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    Gut 2002;50;III3-III8

  • Mucosal macrophages in intestinal homeostasis and inflammation.
    J.Innate Immun 2011;3:550-64

  • The intestinal epithelial barrier: how to distinguish between the microbial flora and pathogens.
    Semin Immunolm2007;19:106-115

  • Characterization of effector mechanisms at the host: parasite interface during the immune response to tissue-dwelling intestinal nematode parasites.
    Int J Parasitol 2009, 39:13-21

  • Bacterial strategies for overcoming host innate and adaptative immune responses.
    Nat Immunol 2002;3:1033-40

  • NeurophysiologicMechanismsof Human Large Intestinal Motility.
    Bharucha AE, Brookes S. En:Johnson LR, Ghishan FK, Kaunitz JD, MerchantJL, Said HM, Wood JD, eds.
    Physiology of the GastrointestinalTract, 5th ed. London: Elsevier, 2012;p. 977-1022.

  • Neuroeffectorapparatus in gastrointestinal smoothmuscleorgans.
    Sanders KM, Hwang SJ, Ward SM.
    J Physiol 2010 Dec 1;588(Pt 23):4621-39.

  • Integrativefunctions of theentericnervoussystem.
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    En: Johnson L, ed. Physiology of the gastrointestinaltract, 5th ed. London: Elsevier, 2012;p. 671-88.

  • High amplitude propagated contractions.
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    Neurogastroenterol Motil 2012 Nov;24(11):977-82.

  • The gastrointestinal mucus system in health and disease.
    Johansson ME, Sjövall H, Hansson GC.  
    Nat Rev Gastroenterol Hepatol. 2013; 10(6):352-61.

  • Funtional morphology of the gastrointestinal tract.
    Shen L.
    Curr Top Microbiol Immunol. 2009; 337: 1-35.

  • Ion channels of the epithelia of the gastrointestinal tract.
    Cuppoletti J, Malinowska DH. In Johnson L et al. editors.
    Physiology of the Gastrointestinal Tract. Elsevier; 2012. p.1863-76;

  • Toll-like receptor 3 activation affects serotonin transporter activity and expression in human enterocyte-like Caco-2 cells.
    Mendoza C, Matheus N, Latorre E, Castro M, Mesonero JE, Alcalde AI. 
    Cell Physiol Biochem. 2012;  30:187-98.

  • Claudin profiling in the mouse during postnatal intestinal development and along the gastrointestinal tract reveals complex expression patterns.
    Holmes JL, Van Itallie CM, Ramussen JE, AndersonJM.  
    Gene Expr Patterns. 2006; 6: 581-88.

  • Partioning of paracelular conductance along the ileal crypt-villus axis: a hypothesis based on structural analysis with detailed consideration of tight junction structure-funciton relationship.
    Marcial MA, Carlson SL, Madara JL.  
    J Membr Biol. 1984; 80: 59-70.

  • Role of mucus layers in gut infection and inflammation.
    Hansson GC.  
    Curr Opin Microbiol 2012; 15:57-62.

  • The gut as the largest endocrine organ in the body.
    Ahlman H, Nilsson.  
    Ann Oncol. 2001;12 Suppl 2:S63-8.

  • Classification of gastric endocrine cells at the light and electron microscopical levels.
    Bordi C, D’Adda T, Azzoni C, Ferraro G.Microsc
    Res Tech. 2000; 48:258-71.

  • Classification and functions of enteroendocrine cells of the lower gastrointestinal tract.
    Gunawardene AR, Corfe BM, Staton CA.
    Int J Exp Pathol. 2011; 92:219-31.

  • The role of serotonin in intestinal luminal sensing and secretion.
    Hansen MB, Witte AB.
    Acta Physiol (Oxf). 2008; 193(4):311-23.

  • Serotonin signaling in the gut- functions, dysfunctions and therapeutic targets.
    Mawe GM, Hoffman JM.
    Nature Rev Gastroenterol Hepathol. 2013; 10;473-86.

  • Motilin.
    Poitras P, Peeters TL.  
    Curr Opin Endocrinol Diabetes Obes. 2008; 15(1):54-7.

  • Paneth cells and antimicrobial host defense in neonatal small intestine.
    Sherman MP, Bennet SH, Hwang FF, Sherman J, Bevins CL.  
    Infect Immun. 2005; 73: 6143-46

  • Paneth cells: Maestros of the small intestinal crypts.
    Clevers HC and Bevins CL.
    Annu Rev Physiol. 2013; 75:289-311

  • Hydrogen sulfide as a signaling molecule in the enteric nervous system
    Jiménez M
    Neurogastroenterol Motil 2010; 22:1149–1153

  • Can eating disorders cause functional gastrointestinal disorders?
    Janssen P
    Neurogastroenterol Motil 2010; 22:1267–1269

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