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Red kidney bean (Phaseolus vulgaris) lectin stimulation increases the number of enterochromaffin cells in the small intestine of suckling piglets

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1. Arciszewski M.B., Zacharko A.: Origin and chemical coding of primary afferent neurones supplying the prostate of the dog. Anat Histol Embryol 2004, 33, 326-333.10.1111/j.1439-0264.2004.00556.x15540990 Search in Google Scholar

2. Berger M., Gray J.A., Roth B.L.: The expanded biology of serotonin. Ann Rev Med 2009, 60, 355-366.10.1146/annurev.med.60.042307.110802586429319630576 Search in Google Scholar

3. Berseth C.L.: Motor function in the stomach and small intestine in the neonate. Neoreviews 2006, 7, 28-33.10.1542/neo.7-1-e28 Search in Google Scholar

4. Forsberg E.J., Miller R.J.: Regulation of serotonin release from rabbit intestinal enterochromaffin cells. J Pharmacol Exp Ther 1983, 227, 755-766. Search in Google Scholar

5. Fox J.H., Lowry C.A.: Corticotropin-releasing factor-related peptides, serotonergic systems, and emotional behavior. Front Neurosci 2013, 20, 169.10.3389/fnins.2013.00169377825424065880 Search in Google Scholar

6. Furness J.B., Padbury R.T., Baimbridge K.G., Skinner J.M., Lawson D.E.: Calbindin immunoreactivity is a characteristic of enterochromaffin-like cells (ECL cells) of the human stomach. Histochemistry 1989, 92, 449-451.10.1007/BF004925032684929 Search in Google Scholar

7. Gershon M.D., Tack J.: The serotonin signaling system: from basic understanding to drug development for functional GI disorders. Gastroenterology 2007, 132, 397-414.10.1053/j.gastro.2006.11.00217241888 Search in Google Scholar

8. Ghevariya V., Malieckal A., Ghevariya N., Mazumder M., Anand S.: Carcinoid tumors of the gastrointestinal tract. South Med J 2009, 102, 1032-1040.10.1097/SMJ.0b013e3181b6735619738517 Search in Google Scholar

9. Glisić R., Koko V., Todorović V., Drndarević N., Cvijić G.: Serotonin-producing enterochromaffin (EC) cells of gastrointestinal mucosa in dexamethasone-treated rats. Regul Pept 2006, 136, 30-39.10.1016/j.regpep.2006.04.01916777244 Search in Google Scholar

10. Grundy D.: 5-HT system in the gut: roles in the regulation of visceral sensitivity and motor functions. Eur Rev Med Pharmacol Sci 2008, 12 Suppl. 1, 3-7. Search in Google Scholar

11. Gustafsson B.I., Bakke I., Tømmerås K., Waldum H.L.: A new method for visualization of gut mucosal cells, describing the enterochromaffin cell in the rat gastrointestinal tract. Scand J Gastroenterol 2006, 41, 390-395.10.1080/0036552050033128116635905 Search in Google Scholar

12. Hansen M.B., Thorbøll J.E., Christensen P., Bindslev N., Skadhauge E.: Serotonin-induced short-circuit current in pig jejunum. Zentralbl Veterinarmed A 1994, 41, 110-120.10.1111/j.1439-0442.1994.tb00073.x8091886 Search in Google Scholar

13. Kidd M., Modlin I.M., Gustafsson B.I., Drozdov I., Hauso O., Pfragner R.: Luminal regulation of normal and neoplastic human EC cell serotonin release is mediated by bile salts, amines, tastants, and olfactants. Am J Physiol Gastrointest Liver Physiol 2008, 295, 260-272.10.1152/ajpgi.00056.2008 Search in Google Scholar

14. Linden D.R., Foley K.F., McQuoid C., Simpson J., Sharkey K.A., Mawe G.M.: Serotonin transporter function and expression are reduced in mice with TNBS-induced colitis. Neurogastroenterol Motil 2005, 17, 565-574.10.1111/j.1365-2982.2005.00673.x Search in Google Scholar

15. Linderoth A., Prykhod’ko O., Ahrén B., Fåk F., Pierzynowski S.G., Weström B.R.: Binding and the effect of the red kidney bean lectin, phytohaemagglutinin, in the gastrointestinal tract of suckling rats. Br J Nutr 2006, 95, 105-115.10.1079/BJN20051612 Search in Google Scholar

16. Liu H.N., Ohya S., Nishizawa Y., Sawamura K., Iino S., Syed M.M., Goto K., Imaizumi Y., Nakayama S.: Serotonin augments gut pacemaker activity via 5-HT3 receptors. PLoS One 2011, 6, e24928.10.1371/journal.pone.0024928 Search in Google Scholar

17. Manocha M., Khan W.I.: Serotonin and GI disorders: an update on clinical and experimental studies. Clin Transl Gastroenterol 2012, 3, 13.10.1038/ctg.2012.8 Search in Google Scholar

18. Mawe G.M., Coates M.D., Moses P.L.: Review article: intestinal serotonin signalling in irritable bowel syndrome. Aliment Pharmacol Ther 2006, 23, 1067-1076.10.1111/j.1365-2036.2006.02858.x Search in Google Scholar

19. McKay D.M., Halton D.W., Johnston C.F., Fairweather I., Shaw C.: Hymenolepis diminuta: changes in intestinal morphology and the enterochromaffin cell population associated with infection in male C57 mice. Parasitology 1990, 101, 107-113.10.1017/S0031182000079816 Search in Google Scholar

20. Oshima S., Fujimura M., Fukimiya M.: Changes in number of serotonin-containing cells and serotonin levels in the intestinal mucosa of rats with colitis induced by dextran sodium sulfate. Histochem Cell Biol 1999, 112, 257-263.10.1007/s004180050445 Search in Google Scholar

21. Pusztai A., Watt W.B.: Isolectins of Phaseolus vulgaris. A comprehensive study of fractionation. Biochim Biophys Acta 1974, 365, 57-71.10.1016/0005-2795(74)90250-5 Search in Google Scholar

22. Pusztai A.: Dietary lectins are metabolic signals for the gut and modulate immune and hormone functions. Eur J Clin Nutr 1993, 47, 691-699. Search in Google Scholar

23. Pyarokhil A.H., Ishihara M., Sasaki M., Kitamura N.: The developmental plasticity of colocalization pattern of peptide YY and glucagon-like peptide-1 in the endocrine cells of bovine rectum. Biomed Res 2012, 33, 35-38.10.2220/biomedres.33.3522361884 Search in Google Scholar

24. Rådberg K., Biernat M., Linderoth A., Zabielski R., Pierzynowski S.G., Weström B.R.: Enteral exposure to crude red kidney bean lectin induces maturation of the gut in suckling pigs. J Anim Sci 2001, 79, 2669-2678.10.2527/2001.79102669x11721847 Search in Google Scholar

25. Rolfe V.E., Levin R.J.: Neural and non-neural activation of electrogenic secretion by 5-hydroxytryptamine in the rat ileum in vitro. Acta Physiol Scand 1998, 162, 469-474.10.1046/j.1365-201X.1998.00309.x9597113 Search in Google Scholar

26. Selleri S., Palazzo M., Deola S., Wang E., Balsari A., Marincola F.M., Rumio C.: Induction of pro-inflammatory programs in enteroendocrine cells by the Toll-like receptor agonists flagellin and bacterial LPS. Int Immunol 2008, 20, 961-970.10.1093/intimm/dxn05518544573 Search in Google Scholar

27. Sharma R., Schumacher U.: The diet and gut microflora influence the distribution of enteroendocrine cells in the rat intestine. Experientia 1996, 52, 664-670.10.1007/BF019255708698107 Search in Google Scholar

28. Solomatina T.M., Volgarev M.N., Bassalyk L.S., Gromova N.V.: Changes in the number of Ec cells in the small intestine and the serotonin level in the blood plasma of fasting rats. Biull Eksp Biol Med 1985, 100, 162-164.10.1007/BF00837378 Search in Google Scholar

29. Takahara H., Fujimura M., Taniguchi S., Hayashi N., Nakamura T., Fujimiya M.: Changes in serotonin levels and 5- HT receptor activity in duodenum of streptozotocin-diabetic rats. Am J Physiol Gastrointest Liver Physiol 2001, 281, 798-808.10.1152/ajpgi.2001.281.3.G79811518692 Search in Google Scholar

30. Zacharko-Siembida A., Valverde-Piedra J.L., Arciszewski M.B.: Changes in expression of calbindin 28kDa in the small intestine of red kidney bean (Phaseolus vulgaris) lectin-treated suckling piglets. Pol J Vet Sci 2013, 16, 201-209.10.2478/pjvs-2013-002923971186 Search in Google Scholar

31. Zhao H., Sovadinova I., Swope V.M., Swain G.M., Kadrofske M.M., Bian X.: Postnatal development of the serotonin signaling system in the mucosa of the guinea pig ileum. Neurogastroenterol Motil 2011, 23, 161-168. 10.1111/j.1365-2982.2010.01645.x307125721226885 Search in Google Scholar

eISSN:
2300-3235
Lingua:
Inglese
Frequenza di pubblicazione:
4 volte all'anno
Argomenti della rivista:
Life Sciences, Molecular Biology, Microbiology and Virology, other, Medicine, Veterinary Medicine