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  3. Possible role of intestinal stem cells in the pathophysiology of irritable bowel syndrome
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  5. Valeric acid glyceride esters in feed promote broiler performance and reduce the incidence of necrotic enteritis
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  6. Role of Substance P in the Pathophysiology of Inflammatory Bowel Disease and Its Correlation With the Degree of Inflammation
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  8. Abnormalities in ileal stem, neurogenin 3, and enteroendocrine cells in patients with irritable bowel syndrome
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  10. Modulation of the gut microbiota: a focus on treatments for irritable bowel syndrome
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  13. Gastrointestinal neuroendocrine peptides/amines in inflammatory bowel disease
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  14. Dietary carbohydrate modifies the density of L cells in the chicken ileum
    Md SALAHUDDIN et al, 2022, Journal of Veterinary Medical Science CrossRef
  15. Diet in Irritable Bowel Syndrome (IBS): Interaction with Gut Microbiota and Gut Hormones
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  16. Changes in colonic enteroendocrine cells of patients with irritable bowel syndrome following fecal microbiota transplantation
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  17. Enteroendocrine, Musashi 1 and neurogenin 3 cells in the large intestine of Thai and Norwegian patients with irritable bowel syndrome
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  18. Fecal microbiota transplantation for managing irritable bowel syndrome
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  19. Perimenopause, body fat, metabolism and menopausal symptoms in relation to serum markers of adiposity, inflammation and digestive metabolism
    G. Palla et al, 2020, Journal of Endocrinological Investigation CrossRef
  20. Cellular Organization of the Gastrointestinal Tract
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  21. The Effects of Fecal Microbiota Transplantation on the Symptoms and the Duodenal Neurogenin 3, Musashi 1, and Enteroendocrine Cells in Patients With Diarrhea-Predominant Irritable Bowel Syndrome
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  22. Dietary Protein Level Influences on Neurotensin-immunoreactive Cells in the Chicken Ileum
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