Artículos de revistas
Hipothalamy-pituitary Axis: Effects Of Physical Training In Rats Administered With Dexamethasone [eje Hipotálamo-pituitario: Efectos Del Entrenamiento Físico En Ratas Wistar Con Administración De Dexametasona]
Registro en:
Revista De Neurologia. , v. 42, n. 6, p. 325 - 331, 2006.
2100010
2-s2.0-33749170808
Autor
Pauli J.R.
Gomes R.J.
Luciano E.
Institución
Resumen
Aim. To investigate the effects of physical training associated to dexamethasone administration in carbohydrate metabolism and adrenocorticotrophic hormone (ACTH) release. Materials and methods. Young Wistar rats were divided into four groups: sedentary control (CS), sedentary dexamethasone (DxS), trained control (CT) and trained dexamethasone (DxT). The rats were submitted to swimming training associate to administration of dexamethasone for ten weekends. Before sacrifice the rats received subcutaneous insulin to calculate the maximum decreased in blood glucose. Venous blood was sampled obtained at the end experiment period to determine glucose, insulin, free fatty acids (FFA) and ACTH. Gastrocnemius and liver tissue samples were used to determination glycogen, and adipose epididimal tissue was used to measured the weight. Results. Dexamethasone administration provoke insulin resistance and the physical training reverted this aspect. Training promoted increase in muscle and liver glycogen store and a high utilization of FFA. Moreover, the dexamethasone provoke decreased of ACTH release in response to acute exercise, showing marked differences in the functioning of the hypothalamy-pituitary-adrenal (HPA) axis between groups of rats. Conclusions. a) Low-dose of dexamethasone promote several side effects in metabolism intermediary and chronic exposure to steroid was associated with insulin resistance; b) The regular swimming exercise promoted increased insulin sensitivity. Therefore, exercise can override the dexametasone negative feedback of the HPA axis activation in rats. © 2006, Revista de Neurología. 42 6 325 331 Dallman, M.F., Stress update: Adaptation of hipothalamic-pituitary-adrenal axis to chronic stress (1993) Trends Endocrinol Metab, 4, pp. 62-69 Singh, A., Zelazowska, E.B., Petrides, J.S., Raybourne, R.B., Sternberg, E.M., Gold, P.W., Lymphocyte subset responses to exercise and glucocorticoid suppression in healthy men (1996) Med Sci Sports Exerc, 28, pp. 822-828 Lipworth, B.J., Systemic adverse effects of inhaled corticosteroid therapy: A systematic review and meta-analysis (1999) Arch Intern Med, 159, pp. 941-955 Lima, J.G., Nobrega, L.H.C., Nobrega, M.L.C., Rodrigues Jr, A.B., Pereira, A.F.F., Supressão hipotálomo-hipófise-adrenal e risco de insuficiência adrenal secundária devido ao uso de dexametasona nasal (2002) Arq Bras Endocrinol Metabol, 46, pp. 193-196 Visser, M.J., Van der Veer, E., Postma, D.S., Arends, L.R., De Vries, T.W., Brand, P.L., Side-effects of fluticasone in asthmatic children: No effects after dose reduction (2004) Eur Respir J, 24, pp. 420-425 Stewart, P.M., The adrenal cortex (2002) Williams textbook of endocrinology, pp. 491-551. , Wilson JD, Foster DW, eds, Philadelphia: WB Saunders; Severino, C., Brizzi, P., Solinas, A., Secchi, G., Maioli, M., Tonolo, G., Low-dose dexamethasone in the rat: A model to study insulin resistance (2002) Am J Physiol Endocrinol Metab, 283, pp. E367-E373 Yamauchi, T., Harada, T., Kurono, M., Matsuni, N., Effect of exercise-induced acidosis on aldosterone secretion in men (1998) Eur J Appl Physiol Occup Physiol, 77, pp. 409-412 Tomas, F.M., Effect of corticosterone on myofibrillar protein turnover in diabetic rats as assessed by Ntau-methylhistidine excretion (1982) Biochem J, 208, pp. 593-601 Mathews, J.N., Altman, D.G., Campbell, M.J., Royston, P., Analysis of serial measurements in medical research (1990) BMJ, 27, pp. 230-235 Nogueira, D.M., Strufaldi, B., Hirata, M.H., Abdalla, D.S.P., Hirata, R.D.C., Métodos de availação da glicose e ácidos graxos livres (1990) Métodos de bioquímica clínica, pp. 117-123. , Nogueira DM, Strufaldi B, Hirata MH, Abdalla DSP, Hirata RDC, eds, São Paulo: Pancasat; Herbert, V., Lau, K.S., Gottlieb, C.W., Bleicher, S.J., Coated charcoal immunoassay of insulin (1967) J Clin Endocrinol Metab, 25, pp. 1375-1384 Dubois, B., Gilles, K.A., Hamilton, J.K., Rebers, P.A., Colorimetric method for determination of sugar and related substances (1956) Anal Chem, 28, pp. 350-356 Francischi, R.P., Pereira, L.O., Lancha Júnior, A.H., Exercício, comportamento alimentar e obesidade: Revisão dos efeitos sobre a composição corporal e parâmetros metabólicos (2001) Rev Paul Educ Fis, 15, pp. 117-140 Baker, C.W., Brownell, K.D., Atividade física e manutenção da perda de peso: Mecanismos fisiológicos e psicológicos (2002) Atividade física e obesidade, pp. 359-381. , Bouchard C, ed, São Paulo: Manole; Ciolac, E.M., Guimarães, G.V., Exercício físico e síndrome metabólica (2004) Rev Bras Med Esporte, 10, pp. 319-324 Mensink, M., Blaak, E.E., Vidal, H., De Bruin, T.W., Glatz, J.F., Saris, W.H., Lifestyle changes and lipid metabolism gene expression and protein content in skeletal muscle of subjects with impaired glucose tolerance (2003) Diabetologia, 46, pp. 1082-1089 Luciano, E., Carneiro, E.M., Carvalho, C.R., Carvalheira, J.B., Peres, S.B., Reis, M.A., Endurance training improves responsiveness to insulin and modulates insulin signal transduction through the phosphatidylinositol 3-kinase/Akt-1 pathway (2002) Eur J Endocrinol, 147, pp. 149-157 Christ-Roberts, C.Y., Pratipanawatr, T., Pratipanawatr, W., Berria, R., Belfort, R., Mandarino, L.J., Increased insulin receptor signaling and glycogen synthase activity contribute to the synergistic effect of exercise on insulin action (2003) J Appl Physiol, 95, pp. 2519-2529 Houmard, J.A., Tanner, C.J., Slentz, C.A., Duscha, B.D., Mccartney, J.S., Kraus, W.E., Effect of the volume and intensity of exercise training on insulin sensitivity (2004) J Appl Physiol, 96, pp. 101-106 Flora Filho R, Zilberstein B. Óxido nítrico: o simples mensageiro percorrendo a complexidade. Metabolismo, síntese e funções. Rev Assoc Med Brasil 2000 46: 265-271Viaro, F., Nobre, F., Evora, P.R., Expressão das óxido nítrico sintetases na fisiopatologia das doenças cardiovasculares (2000) Arq Bras Cardiol, 74, pp. 365-379 Shen, W., Zhang, X., Wolin, M.S., Sessa, W., Hintze, T.H., Nitric oxide production and NO synthase gene expression contribute to vascular regulation during exercise (1995) Med Sci Sports Exerc, 8, pp. 1125-1134 Kingwell, B.A., Nitric oxide-mediated metabolic regulation during exercise: Effects of training in health and cardiovascular disease (2000) FASEB J, 14, pp. 1685-1696 Tanabe, T., Maeda, S., Miyauchi, T., Iemitsu, M., Takanashi, M., Irukayama-Tomobe, Y., Exercise training improves ageing-induced decreased in eNOS expression of the aorta (2003) Acta Physiol Scand, 178, pp. 3-10 Stojanovska, L., Rosella, G., Proietto, J., Evolution of dexamethasone-induced insulin resistance in rats (1990) Am J Physiol, 258, pp. E748-E756 Coderre, L., Srivastava, A.K., Chiasson, J.L., Effect of hypercorticism on regulation of skeletal muscle glycogen metabolism by insulin (1992) Am J Physiol, 262, pp. E427-E433 Tounian, P., Schneiter, P., Henry, S., Delarue, J., Tappy, L., Effects of dexamethasone on hepatic glucose production and fructose metabolism in healthy humans (1997) Am J Physiol, 273, pp. E315-E320 Kalhan, S.C., Adam, P.A., Inhibitory effect of prednisone on insulin secretion in man: Model for duplication of blood glucose concentration (1975) J Clin Endocrinol Metab, 41, pp. 600-610 Dinneen, S., Alzaid, A., Miles, J., Rizza, R., Metabolic effects of the nocturnal rise in cortisol on carbohydrate metabolism in normal humans (1993) J Clin Invest, 92, pp. 2283-2290 Longano, C.A., Fletcher, H.P., Insulin release after acute hydrocortisone treatment in mice (1983) Metabolism, 32, pp. 603-608 Fisher, B., Rausch, U., Wollny, P., Westphal, H., Seitz, J., Aumüller, G., Immunohistochemical localization of the glucocorticoid receptor in pancreatic b-cell of the rat (1990) Endocrinology, 126, pp. 2635-2641 Plat, L., Byrne, M.M., Sturis, J., Polonsky, K.S., Mockel, J., Féry, F., Effects of morning cortisol elevation on insulin secretion and glucose regulation in humans (1996) Am J Physiol, 270, pp. E36-E42 Hochberg, Z., Pacak, K., Chrousos, G.P., Endocrine withdrawal syndromes (2003) Endocr Rev, 24, pp. 523-538 Henquin, J.C., Gilon, P., Lambillotte, C., Direct glucocorticoid inhibition of insulin secretion (1997) J Clin Invest, 3, pp. 414-423 Jones, C.G., Hothi, S.K., Titheradge, M.A., Effect of dexamethasone on gluconeogenesis pyruvate kinase, pyruvate carboxylase and pyruvate dehydrogenase flux in isolated hepatocytes (1993) Biochem J, 289, pp. 821-828 Poland, J.L., Poland, J.W., Honey, R.N., Differential response of rat cardiac and skeletal muscle glycogen to glucocorticoids (1982) Can J Physiol Pharmacol, 60, pp. 634-637 Carvalho, C.R., Saad, M.J., Resistência à insulina induzida por glicocorticóides: Investigação de mecanismos moleculares (1998) Arq Bras Endocrinol Metabol, 42, pp. 13-21 Allan, E.H., Titheradge, M.A., Effect of treatment of rats with dexamethasone in vivo on gluconeogenesis and metabolite compartmentation in subsequently isolated hepatocytes (1984) Biochem J, 219, pp. 117-123 Argaud, D., Zhang, Q., Pan, W., Maitra, S., Pilkis, S.J., Lange, A.J., Regulation of rat liver glucose-6-phosphatase gene expression in different nutritional and hormonal states: Gene structure and 5′-flanking sequence (1996) Diabetes, 45, pp. 1563-1571 Friedman, J.E., Yun, J.S., Patel, Y.M., Mcgrane, M.M., Hanson, R.W., Glucocorticoid regulate the induction of phosphoenolpyruvate carboxykinase (GTP) gene trascription during diabetes (1993) J Biol Chem, 268, pp. 12952-12957 Tabata, I., Atomi, Y., Mutoh, Y., Miyashita, M., Effect of physical training on the responses of serum adrenocorticotropic hormone during prolonged exhausting exercise (1990) Eur J Appl Physiol Occup Physiol, 61, pp. 188-192 Heitkamp, H.C., Schultz, H., Röcker, K., Dickhuth, H.H., Endurance training in females: Changes in ?-endorphin and ACTH (1998) Int J Sports Med, 19, pp. 260-264 Viru, M., Litvinova, L., Smirnova, T., Viru, A., Glucocorticoids in metabolic control during exercise: Glycogen metabolism (1994) J Sports Med Phys Fitness, 34, pp. 377-382 Deuster, P.A., Petrides, J.S., Singh, A., Lucci, E.B., Chrousos, G.P., Gold, P.W., High intensity exercise promotes escape of adrenocorticotropin and cortisol from suppression by dexamethasone: Sexually dimorphic responses (1998) J Clin Endocrinol Metab, 83, pp. 3332-3338 Lac, G., Marquet, P., Chassain, A.P., Galen, F.X., Dexamethasone in resting and exercising men. II. Effects on adrenocortical hormones (1999) J Appl Physiol, 87, pp. 183-188 Petrides, J.S., Mueller, G.P., Kalogeras, K.T., Chrousos, G.P., Gold, P.W., Deuster, P.A., Exercise-induced activation of the hypothalamic-pituitary-adrenal axis: Marked differences in the sensitivity to glucocorticoid suppression (1994) J Clin Endocrinol Metab, 79, pp. 377-383 Petrides, J.S., Gold, P.W., Mueller, G.P., Singh, A., Stratakis, C., Chrousos, G.P., Marked differences in functioning of the hypothalamic-pituitary-adrenal axis between groups of men (1997) J Appl Physiol, 82, pp. 1979-1988 Inder, W.J., Hellemans, J., Swanney, M., Prickett, T.C., Donald, R.A., Prolonged exercise increases peripheral plasma ACTH, CRH, and AVP in male athletes (1998) J Appl Physiol, 85, pp. 835-841 Martignoni, E., Appenzeller, O., Nappi, R.E., Sances, G., Costa, A., Nappi, G., The effects of physical exercise at high altitude on adrenocortical function in humans (1997) Funct Neurol, 12, pp. 339-344