1. Ulluwishewa, et al. Regulation of tight junction permeability by intestinal bacteria and dietary components.
2. Maes M, et al. Increased serum IgA and IgM against LPS of enterobacteria in chronic fatigue syndrome (CFS): Indication for the involvement of gram negative enterobacteria in the etiology of CFS and for the presence of an increased gut-intestinal permeability.
3. Maes M, Coucke F, Leunis JC. Normalization of increased translocation of endotoxin from gram-negative enterobacteria (leaky gut) is accompanied by a remission of chronic fatigue syndrome.
4. Maes M, Leunis JC. Normalization of leaky gut in chronic fatigue syndrome (CFS) is accompanied by a clinical improvement: effects of age, duration of illness and the translocation of LPS from gramnegative bacteria.
5. El-Tawil AM. Zinc supplementation tightens leaky gut in Crohn’s disease.
6. Lutgendorff F, Akkermans LM, Söderholm JD. The role of microbiota and probiotics in stress-induced gastrointestinal damage.
7. Maes M, Mihaylova I, De Ruyter M. Lower serum zinc in chronic fatigue syndrome (CFS): relationship to immune dysfunctions and relevance for the oxidative stress status in CFS.
8. Ulluwishewa D, et al. Regulation of tight junction permeability by intestinal bacteria and dietary components.
9. Gibson GR, Beatty ER, Wang X, Cummings JH. Selective stimulation of
10. Fasano A. Leaky gut and autoimmune disease.
11. Fasano A. Zonulin and its regulation of intestinal barrier function: the biological door to inflammation, autoimmunity, and cancer.
12. Patel RM, Myers LS, Kurundkar AR, Maheshwari A, Nusrat A, Lin PW. Probiotic bacteria induce maturation of intestinal claudin-3 expression and barrier function.
13. Rapin JR, Wiernsperger N. Possible links between intestinal permeability and food processing: a potential therapeutic niche for glutamine.
14. Vaarala O. Is the origin of type 1 diabetes in the gut?
15. Vaarala O, Atkinson MA, Neu J. The “Perfect Storm” for type 1 diabetes: the complex interplay between intestinal microbiota, gut permeability, and mucosal immunity.
16. Campbell-McBride N.
17. Gates, D.
18. Gibson GR, Macfarlane GT, Cummings JH. Sulphate reducing bacteria and hydrogen metabolism in the human large intestine.
19. http://bodyecology.com/articles/gut-permeability.php.
20. Kirpich, Irina A. The type of dietary fat modulates intestinal tight junction integrity, gut permeability, and hepatic tolllike receptor expression in a mouse model of alcoholic liver disease.
21. Wang, Hong-Bo. Butyrate enhances intestinal epithelial barrier function via up-regulation of tight junction protein claudin-1 transcription.
22. Benjamin J, Makharia G, Ahuja V, Joshi YK. Glutamine and whey protein improve intestinal permeability and morphology in patients with Crohn’s disease: a randomized controlled TrialDig.
23. Campbell-McBride N. Food allergy.
24. Gottschall E.
25. Vermeulen MAR, de Jong J, Vaessen MJ, van Leeuwen PAM, Houdijk APJ. Glutamate reduces experimental intestinal hyperpermeability and facilitates glutamine support of gut integrity.
26. Rao RK, Samak G. Role of glutamine in protection of intestinal epithelial tight junctions.