111 results on '"Plateroti M"'
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2. The T3Rα gene encoding a thyroid hormone receptor is essential for post‐natal development and thyroid hormone production
3. Cytokine gene expression during postnatal small intestinal development: regulation by glucocorticoids
4. Intestinal Epithelial-Mesenchymal Cell Interactions
5. A Mouse Model of Targeted Musashi1 Expression in Whole Intestinal Epithelium Suggests Regulatory Roles in Cell Cycle and Stemness
6. Pedomorphosis revisited: thyroid hormone receptors are functional in Necturus maculosus
7. Carbonic anydrase 1 expression in colonic mucosa of patients with ulcerative colitis
8. Carbonic anydrase 1 is reduced in colonic mucosa of patients with ulcerative colitis
9. L'anidrasi carbonica 1 è ridotta nella mucosa colica dei pazienti con colite ulcerosa
10. Carbonic anhydrase 1 expression in colorectal biopsies and colonocyte primary cultures from patients with ulcerative colitis
11. Espressione dell’anidrasi carbonica 1 nella mucosa colica di pazienti con colite ulcerosa
12. Effect of butyrate and 5-ASA on carbonic anhydrase expression in colonocytes of patients with ulcerative colitis
13. Effetti del butirrato e del 5-ASA sull'espressione dell'anidrasi carbonica nei colonociti di pazienti con colite ulcerosa
14. Carbonic anhydrase I expression in colonic mucosa of patients with ulcerative colitis
15. Effetti del butirrato e del 5-ASA sull’espressione dell’anidrasi carbonica 1 nei colonociti di pazienti con colite ulcerosa
16. Characterization of normal human colonocytes in primary culture and their use for functional studies
17. Effetti del butirrato sui colonociti umani
18. Effect of butyrate on normal human colonocytes
19. Specific Actions of Thyroid Hormones During Gut Development: Insights from Animal Models
20. Involvement of T3Rα- and β-receptor subtypes in mediation of T3 functions during postnatal murine intestinal development☆, ☆☆, ★
21. Mesenchyme-mediated effects of retinoic acid during rat intestinal development
22. Carbonic anydrase 1 expression in colonic mucosa of patients with ulcerative colitis
23. Synapsin I expression in spinal cord neurons during chick embryo development
24. Cholinergic markers are expressed in developing and mature neurons of chick dorsal root ganglia
25. Synapsin I distribution in the development of chick spinal cord neurons
26. The Dri 42 gene, whose expression is up-regulated during epithelial differentiation, encodes a novel endoplasmic reticulum resident transmembrane protein.
27. Effects of retinoids on gene expression in different epithelial models in vivo and in vitro
28. Deletion of Stearoyl-CoA Desaturase-1 From the Intestinal Epithelium Promotes Inflammation and Tumorigenesis, Reversed by Dietary Oleate
29. Correction: The thyroid hormone nuclear receptor TRα1 controls the Notch signaling pathway and cell fate in murine intestine.
30. Conserved Signaling Pathways in the Ciona robusta Gut.
31. Impact of the thyroid hormone T3 and its nuclear receptor TRα1 on colon cancer stem cell phenotypes and response to chemotherapies.
32. General transcription factor TAF4 antagonizes epigenetic silencing by Polycomb to maintain intestine stem cell functions.
33. Regulation of the THRA gene, encoding the thyroid hormone nuclear receptor TRα1, in intestinal lesions.
34. Thyroid hormone signaling in the intestinal stem cells and their niche.
35. Editorial: Targeting Thyroid Hormone-Dependent Pathways in Proliferative and Degenerative Disorders.
36. Thyroid Hormone Signaling and Function: News from Classical and Emerging Models.
37. Thyroid Hormone Nuclear Receptor TRα1 and Canonical WNT Pathway Cross-Regulation in Normal Intestine and Cancer.
38. Deciphering the Role of Intestinal Crypt Cell Populations in Resistance to Chemotherapy.
39. Murine intestinal stem cells are highly sensitive to modulation of the T3/TRα1-dependent pathway.
40. Musashi1 Contribution to Glioblastoma Development via Regulation of a Network of DNA Replication, Cell Cycle and Division Genes.
41. A Three-dimensional Model of Spheroids to Study Colon Cancer Stem Cells.
42. MAVS deficiency induces gut dysbiotic microbiota conferring a proallergic phenotype.
43. Increased expression of the thyroid hormone nuclear receptor TRα1 characterizes intestinal tumors with high Wnt activity.
44. CRISPR/Cas9 Editing of the Mouse Thra Gene Produces Models with Variable Resistance to Thyroid Hormone.
45. Thyroid Hormone Receptors: Several Players for One Hormone and Multiple Functions.
46. In Vitro Approaches to Identify Thyroid Hormone Receptor-Dependent Transcriptional Response.
47. Thyroid hormone regulation of intestinal epithelial stem cell biology.
48. The thyroid hormone nuclear receptors and the Wnt/β-catenin pathway: An intriguing liaison.
49. T3/TRs axis in hepatocellular carcinoma: new concepts for an old pair.
50. The thyroid hormone nuclear receptor TRα1 controls the Notch signaling pathway and cell fate in murine intestine.
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