Hostname: page-component-78c5997874-ndw9j Total loading time: 0 Render date: 2024-11-13T01:01:26.869Z Has data issue: false hasContentIssue false

Influence of the weaning diet on the changes of glucose metabolism and of insulin sensitivity

Published online by Cambridge University Press:  28 February 2007

Jean Girard
Affiliation:
Centre de Recherche sur l'Endocrinologie Moléculaire et le Développement, CNRS, 9 rue Jules Hetzel, 92190 Meudon-Bellevue, France
Tarik Issad
Affiliation:
Unité 342 INSERM, Hôpital Saint Vincent de Paul, 75014 Paris, France
Jocelyne Maury
Affiliation:
Centre de Recherche sur l'Endocrinologie Moléculaire et le Développement, CNRS, 9 rue Jules Hetzel, 92190 Meudon-Bellevue, France
Fabienne Foufelle
Affiliation:
Unité 342 INSERM, Hôpital Saint Vincent de Paul, 75014 Paris, France
Catherine Postic
Affiliation:
Centre de Recherche sur l'Endocrinologie Moléculaire et le Développement, CNRS, 9 rue Jules Hetzel, 92190 Meudon-Bellevue, France
Armelle Leturque
Affiliation:
Centre de Recherche sur l'Endocrinologie Moléculaire et le Développement, CNRS, 9 rue Jules Hetzel, 92190 Meudon-Bellevue, France
Pascal Ferre
Affiliation:
Unité 342 INSERM, Hôpital Saint Vincent de Paul, 75014 Paris, France
Rights & Permissions [Opens in a new window]

Abstract

Image of the first page of this content. For PDF version, please use the ‘Save PDF’ preceeding this image.'
Type
Symposium on ‘The digestive tract in nutritional adaptation’
Copyright
Copyright © The Nutrition Society 1993

References

REFERENCES

Alexandrides, T., Moses, A. C. & Smith, R. J. (1989). Developmental expression of receptors for insulin, insulin-like growth factor I (IGF-I), and IGF-II in rat skeletal muscle. Endocrinology 124, 10641076.CrossRefGoogle ScholarPubMed
Beaudry, M. A., Chiasson, J. L. & Exton, J. H. (1977). Gluconeogenesis in suckling rat. American Journal of Physiology 233, E175E180.Google ScholarPubMed
Blazquez, E., Rubalcava, B., Montesano, R., Orci, L. & Unger, R. H. (1976). Development of insulin and glucagon binding and the adenylate cyclase response in liver membranes of the prenatal, postnatal and adult rat: evidence of glucagon ‘resistance’. Endocrinology 98, 10141023.CrossRefGoogle ScholarPubMed
Chiasson, J. L., Liljenquist, J. E., Finger, F. E. & Lacy, W. W. (1976). Differential sensitivity of glycogenolysis and gluconeogenesis to insulin infusions in dogs. Diabetes 25, 283291.CrossRefGoogle ScholarPubMed
Clarke, S. D., Armstrong, M. K. & Jump, D. B. (1990). Dietary polyunsaturated fats uniquely suppress rat liver fatty acid synthase and S14 messenger RNA content. Journal of Nutrition 120, 225231.CrossRefGoogle Scholar
Coupé, C., Perdereau, D., Ferré, P., Hitier, Y., Narkewicz, M. & Girard, J. (1990). Lipogenic enzyme activities and mRNA in rat adipose tissue during weaning: role of the diet. American Journal of Physiology 258, E126E133.Google Scholar
Decaux, J. F., Ferré, P. & Girard, J. (1986). Effect of weaning on different diet on hepatic gluconeogenesis in the rat. Biology of the Neonate 51, 331336.CrossRefGoogle Scholar
Ferré, P., Pégorier, J. P. & Girard, J. (1977). The effects of inhibition of gluconeogenesis in suckling newborn rats. Biochemical Journal 162, 209212.CrossRefGoogle ScholarPubMed
Ferré, P., Turlan, P., & Girard, J. (1985). Effects of medium chain triglyceride feeding or glucose infusion on glucose kinetics in the newborn rat. Journal of Developmental Physiology 7, 3746.Google ScholarPubMed
Foufelle, F., Gouhot, B., Pégorier, J. P., Perdereau, D., Girard, J. & Ferré, P. (1992). Glucose stimulation of lipogenic enzyme gene expression in cultural white adipose tissue. A role for glucose-6-phosphate. Journal of Biological Chemistry 267, 2054320546.CrossRefGoogle ScholarPubMed
Gandemer, G., Pascal, G. & Durand, G. (1982). In vivo changes in the rates of total lipid and fatty acid synthesis in liver and white adipose tissues of male rats during post-weaning growth. International Journal of Biochemistry 14, 797804.CrossRefGoogle Scholar
Girard, J. R., Ferré, P., Kervran, A., Pégorier, J. P. & Assan, R. (1977). In Glucagon: Its Role in Physiology and Clinical Medicine, pp. 563581 [Foa, P. P., Bajaj, J. S. and Foa, N. L., editors]. New York: Springer-Verlag.CrossRefGoogle Scholar
Girard, J. R., Ferré, P., Pégorier, J. P. & Duée, P. H. (1992). Adaptations of glucose and fatty acid metabolism during perinatal period and suckling-weaning transition. Physiological Reviews 72, 507562.CrossRefGoogle ScholarPubMed
Hahn, P. (1970). Fatty-acid synthesis in brown and white adipose tissue and liver of the rat during development. Physiological Bohemoslovaka 19, 369373.Google Scholar
Henning, S. (1981). Postnatal development: coordination of feeding, digestion, and metabolism. American Journal of Physiology 241, G199G214.Google ScholarPubMed
Issad, T., Coupé, C., Ferré, P. & Girard, J. (1987). Insulin-resistance during suckling period in rats. American Journal of Physiology 253, E142E148.Google ScholarPubMed
Issad, T., Coupé, C., Pastor-Anglada, M., Ferré, P. & Girard, J. (1988). Development of insulin-sensitivity at weaning in the rat. Role of the nutritional transition. Biochemical Journal 251, 685690.CrossRefGoogle ScholarPubMed
Issad, T., Ferré, P., Pastor-Anglada, M., Baudon, M. A. & Girard, J. (1989). Development of insulin sensitivity in white adipose tissue during the suckling-weaning transition in the rat: involvement of glucose transport and lipogenesis. Biochemical Journal 264, 217222.CrossRefGoogle ScholarPubMed
Leturque, A., Postic, C., Ferré, P. & Girard, J. (1991). Nutritional regulation of glucose transporter in muscle and adipose tissue of weaned rats. American Journal of Physiology 260, E588E593.Google ScholarPubMed
McCune, S. A. & Harris, R. A. (1979). Mechanism responsible for 5-(tetradecyloxy)-2-furoic acid inhibition of hepatic lipogenesis. Journal of Biological Chemistry 254, 1009510101.CrossRefGoogle ScholarPubMed
Margolis, R. N., Tanner, K., Seminara, D. & Taylor, S. (1990). Insulin receptors in developing rat liver. Receptor autophosphorylation and phosphorylation of the endogenous substrate pp120/HA4 (ecto-ATPase) in fetal and neonatal rat. Biology of the Neonate 58, 227235.CrossRefGoogle Scholar
Maury, J., Burnol, A. F., Loizeau, M., Issad, T., Girard, J. & Ferré, P. (1992 a) Insulin receptor function is preserved in a physiological state of hypoinsulinemia and insulin resistance. American Journal of Physiology 262, E818E825.Google Scholar
Maury, J., Issad, T., Perdereau, D., Gouhot, B., Ferré, P. & Girard, J. (1993). Effect of acarbose on glucose homeostasis, lipogenesis and lipogenic enzyme gene expression in adipose tissue of weaned rats. Diabetologia 36, 503509.CrossRefGoogle ScholarPubMed
Maury, J., Kerbey, A. L., Girard, J. & Ferré, P. (1992 b). Nutritional regulation of pyruvate dehydrogenase expression in rat adipose tissue at weaning. Diabetologia 35, A167.Google Scholar
Perdereau, D., Foufelle, F., Gouhot, B., Ferré, P. & Girard, J. (1992). Influence of diet on the development and regulation of lipogenic enzymes in adipose tissue. Proceedings of the Nutrition Society 51, 387395.CrossRefGoogle ScholarPubMed
Perdereau, D., Narkewicz, M. R., Coupé, C., Ferré, P. & Girard, J. (1990). Hormonal regulation of specific gene expression during development in the rat. Advances in Enzyme Regulation 30, 91108.CrossRefGoogle ScholarPubMed
Sinha, M. K. & Jenquin, M. (1987). Subunit structure, autophosphorylation, and tyrosine-specific protein kinase. Activity of hepatic insulin receptor in fetal, neonatal and adult rats. Diabetes 36, 11611166.CrossRefGoogle ScholarPubMed
Snell, K. & Walker, D. G. (1973). Gluconeogenesis in the newborn rat: the substrates and the quantitative significance. Enzyme 15, 4081.Google ScholarPubMed
Tsujikawa, M. & Kimura, S. (1980). Changes in lipid synthesis in rat adipose tissue during development. Journal of Nutritional Science and Vitaminology 26, 367374.CrossRefGoogle ScholarPubMed
Tsujikawa, M. & Kimura, S. (1981). Effect of litter size on glucose metabolism in rat pup adipose tissue during the suckling period. Journal of Nutritional Science and Vitaminology 27, 361366.CrossRefGoogle ScholarPubMed
Wang, C. (1985). Insulin-stimulated glucose uptake in rat diaphragm during postnatal development: lack of correlation with the number of insulin receptors and of intracellular glucose transporters. Proceedings of the National Academy of Sciences USA 82, 36213625.CrossRefGoogle ScholarPubMed