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FASEB J 20, 1257–1259 49. , Matthews, P. , Christie, M. , McConnell, J. , Jansen, E. H. J. , Piersma, A. , Ozanne, S. , Twinn, D. , and Taylor, P. D. (2008). Dietinduced obesity in female mice leads to offspring hyperphagia, adiposity, hypertension, and insulin resistance: a novel murine model of developmental programming. Hypertension 51, 383–392 50. , Pandya, J. , Hill, D. , and Patel, M. S. (2006). Maternal hyperinsulinemia predisposes rat fetuses for hyperinsuline- 36 51. 52. 53. 54. 55. 56.
Maternal hyperinsulinemia predisposes rat fetuses for hyperinsuline- 36 51. 52. 53. 54. 55. 56. 57. 58. 59. Mühlhausler mia, and adult-onset obesity and maternal mild food restriction reverses this phenotype. Am J Physiol Endocrinol Metab 290, E129–E134 Cerf, M. , Chapman, C. , and Louw, J. (2007). Compromised betacell development and beta-cell dysfunction in weanling offspring from dams maintained on a high-fat diet during gestation. Pancreas 34, 347–353 Muhlhausler, B. , Roberts, C. , McFarlane, J.
And Bleker, O. P. (1998). Glucose tolerance in adults after prenatal exposure to famine. Lancet 351, 173–177 28. Pettit, D. J. and Knowler, W. C. (1998). Long-term effects of the intrauterine environment, birth weight, and breast-feeding in Pima Indians. Diabetes Care 21, B138–B141 29. Ozanne, S. E. (2001). Metabolic programming in animals: Type 2 diabetes. Br Med Bull 60, 143–152 30. Armitage, J. , Khan, I. , Taylor, P. , Nathanielsz, P. , and Poston, L. (2004), Developmental programming of the metabolic syndrome by maternal nutritional imbalance: how strong is the evidence from experimental Nutritional Models of Type 2 Diabetes Mellitus 31.