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1. Data from RORγt-Expressing Tregs Drive the Growth of Colitis-Associated Colorectal Cancer by Controlling IL6 in Dendritic Cells

3. Rafoxanide sensitizes colorectal cancer cells to TRAIL-mediated apoptosis

4. Interleukin-34 Stimulates Gut Fibroblasts to Produce Collagen Synthesis

5. Progranulin sustains<scp>STAT</scp>3 hyper‐activation and oncogenic function in colorectal cancer cells

6. RORγt-Expressing Tregs Drive the Growth of Colitis-Associated Colorectal Cancer by Controlling IL6 in Dendritic Cells

7. Follistatin-like protein 1 sustains colon cancer cell growth and survival

8. Metformin inhibits inflammatory signals in the gut by controlling AMPK and p38 MAP kinase activation

9. Knockdown of Smad7 With a Specific Antisense Oligonucleotide Attenuates Colitis and Colitis-Driven Colonic Fibrosis in Mice

10. OC.07.4 RAFOXANIDE INDUCES IMMUNOGENIC DEATH OF COLORECTAL CANCER CELLS

11. OC.06.5 GATA6 DEFICIENCY LEADS TO EPITHELIAL BARRIER DYSFUNCTION AND ENHANCES SUSCEPTIBILITY TO GUT INFLAMMATION

13. OC.16.2 PROGRANULIN SUSTAINS STAT3 HYPER-ACTIVATION AND ONCOGENIC FUNCTION IN COLORECTAL CANCER CELLS

15. Reciprocal Regulation Between Smad7 and Sirt1 in the Gut

16. Smad7 positively regulates keratinocyte proliferation in psoriasis

17. Sa2012 – Regulation of Colon Carcinogenesis by the Anti-Helminth Agent Rafoxanide

18. Smad7 knockdown activates protein kinase RNA-associated eIF2α pathway leading to colon cancer cell death

20. OC.01.4: Interleukin-34 Sustains Pro-Tumorigenic Signals in Colon Cancer Tissue

21. OC.14.5: The Food Additive Maltodextrin Induces Intestinal Epithelial Cell Endoplasmic Reticulum Stress and Increases Susceptibility to Intestinal Inflammation

24. Solitary fibrous tumour of thyroid: report of two cases with immunohistochemical features and literature review

26. OC.04.1 SMAD7 KNOCKDOWN IN COLON CANCER CELLS ACTIVATES PROTEIN KINASE RNA-ASSOCIATED EIF2-ALPHA PATHWAY THEREBY LEADING TO CELL DEATH

27. OC.09.8 INTERLEUKIN-34 INDUCES CC-CHEMOKINE LIGAND 20 IN GUT EPITHELIAL CELLS

28. Sa1998 Innate Lymphoid Cells Are Increased in Celiac Disease Intestinal Mucosa and Have a Pathogenic Role in a Mouse Model of Small Intestine Atrophy

29. OC.12.4 INNATE LYMPHOID CELLS ARE INCREASED IN CELIAC DISEASE INTESTINAL MUCOSA AND HAVE A PATHOGENIC ROLE IN A MOUSE MODEL OF SMALL INTESTINE ATROPHY

30. P.06.5 A FUNCTIONAL ROLE FOR IL-34 IN SUSTAINING INFLAMMATORY PATHWAYS IN IBD

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