Efecto del all-trans ácido retinoico en la producción de citocinas por células mononucleares de sangre periférica
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https://doi.org/10.17533/udea.penh.9567Palabras clave:
ácido retinoico, citocinas, desnutrición proteico-calórica, proteína C-reactiva, niñosResumen
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Quintero M. En los últimos 5 años el país ha mejorado sus indicadores en mortalidad infantil. Bogotá: UNICEF; 2007 [citado julio de 2009]. Disponible en: http://www.unicef.org/colombia/newsletter/septiembre-07/pop-news-septiembre-07-04.htm.
Programa de las Naciones Unidas para el Desarrollo. Objetivos de desarrollo del Milenio (ODM). Nueva York; 2009. [citado julio de 2009]. Disponible en: http://www.undp.org/spanish/mdg/basics.shtml.
Cunningham-Rundles S, McNeeley D, Moon A. Mechanism of nutrient modulation of the immune response. J Allergy Clin Immunol. 2005;115:1119-28.
Iwata M. Retinoic acid production by intestinal dendritic cells and its role in T-cell trafficking. Seminars Immunol. 2009;21:8-13.
Chen Q, Ross AC. Retinoic acid regulates cell cycle progression and cell differentiation in human monocytic THP-1 cells. Exp Cell Res. 2004;297:68-81.
Engedal N, Ertesvag A, Blomhoff HK. Survival of activated human T lymphocytes is promoted by retinoic acid via induction of IL-2. Int Immunol. 2004;16:443-53.
Balmer JE, Blomhoff R. Gene expression regulation by retinoic acid. J Lipid Res. 2002;43:1773-808.
Wang X, Allen Ch, Ballow M. Retinoic acid enhances the production of IL-10 while reducing the synthesis of IL-12 and TNF-α from LPS-Stimulated Monocytes/Macrophages. J Clin Immunol. 2007;27:193-200.
Grimble R. Basics in clinical nutrition: main cytokines and their effect during injury and sepsis. e-SPEN: Eur J Clin Nutr Metabol. 2008;3:289-92.
Lin E, Kotani J, Lowry S. Nutritional modulation of immunity and the inflammatory response. Nutrition. 1998;14:545-50.
Ross AC, Chen Q, Mab Y. Augmentation of antibody responses by retinoic acid and costimulatory molecules. Seminars Immunol. 2009;21:42-50.
Mataix VJ, Ochoa HJ. Vitaminas. En: nutrición y alimentación humana. Barcelona: Océano Ergon; 2005. vol. 1, p. 175-84.
Ross AC. Vitamin A and carotenoids. En: Modern nutrition in health and disease. 10 ed. Philadelphia: Lippincott Williams & Wilkins; 2006. p. 351-75.
Sánchez-Álvarez V. Inmunocompetencia en la malnutrición proteico energética. Rev Cubana Aliment Nutr. 1999;13:129-36.
Beisel W. Nutrition and immune function: overview. J Nutr. 1996;126:2611-5.
WHO. Global prevalence of vitamin A deficiency in populations at risk: 1995-2005. Geneva; 2009 [citado julio de 2009]. Disponible en http://www.who.int/vmnis/vitamina/en/
Amesty-Valbuena A, Pereira N, Castillo J, Garcia D, Nuñez J, Cayama N, et al. Mediadores de inflamación (Proteina C Reactiva) en el niño con desnutrición proteica energética y en el niño eutrófico. Invest Clin. 2004;45:53-62.
Ashworth A, Khanum S, Jackson A, Hfield C. Directrices para el tratamiento hospitalario de los niños con malnutrición grave. Ginebra: OMS; 2005. [citado junio de 2009]. Disponible en: http://publications.paho.org/product.php?productid=826&cat=0&page=1
Bernal C, Velásquez C, Alcaraz G, Botero J. Treatment of severe malnutrition in children: experience in implementing the World Health Organization Guidelines in Turbo, Colombia. J Pediatr Gastroenterol Nutr. 2008;46:322-8.
Dawson HD, Collins G, Pyle R, Key M, Weeraratna A, Deep-Dixit V, et al. Direct and indirect effects of retinoic acid on human Th2 cytokine and chemokine expression by human T lymphocytes. BMC Immunol. 2006;7:27.
Stephensen CB, Jiang X, Freytag T. Vitamin A deficiency increases the in vivo development of IL-10-positive Th2 cells and decreases development of Th1 cells in mice. J Nutr. 2004;134:2660-6.
Iwata M, Eshima Y, Kagechika H. Retinoic acids exert direct effects on T cells to suppress Th1 development and enhance Th2 development via retinoic acid receptors. Int Immunol. 2003;15:1017-25.
Hoag KA, Nashold FE, Goverman J, Hayes CE. Retinoic acid enhances the T helper 2 cell development that is essential for robust antibody responses through its action on antigen-presenting cells. J Nutr. 2002;132:3736-9.
Sauerwein R, Mulder J, Mulder L, Lowe B, Peshu N, Demacker P, et al. Inflammatory mediators in children with protein-energy malnutrition. Am J Clin Nutr. 1997;65:1534-9.
Abo-Shousha S, Hussein M, Rashwan I, Salama M. Production of proinflammatory cytokines: granulocyte-macrophage colony stimulating factor, interleukin-8 and interleukin-6 by peripheral blood mononuclear cells of protein energy malnourished children. Egypt J Immunol. 2005;12:125-31.
Giovvambattista A, Spinedi E, Sanjurio A, Chisari A, Rodrigo M, Perez N. Circulating and mitogeninduced en tumor necrosis factor (TNF) in malnourished children. Medicina (B Aires). 2000;60:339-42.
Rodríguez L, González C, Flórez L, Jiménez-Zamudio L, Graniel J, Ortiz R. Assessment by flow cytometry of cytokine production in malnourished children. Clin Diagn Lab Immunol. 2005;12:502-7.
Dulger H, Arik M, Sekeroglu M, Tarakcioglu M, Novan T, Cesur Y, et al. Pro-inflammatory cytokines in Turkish children with protein-energy malnutrition. Mediators Inflamm. 2002;11:363-5.
Azevedo Z, Victal L, Fonseca K, Camara F, Haeffner-Cavaillon N, et al. Increased production of tumor necrosis factor-α in whole blood cultures from children whit primary malnutrition. Braz J Med Biol Res. 2005;38:171-83.
Velásquez C, Navarro C, González A. Respuesta inflamatoria en niños con desnutrición aguda grave y anemia. Perspect Nutr Humana. 2008;10:131-41.
Thompson C, Powrie F. Regulatory T cells. Curr Opinion Pharmacol. 2004;4:408-14.
Hamil PVV, Drizid TA, Johnson CL, Reed RB, Roche AF, Moore WM. Physical growth: National Center for Health Statistics percentiles. Am J Clin Nutr. 1979;32:607-29.
Gordo CC, Cameron W, Roche A. Stature, recumbent length, and weight. In: Lohman T, Roche A, Martorell R. Anthropometric standarization reference manual. Champaign: Human Kinetics Book; 1988. p. 3-8.
UNICEF, UNU, WHO. Methods of assessing iron status. In: Iron deficiency anaemia. Assessment, prevention, and control. A guide for programme managers. Washington: WHO; 2001. p. 33-45.
Ángel Mejía, G. Diccionario de laboratorio aplicado a la clínica. 2 ed. Bogotá: Editorial Médica Panamericana; 2000.
Strober W. Immunologic studies in humans. Isolation of whole mononuclear cells from peripheral blood and cord blood. In: Current protocols. New York: Wiley and Sons; 2006.
Lofty OA, Saleh WA, el-Barbari M. A study of some changes of cell-mediated immunity in protein energy malnutrition. J Egypt Soc Parasitol. 1998;28:413-28.
Reid M, Badaloo A, Forrester T, Morlese JF, Heird WC, Jahoor F. The acute-phase protein response to infection in edematous and nonedematous protein-energy malnutrition. Am J Clin Nutr. 2002;76:1409-15.
Manary MJ, Broadhead, RL, Yarasheski KE. Whole-body protein kinetics in marasmus and kwashiorkor during acute infection. Am J Clin Nutr. 1998;67:1205-9.
O’Brien-Ladner AR, Nelson SR, Murphy WJ, Blumer BM, Wesselius LJ. Iron is a regulatory component of human IL-1β production. Support for regional variability in the lung. Am J Respir Cell Mol Biol. 2000;23:112-9.
Bergman M, Bessler H, Salmana H, Siomin D, Straussberg R, Djaldetti M. In vitro cytokine production in patients with iron deficiency anemia. Clin Immunol. 2004;113:340-4.
Jason J, Archibald LK, Nwanyahwu OC, Jensen RJ, Gunter E, Buchanan I, et al. The effect of iron deficiency on lymphocyte cytokine production and activation: preservation of hepatic iron but not at all cost. Clin Exp Immunol. 2001;126:466-73.
Walter T, Olivares M, Pizarro F, Muñoz C. Iron, anemia, and infection. Nutr Rev. 1997;55:111-24.
Chandra R. Protein energy malnutrition and immunological responses. J Nutr. 1992;122:597-600.
Woodward B. The effect of protein-energy malnutrition on immune competente. In: Nutrition, immunity, and infection in infants and children. Nestle Nutr Workshop Ser Pediatr Program. 2001;45:89-120.
Bhaskaram P, Swakumar B. Interleukin 1 in malnutrition. Arch Dis Child. 1986;61:182-5.
Aslan Y, Erduran E, Gedik Y, Mocan H, Okten A, Orem A, et al. FERUM: interleukin-1 and granulocyte-macrophage colonystimulating factor levels in protein malnourished patients during acute infection. Cent Afr J Med. 1996;42:179-84.
Muñoz C, Arévalo, M, López M, Schlesinger L. Impaired interleukin 1 and tumor necrosis factor production in protein caloric malnutrition?. Nutr Res. 1994;14:347-52.
Murphy K, Travers P, Walport Mark. Inmunobiología de Janeway. 7 ed. México: Mc Graw Hill; 2009.
Marik P, Varon J. Sepsis: state of the art. Dis Month. 2001;47:463-532.
Rodríguez JM, Sanguineti AC y Vergara G, Citoquinas y piel (Parte I): inmunodermatología. Folia Dermatol Peruana. 1995 [citado marzo de 2010];6:3. Disponible en: http://sisbib.unmsm.edu.pe/BVrevistas/folia/Vol6_N3/citoquinas.htm.
Shimizu T, Esaki L, Mizuno H, Takeda K. Granulocyte macrophage colony stimulating factor enhances retinoic acid-induced gene expression. J Leukoc Biol. 2006;80:889-96.
McGrane M. Vitamin A regulation of gene expression: molecular mechanism of a prototype gene. J Nutr Biochem. 2007;18:497-508.
Velásquez C. Modulación de la expresión génica por vitaminas liposolubles. Perspect Nutr Humana. 2006;16:44-52.
Dawson HD, Collins G, Pyle R, Key M, Taub D. The retinoic acid receptor-α mediates human T-cell activation and Th2 cytokine and chemokine production. BMC Immunol. 2008;9:16.
Trinchieri G. Cytokines acting on or secreted by macrophages during intracellular infection (IL-10, IL-12, IFN-γ). Curr Opinion Immunol. 1997;9:17-93.
Chandra RK, Nutrition and the immune system: an introduction. Am J Clin Nutr. 1997;66:460S-3S.
Scrimshaw NS, SanGiovanni JP. Synergism of nutrition, infection, and immunity: an overview. Am J Clin Nutr. 1997;66:464-77S.
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