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1. Identification of a Novel Substance PâNeurokinin-1 Receptor MicroRNA-221-5p Inflammatory Network in Human Colonic Epithelial CellsSummary

2. Substance P Mediates Proinflammatory Cytokine Release From Mesenteric Adipocytes in Inflammatory Bowel Disease PatientsSummary

3. Antifibrogenic Effects of the Antimicrobial Peptide Cathelicidin in Murine Colitis-Associated FibrosisSummary

4. Identification of Spinal Cord MicroRNA and Gene Signatures in a Model of Chronic Stress-Induced Visceral Hyperalgesia in Rat.

5. MiR-21 in Substance P-induced exosomes promotes cell proliferation and migration in human colonic epithelial cells

6. Cathelicidin suppresses lipid accumulation and hepatic steatosis by inhibition of the CD36 receptor

7. Neurotensin—regulated miR-133α is involved in proinflammatory signalling in human colonic epithelial cells and in experimental colitis

8. Neurotensin Promotes the Development of Colitis and Intestinal Angiogenesis via Hif-1α-miR-210 Signaling

9. Neurotensin-induced Proinflammatory Signaling in Human Colonocytes Is Regulated by β-Arrestins and Endothelin-converting Enzyme-1-dependent Endocytosis and Resensitization of Neurotensin Receptor 1

10. Clostridium difficile toxins induce VEGF-A and vascular permeability to promote disease pathogenesis

11. Identification of a novel substance P (SP)-neurokinin-1 receptor (NK-1R) microRNA-221-5p inflammatory network in human colonic epithelial cells

12. Neuropeptide - Adipose Tissue Communication and Intestinal Pathophysiology

13. Substance P (SP)-Neurokinin-1 Receptor (NK-1R) Alters Adipose Tissue Responses to High-Fat Diet and Insulin Action

14. Insulin-like Growth Factor-1 Receptor Transactivation Modulates the Inflammatory and Proliferative Responses of Neurotensin in Human Colonic Epithelial Cells

15. Mechanisms of nitric oxide-mediated inhibition of EMT in cancer

16. Silence Please!

17. Identification of Spinal Cord MicroRNA and Gene Signatures in a Model of Chronic Stress-Induced Visceral Hyperalgesia in Rat

18. Cathelicidin suppresses colon cancer development by inhibition of cancer associated fibroblasts

19. The Neurotensin–HIF-1α–VEGFα Axis Orchestrates Hypoxia, Colonic Inflammation, and Intestinal Angiogenesis

20. Cellugyrin Induces Biogenesis of Synaptic-like Microvesicles in PC12 Cells

21. Substance P-Induced Colonic Epithelial Cell-Secreted Exosomes Exacerbate Experimental Colitis and Regulate Cell Proliferation and Migration via Exosomal MIR-21

23. Adipose tissue and inflammatory bowel disease pathogenesis

24. Role of substance P in the regulation of glucose metabolism via insulin signaling-associated pathways

25. Neurotensin signaling activates microRNAs-21 and -155 and Akt, promotes tumor growth in mice, and is increased in human colon tumors

26. Cerebellar neurons possess a vesicular compartment structurally and functionally similar to Glut4-storage vesicles from peripheral insulin-sensitive tissues

27. Mechanisms for increased myocardial fatty acid utilization following short-term high-fat feeding

28. The C-terminus of GLUT4 targets the transporter to the perinuclear compartment but not to the insulin-responsive vesicles

29. The effect of nitric oxide on the permeability of nasal epithelial cells from healthy and asthmatic donors

31. 196 Identification of a Novel Substance P (SP)-Neurokinin-1 Receptor (NK-1R) MicroRNA-221 Inflammatory Network in Human Colonic Epithelial Cells

32. Sa1747 Antimicrobial Peptide Cathelicidin Inhibits Salmonella Mediated Intestinal Inflammation and Fibrosis

34. 934 Neurotensin-Induced Tumor Formation Is Regulated by Neurotensin Receptor 1 (NTR1)/MicroRNA-133a-Associated NTR1 Recycling Involving the Negative Regulator Zinc Finger E-Box-Binding Homeobox 1 (ZEB1)

35. Sa1731 Neurotensin-HIF-1α-MicroRNA 210 Axis Orchestrates Hypoxia, Colonic Inflammation and Intestinal Angiogenesis

37. 547 Effects of Substance P on Pro and Anti-Inflammatory Responses of Human Mesenteric Preadipocytes Isolated From IBD Patients

38. Tu2038 Chronic Stress Increases Systemic and Fat Depot Cytokine Levels and Induces Inflammation-Associated Signaling Cascades in Adipocytes

45. Cathelicidin Signaling via the Toll-like Receptor Protects Against Colitis in Mice

47. Colitis-Associated Adipose Tissue Responses to Corticotropin-Releasing Hormone Family of Neuropeptides

48. Neurotensin (NT) Receptor 1 (Ntr1)-MicroRNA Networks in Human Colon Epithelial Cells. Characterization of Novel Pathways Connecting Neurotensin and Tumor Growth

49. Cathelicidin suppresses colon cancer development by inhibition of cancer associated fibroblasts.

50. W1753 Substance P Decreases Insulin-Induced Glucose Uptake in Adipocytes

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