Artículos de revistas
Effects Of Taurine Supplementation Upon Food Intake And Central Insulin Signaling In Malnourished Mice Fed On A High-fat Diet
Registro en:
9781461460923
Advances In Experimental Medicine And Biology. , v. 776, n. , p. 93 - 103, 2013.
652598
10.1007/978-1-4614-6093-0-10
2-s2.0-84892904932
Autor
Camargo R.L.
Batista T.M.
Ribeiro R.A.
Velloso L.A.
Boschero A.C.
Carneiro E.M.
Institución
Resumen
Feeding behavior is a major determinant of body composition, adiposity, and glucose homeostasis. Both obesity and malnutrition are risk factors for the metabolic syndrome and are associated with altered food intake. Here we assessed the effects of taurine (TAU) supplementation upon adiposity, food intake, and central insulin signaling in malnourished mice fed on a high-fat diet (HFD). Weaned male C57BL/6 mice were fed a control (14% protein-C) or a protein-restricted (6% protein- R) diet. After 6 weeks, both groups received or not HFD for 8 weeks (CH and RH). Half of the HFD groups were supplemented with 5% TAU (CHT and RHT). Both HFD groups were overweight and showed increased perigonadal and retroperitoneal fat pads. TAU supplementation attenuated obesity in CHT but not in RHT mice. HFD induced hypercholesterolemia and glucose intolerance, although only CH group presented fasting hyperglycemia. TAU supplementation also improved glucose homeostasis only in CHT mice. Western blot analysis showed a reduction of 55% in CH hypothalamic content of phosphorylated IRS-1 (pIRS-1) at basal condition compared with C. TAU treatment increased 35% Akt phosphorylation levels in CHT without modification in RHT hypothalamus. However, TAU supplementation did not alter hypothalamic pIRS-1 amount. CH and RH mice presented increased calorie intake that was normalized in CHT but not in RHT. In conclusion, mice fed on an HFD developed obesity, hypercholesterolemia, glucose intolerance, and increased calorie intake. TAU promoted increased hypothalamic insulin action only in CH mice which was linked to prevention of overfeeding, obesity, and glucose intolerance. Protein-restriction promoted metabolic damages that were not prevented by TAU supplementation. © Springer Science+Business Media New York 2013. 776
93 103 Amaral, M.E., Barbuio, R., Milanski, M., Romanatto, T., Barbosa, H.C., Nadruz, W., Bertolo, M.B., Velloso, L.A., Tumor necrosis factor-alpha activates signal transduction in hypothalamus and modulates the expression of pro-inflammatory proteins and orexigenic/anorexigenic neurotransmitters (2006) J Neurochem, 98, pp. 203-212 Badman, M.K., Flier, J.S., The gut and energy balance: Visceral allies in the obesity wars (2005) Science, 307, pp. 1909-1914 Barker, D.J., Martyn, C.N., Osmond, C., Hales, C.N., Fall, C.H., Growth in utero and serum cholesterol concentrations in adult life (1993) BMJ, 307, pp. 1524-1527 Batista, T.M., Ribeiro, R.A., Amaral, A.G., De Oliveira, C.A., Boschero, A.C., Carneiro, E.M., Taurine supplementation restores glucose and carbachol-induced insulin secretion in islets from lowprotein diet rats: Involvement of Ach-M3R, Synt 1 and SNAP-25 proteins (2012) J Nutr Biochem, 23, pp. 306-312 Bence, K.K., Delibegovic, M., Xue, B., Gorgun, C.Z., Hotamisligil, G.S., Neel, B.G., Kahn, B.B., Neuronal PTP1B regulates body weight, adiposity and leptin action (2006) Nat Med, 12, pp. 917-924 Boujendar, S., Reusens, B., Merezak, S., Ahn, M.T., Arany, E., Hill, D., Remacle, C., Taurine supplementation to a low protein diet during foetal and early postnatal life restores a normal proliferation and apoptosis of rat pancreatic islets (2002) Diabetologia, 45, pp. 856-866 Carneiro, E.M., Latorraca, M.Q., Araujo, E., Beltra, M., Oliveras, M.J., Navarro, M., Berna, G., Martin, F., Taurine supplementation modulates glucose homeostasis and islet function (2009) J Nutr Biochem, 2008, pp. 1-9 De Souza, C.T., Araujo, E.P., Bordin, S., Ashimine, R., Zollner, R.L., Boschero, A.C., Saad, M.J., Velloso, L.A., Short-term inhibition of peroxisome proliferator-activated receptor-gamma coactivator- 1alpha expression reverses diet-induced diabetes mellitus and hepatic steatosis in mice (2005) Endocrinology, 146, pp. 4192-4199 El Idrissi, A., Boukarrou, L., L'Amoreaux, W.J., Taurine supplementation and pancreatic remodeling (2009) Adv Exp Med Biol, 643, pp. 353-358 Heilbronn, L.K., Ravussin, E., Calorie restriction and aging: Review of the literature and implications for studies in humans (2003) Am J Clin Nutr, 78, pp. 361-369 Kahn, S.E., Hull, R.L., Utzschneider, K.M., Mechanisms linking obesity to insulin resistance and type 2 diabetes (2006) Nature, 444, pp. 840-846 Kalbe, L., Leunda, A., Sparre, T., Meulemans, C., Ahn, M.T., Orntoft, T., Kruhoffer, M., Remacle, C., Nutritional regulation of proteases involved in fetal rat insulin secretion and islet cell proliferation (2005) Br J Nutr, 93, pp. 309-316 L'Amoreaux, W.J., Cuttitta, C., Santora, A., Blaize, J.F., Tachjadi, J., El Idrissi, A., Taurine regulates insulin release from pancreatic beta cell lines (2010) J Biomed Sci, 17 (SUPPL. 1), pp. S11. , 1-8 Maturo, J., Kulakowski, E.C., Taurine binding to the purified insulin receptor (1988) Biochem Pharmacol 1, 37 (19), pp. 3755-3760 Mollinedo, E.L., Millán, E.F., Santos, L.M., Honduvilla, C.J.M., Alvarez, C., Escrivá, F.J., Early undernutrition increases glycogen content and reduces the activated forms of GSK3, AMPK, p38 MAPK, and JNK in the cerebral cortex of suckling rats (2010) Neurochem, 112, pp. 123-133 Morrison, A.B., Campbell, J.A., Evaluation of protein in foods. V. Factors influencing the protein efficiency ratio offoods (1960) J Nutr, 70, pp. 112-118 Morton, G.J., Cummings, D.E., Baskin, D.G., Barsh, G.S., Schwartz, M.W., Central nervous system control offood intake and body weight (2006) Nature, 443, pp. 289-295 Nardelli, T.R., Ribeiro, R.A., Balbo, S.L., Vanzela, E.C., Carneiro, E.M., Boschero, A.C., Bonfleur, M.L., Taurine prevents fat deposition and ameliorates plasma lipid profile in monosodium glutamateobese rats (2011) Amino Acids Oct, 41 (4), pp. 901-908 Orozco-Solís, R., Matos, R.J., Guzmán-Quevedo, O., Lopes De Souza, S., Bihouée, A., Houlgatte, R., Manhães De Castro, R., Bolaños-Jiménez, F., Nutritional programming in the rat is linked to long-lasting changes in nutrient sensing and energy homeostasis in the hypothalamus (2010) PLoS One, 5 (10), pp. e13537 Petry, C.J., Dorling, M.W., Pawlak, D.B., Ozanne, S.E., Hales, C.N., Diabetes in old male offspring of rat dams fed a reduced protein diet (2001) Int J Exp Diabetes Res, 2, pp. 139-143 Pirola, L., Johnston, A.M., Van Obberghen, E., Modulation of insulin action (2004) Diabetologia, 47, pp. 170-184 Plum, L., Belgardt, B.F., Bruüning, J.C., Central insulin action in energy and glucose homeostasis (2006) J Clin Invest, 116, pp. 1761-1766 Ribeiro, R.A., Batista, T.M., Coelho, F.M., Boschero, A.C., Lopes, G.S., Carneiro, E.M., Decreased beta-cell insulin secretory function in aged rats due to impaired Ca2+ handling (2012) Exp Physiol, 97 (9), pp. 1065-1073 Romanatto, T., Cesquini, M., Amaral, M.E., Roman, E.A., Moraes, J.C., Torsoni, M.A., Cruz-Neto, A.P., Velloso, L.A., TNF-alpha acts in the hypothalamus inhibiting food intake and increasing the respiratory quotient-effects on leptin and insulin signaling pathways (2007) Peptides, 28, pp. 1050-1058 Schwartz Jr., M.W., Porte, D., Diabetes, obesity, and the brain (2005) Science, 307, pp. 375-379 Schwartz, M.W., Woods, S.C., Porte Jr., D., Seeley, R.J., Baskin, D.G., Central nervous system control offood intake (2000) Nature, 404, pp. 661-671 Snoeck, A., Remacle, C., Reusens, B., Hoet, J.J., Effect of a low protein diet during pregnancy on the fetal rat endocrine pancreas (1990) Biol Neonate, 57, pp. 107-118 Solon, C., Franci, D., Souza, L.M.I., Romanatto, T., Roman, E.R., Arruda, A., Torsoni, A., Velloso, L., Taurine enhances the anorexigenic effects of insulin in the hypothalamus of rats (2012) Amino Acids, 42 (6), pp. 2403-2410 Tsai, W.C., Bhattacharyya, N., Han, L.Y., Hanover, J.A., Rechler, M.M., Insulin inhibition of transcription stimulated by the forkhead protein Foxo1 is not solely due to nuclear exclusion (2003) Endocrinology, 144, pp. 5615-5622 Tsuboyama-Kasaoka, N., Shozawa, C., Sano, K., Kamei, Y., Kasaoka, S., Hosokawa, Y., Ezaki, O., Taurine (2-aminoethanesulfonic acid) deficiency creates a vicious circle promoting obesity (2006) Endocrinology, 147, pp. 3276-3284 Zabolotny, J.M., Kim, Y.B., Welsh, L.A., Kershaw, E.E., Neel, B.G., Kahn, B.B., Protein-tyrosine phosphatase 1B expression is induced by inflammation in vivo (2008) J Biol Chem, 283, pp. 14230-14241