Page 148 - BUAP - Facultad de Medicina - Epigenética en las patologías
P. 148
ment of metabolic syndrome. The Journal of Nutritional Biochemistry. 27.
pp. 1-8.
73 Jiménez-Chillarón JC, Nijland MJ, Ascensão AA, Sardão VA, Magalhães J,
Hitchler MJ, et al. (2015). Back to the future: transgenerational transmis-
sion of xenobiotic-induced epigenetic remodeling. Epigenetics. 10 (4). pp.
259-273.
74 Jin J, Hong I-H, Lewis K, Iakova P, Breaux M, Jiang Y, et al. (2015). Cooper-
ation of C/EBP family proteins and chromatin remodeling proteins is es-
sential for termination of liver regeneration. Hepatology. 61 (1). pp. 315-
325.
75 Junien C. (2006). Impact of diets and nutrients/drugs on early epigenetic
programming. Journal of Inherited Metabolic Disease. 29 (2-3). pp. 359-
365.
76 Juvenal G. (2014). Epigenética: vieja palabra, nuevos conceptos. Revista
Argentina Endocrinología y Metabolismo. 51 (2). pp. 66-74.
77 Kathlenn, L, Escott, S & Janice, L. (2009). Krause Dietoterapia. (pp. 766-
784). 12 ª edición. España: Elsevier.
78 Kaufman-Szymczyk A, Majewski G, Lubecka-Pietruszewska K, Fabianows-
ka-Majewska K. (2015). The Role of Sulforaphane in Epigenetic Mecha-
nisms, Including Interdependence between Histone Modification and DNA
Methylation. International Journal of Molecular Sciences. 16 (12). pp.
29732-29743.
79 Keating ST, El-Osta A. (2015). Epigenetics and metabolism. Circulation re-
search. 116 (4). pp. 715-736.
80 Lee H-S. (2015). Impact of Maternal Diet on the Epigenome during In
Utero Life and the Developmental Programming of Diseases in Childhood
and Adulthood. Nutrients. 7 (12). pp. 9492-9507.
81 Li Y, Saldanha SN, Tollefsbol TO. (2014). Impact of Epigenetic Dietary
Compounds on Transgenerational Prevention of Human Diseases. The
AAPS Journal. 16 (1). pp. 27-36.
147