342 results on '"Dentice, Monica"'
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2. Loss of p53 activates thyroid hormone via type 2 deiodinase and enhances DNA damage
3. Low triiodothyronine is associated with high risk of malnutrition and poor functional status in subacute stroke patients
4. SIRT6 pharmacological inhibition delays skin cancer progression in the squamous cell carcinoma
5. “Time” for obesity-related cancer: The role of the circadian rhythm in cancer pathogenesis and treatment
6. Repositioning of Cefuroxime as novel selective inhibitor of the thyroid hormone activating enzyme type 2 deiodinase
7. N-acetyl-L-cysteine reduces testis ROS in obese fathers but fails in protecting offspring from acquisition of epigenetic traits at cyp19a1 and IGF11/H19 ICR loci.
8. Discovery of Novel Thiazole-Based SIRT2 Inhibitors as Anticancer Agents: Molecular Modeling, Chemical Synthesis and Biological Assays.
9. The histone methyltransferase SMYD1 is induced by thermogenic stimuli in adipose tissue
10. The key roles of thyroid hormone in mitochondrial regulation, at interface of human health and disease.
11. Deiodination and Peripheral Metabolism of Thyroid Hormone
12. Intracellular control of thyroid hormone in epithelial tumorigenesis
13. Deiodinases and their intricate role in thyroid hormone homeostasis
14. Thyroid Hormone Regulates the Lipid Content of Muscle Fibers, Thus Affecting Physical Exercise Performance
15. Editorial: Cellular heterogeneity in physiological and pathological myogenesis
16. Author Correction: Thyroid hormone induces progression and invasiveness of squamous cell carcinomas by promoting a ZEB-1/E-cadherin switch
17. Therapeutic Effect of an Ursolic Acid-Based Nutraceutical on Neuronal Regeneration after Sciatic Nerve Injury.
18. Nutrient-Dependent Mitochondrial Fission Enhances Osteoblast Function
19. Data from Activated Thyroid Hormone Promotes Differentiation and Chemotherapeutic Sensitization of Colorectal Cancer Stem Cells by Regulating Wnt and BMP4 Signaling
20. Supplementary Figures 1 through 9 from Activated Thyroid Hormone Promotes Differentiation and Chemotherapeutic Sensitization of Colorectal Cancer Stem Cells by Regulating Wnt and BMP4 Signaling
21. The androgen-thyroid hormone crosstalk in prostrate cancer and the clinical implications
22. Divergent Thyroid Hormone Levels in Plasma and Left Ventricle of the Heart in Compensated and Decompensated Cardiac Hypertrophy Induced by Chronic Adrenergic Stimulation in Mice
23. Thyroid hormone induces progression and invasiveness of squamous cell carcinomas by promoting a ZEB-1/E-cadherin switch
24. Divergent Thyroid Hormone Levels in Plasma and Left Ventricle of the Heart in Compensated and Decompensated Cardiac Hypertrophy Induced by Chronic Adrenergic Stimulation in Mice
25. Vandetanib downregulates type 2 deiodinase in fibro/adipogenic progenitors
26. Cardiovascular and Neuronal Consequences of Thyroid Hormones Alterations in the Ischemic Stroke
27. Intracellular Inactivation of Thyroid Hormone Is a Survival Mechanism for Muscle Stem Cell Proliferation and Lineage Progression
28. Reciprocal interplay between thyroid hormone and microRNA-21 regulates hedgehog pathway-driven skin tumorigenesis
29. β-Catenin Regulates Deiodinase Levels and Thyroid Hormone Signaling in Colon Cancer Cells
30. Mitochondria dynamics and function dictate osteoblast metabolism in response to nutrients
31. Pharmacological folding chaperones act as allosteric ligands of Frizzled4
32. Thyroid Hormone Receptor Isoforms Alpha and Beta Play Convergent Roles in Muscle Physiology and Metabolic Regulation
33. Thyroid hormone and androgen signals mutually interplay and enhance inflammation and tumorigenic activation of tumor microenvironment in prostate cancer
34. Thyroid hormone regulates glutamine metabolism and anaplerotic fluxes by inducing mitochondrial glutamate aminotransferase GPT2
35. Sonic Hedgehog-Induced Type 3 Deiodinase Blocks Thyroid Hormone Action Enhancing Proliferation of Normal and Malignant Keratinocytes
36. Quiescence and Self-Renewal of Stem Cells ¬require a Type 2-Deiodinase mediated cell-autonomous surge in intra-cellular Thyroid Hormone signalling
37. Il controllo della concentrazione plasmatica degli ormoni tiroidei: cosa c’è di nuovo per la clinica
38. Cardiovascular and Neuronal Consequences of Thyroid Hormones Alterations in the Ischemic Stroke.
39. The Selective Loss of the Type 2 Iodothyronine Deiodinase in Mouse Thyrotrophs Increases Basal TSH but Blunts the Thyrotropin Response to Hypothyroidism
40. Selective Inhibition of Genomic and Non-Genomic Effects of Thyroid Hormone Regulates Muscle Cell Differentiation and Metabolic Behavior
41. Germ Line Mutations in the Thyroid Hormone Receptor Alpha Gene Predispose to Cutaneous Tags and Melanocytic Nevi
42. Thyroid Hormone Enhances Angiogenesis and the Warburg Effect in Squamous Cell Carcinomas
43. The Fox O3/type 2 deiodinase pathway is required for normal mouse myogenesis and muscle regeneration
44. Mice With Hepatocyte-Specific Deficiency of Type 3 Deiodinase Have Intact Liver Regeneration and Accelerated Recovery From Nonthyroidal Illness After Toxin-Induced Hepatonecrosis
45. The Sonic Hedgehog-Induced Type 3 Deiodinase Facilitates Tumorigenesis of Basal Cell Carcinoma by Reducing Gli2 Inactivation
46. Thyroid hormones and skeletal muscle—new insights and potential implications
47. Treatment of Cutaneous Melanoma Harboring SMO p.Gln216Arg Mutation with Imiquimod: An Old Drug with New Results
48. Author Correction: Thyroid hormone induces progression and invasiveness of squamous cell carcinomas by promoting a ZEB-1/E-cadherin switch (Nature Communications, (2019), 10, 1, (5410), 10.1038/s41467-019-13140-2)
49. Deiodinases and Cancer
50. A Type 2 Deiodinase-Dependent Increase in Vegfa Mediates Myoblast-Endothelial Cell Crosstalk During Skeletal Muscle Regeneration
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