AOAC, 1995. Association of Official Analytical Chemists. Official Methods of Analysis. 16th Edi¬tion, Arlington VA, USA. Bayley H.S., Carlson W.E., 1970. Comparisons of simple and complex diets for baby pigs: effect of form of feed and of glucose addition. J. Anim. Sci., 30: 394-401.
Beaulieu A.D., Drackley J.K., Overton T.R., Emmert L.S., 2002. Isolated canine and murine inte¬stinal cells exhibit a different pattern of fuel utilization for oxidative metabolism. J.Anim. Sci., 80: 1223-1232.
Domeneghini C., Di Giancamillo A., Savoini G., Paratte R., Bontempo V, Dell'Orto V, 2004. Structural patterns of swine ileal mucosa following L-glutamine and nucleotide administration during the weaning period. An histochemicaland histometrical study. Histol. Histopathol., 19: 49-58.
Fleming S.E., Fitch M.D., DeVries S., Liu M.L., Kight C., 1991. Nutrient utilization by cells iso¬lated from rat jejunum, caecum and colon. J. Nutr., 121: 869-878.
Grau R., Ham R., 1953. Eine einfache Methode zur Bestimmung der Wasserbindung im Muskel. Naturwissenschaften, 40: 29.
Hedemann M.S., Jensen B.B., 2004. Variations in enzyme activity in stomach and pancreatic tissue and digesta in piglets around weaning. Arch. Anim. Nutr., 58: 47-59.
Hou Y. Q., Liu Y.L., Hu J., Shen W.H., 2006. Effects of lacticol and tributirin on growth perfor¬mance, small intestinal morphology and enzyme activity in weaned pigs. Asian-Aust. J. Anim. Sci., 19: 1470-1477.
Lallès J.P., Boudry G., Favier C., Le Floch N., Luron I., Montagne L., Oswald I.P., Piè S., Piel C., Sève B., 2004. Gut function and dysfunction in young pig: physiology. Anim. Res., 53: 301-316.
Lu J.J., Zou X.T., Wang Y.M., 2008. Effects of sodium butyrate on the growth performance, intesti¬nal microflora and morphology of weanling pigs. J. Anim. Feed Sci., 17: 568-578.
Pacha J., 2000. Development of intestinal transport function in mammals. Physiol. Rev., 80: 1633¬1667.
Sakata T., Setoyama H., 1997. Biphasic allometric growth of the small intestine, cecum and the proximal, middle and distal colon of rats (Rattus norvegicus Berkenhout, 1764) before and after weaning. Comp. Biochem. Physiol. A. Physiol., 118: 897-902.
Shankar K., Harrell A., Kang P., Singhal R., Ronis M.J.J., Badger T.M., 2010. Carbohydrate-responsive gene expression in the adipose tissue of rats. Endocrinology, 151: 153-164.
Vayro S., Wood I.S., Dyer J., Shirazi-Beechey S.P., 2001. Transcriptional regulation of the ovine intestinal Na+/glucose co-transporter SGLT1 gene: The role of HNF-1 in glucose activation of promoter function. Eur. J. Biochem., 268: 5460-5470.
Wu G., Knabe D.A., Yan W., Flynn N.E., 1995. Glutamine and glucose metabolism in enterocytes of the neonatal pig. Am. J. Physiol., 268: R334-R342.
Wu G., Meier S.A., Knabe D.A., 1996. Dietary glutamine supplementation prevents jejunal atrophy in weaned pigs. J. Nutr., 126: 2578-2584.