.

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