Enteral administration of tributyrin as an element of nutritional support in the treatment of disruption of the intestinal electrical activity during experimental endotoxemia
Abstract
About the Authors
E. A. KislyakovaRussian Federation
N. S. Tropskaya
Russian Federation
T. S. Popova
Russian Federation
References
1. Cullen J.J., Caropreso D.K., Hemann L.L., et al. Pathophysiology of adinamic ileus // Dig. dis. sci. 1997. Vol. 42. No. 4. Pp. 731-737.
2. De Winter B.Y. Study of the pathogenesis of paralytic ileus in animal models of experimentally induced postoperative and septic ileus // Verh K. Acad. Geneeskd. Belg. 2003. Vol. 65. No. 5. Pp. 293-324.
3. Eskandari M.K., Kalff J.C., Billiar T.R., et al. LPS-induced muscularis macrophage nitric oxide suppresses rat jejunal circular muscle activity // Am. J. Physiol. gastrointest. liver physiol. 1999. Vol. 277. No. 2. Pt. 1. Pp. 478-486.
4. Genton L., Kudsk K.A. Interactions between the enteric nervous system and the immune system: role of neuropeptides and nutrition // Am. J. Surg. 2003. Vol. 186. No. 3. Pp. 253-258.
5. Lubbers T., Luyer M.D., de Haan J.J., et al. Lipid-rich enteral nutrition reduces postoperative ileus in rats via activation of cholecystokinin-receptors // Ann. Surg. 2009. Vol. 249. No. 3. Pp. 481-487.
6. Luyer M.D., Habes Q., van Hak R., Buurman W. Nutritional stimulation of the autonomic nervous system // World J. Gastroenterol. 2011. Vol. 17. No. 34. Pp. 3859-3863.
7. Moncada S., Palmer R.M., Higgs E.A. Nitric oxide: physiology, pathophysiology and pharmacology // Pharmacol. rev. 1991. Vol. 43. No. 2. Pp. 109-142.
8. Quintana E., Hernández C., Alvarez-Barrientos A., et al. Synthesis of nitric oxide in postganglionic myenteric neurons during endotoxemia: implications for gastric motor function in rats // FASEB J. 2004. Vol. 18. No. 3. Pp. 531-533.
9. Quintana E., Hernández C., Moran A.P., et al. Transcriptional up-regulation of nNOS in the dorsal vagal complex during low endotoxemia // Life sci. 2005. Vol. 77. No. 9. Pp. 1044-1054.
10. Sarna S. Myoelectrical and contractile activities of the gastrointestinal tract // Schuster M.M., Crowell M.D., Kenneth L.K. Schuster Atlas of gastrointestinal motility in health and desease. - London: BC Decker Inc., Hamilton, 2002. P. 1-18.
11. Schwartz G.J. The role of gastrointestinal vagal afferents in the control of food intake: current prospects // Nutrition. 2000. Vol. 16. No. 10. Pp. 866-873.
12. Vinolo M.A., Rodrigues H.G., Hatanaka E., et al. Suppressive effect of short-chain fatty acids on production of proinflammatory mediators by neutrophils // J. Nutr. biochem. 2011. Vol. 22. No. 9. Pp. 849-855.
Review
For citations:
Kislyakova E.A., Tropskaya N.S., Popova T.S. Enteral administration of tributyrin as an element of nutritional support in the treatment of disruption of the intestinal electrical activity during experimental endotoxemia. Journal Biomed. 2015;1(4):77-83. (In Russ.)