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1. A Proteomic Approach Identified TFEB as a Key Player in the Protective Action of Novel CB2R Bitopic Ligand FD22a against the Deleterious Effects Induced by β-Amyloid in Glial Cells

2. Beta-Caryophyllene, a Cannabinoid Receptor Type 2 Selective Agonist, in Emotional and Cognitive Disorders

3. Performance in Behavioral Testing in an Animal Model of Post-Surgical Hypoparathyroidism

4. Thyroxine metabolite-derived 3-iodothyronamine (T1AM) and synthetic analogs as efficient suppressors of transthyretin amyloidosis

6. The Interplay between Cannabinoid Receptors and Microglia in the Pathophysiology of Alzheimer’s Disease

7. Design, synthesis and biological evaluation of novel orthosteric-allosteric ligands of the cannabinoid receptor type 2 (CB2R)

8. T1AM/TAAR1 System Reduces Inflammatory Response and β-Amyloid Toxicity in Human Microglial HMC3 Cell Line

10. New Insights into Bitopic Orthosteric/Allosteric Ligands of Cannabinoid Receptor Type 2

11. An Efficient Aequorea victoria Green Fluorescent Protein for Stimulated Emission Depletion Super-Resolution Microscopy

12. Selective Thyroid Hormone Receptor-Beta (TRβ) Agonists: New Perspectives for the Treatment of Metabolic and Neurodegenerative Disorders

13. Collecting data through high throughput in vitro early toxicity and off-target liability assays to rapidly identify limitations of novel thyromimetics

14. Identification of a Thyroid Hormone Derivative as a Pleiotropic Agent for the Treatment of Alzheimer’s Disease

15. The Role of Cannabinoids in Bone Metabolism: A New Perspective for Bone Disorders

17. Brain Histamine Modulates the Antidepressant-Like Effect of the 3-Iodothyroacetic Acid (TA1)

19. Delivery of Thyronamines (TAMs) to the Brain: A Preliminary Study

20. Diphenyl-Methane Based Thyromimetic Inhibitors for Transthyretin Amyloidosis

21. Transthyretin Stabilization: An Emerging Strategy for the Treatment of Alzheimer’s Disease?

22. 3-Iodothyronamine Affects Thermogenic Substrates’ Mobilization in Brown Adipocytes

24. 3-Iodothyronamine and Derivatives: New Allies Against Metabolic Syndrome?

25. Endogenous 3-Iodothyronamine (T1AM) and Synthetic Thyronamine-Like Analog SG-2 Act as Novel Pleiotropic Neuroprotective Agents through the Modulation of SIRT6

26. New Multitarget Approaches in the War Against Glioblastoma: A Mini-Perspective

27. New Insights into the Potential Roles of 3-Iodothyronamine (T1AM) and Newly Developed Thyronamine-Like TAAR1 Agonists in Neuroprotection

28. Lipolytic Effects of 3-Iodothyronamine (T1AM) and a Novel Thyronamine-Like Analog SG-2 through the AMPK Pathway

29. Metabolic Reprogramming by 3-Iodothyronamine (T1AM): A New Perspective to Reverse Obesity through Co-Regulation of Sirtuin 4 and 6 Expression

30. Modulation of gene expression by 3-iodothyronamine: genetic evidence for a lipolytic pattern.

31. 3-Iodothyronamine (T1AM) Reduces Inflammatory Response in Human Microglial HMC3 Cell Line

38. Design, Synthesis, and Biological Activity of New {CB}2 Receptor Ligands: from Orthosteric and Allosteric Modulators to Dualsteric/Bitopic Ligands

39. An Efficient

40. Multi-targeted ChEI-copper chelating molecules as neuroprotective agents

41. Diphenyl-Methane Based Thyromimetic Inhibitors for Transthyretin Amyloidosis

42. Delivery of thyronamines (Tams) to the brain: A preliminary study

43. Transthyretin Stabilization: An Emerging Strategy for the Treatment of Alzheimer’s Disease?

44. SUN-717 SG-2 a Novel Multi-Target Directed Ligand (MTDL) for the Treatment of Neurodegenerative Diseases (NDDS)

45. Endogenous 3-Iodothyronamine (T1AM) and Synthetic Thyronamine-like Analog SG-2 Act as Novel Pleiotropic Neuroprotective Agents Through the Modulation of SIRT6

46. SG-2: A promising lipolytic and pro-autophagic hit-compound to treat Alzheimer’s disease

47. Potential role of two novel agonists of thyroid hormone receptor-β on liver regeneration

48. 3-Iodothyronamine Affects Thermogenic Substrates' Mobilization in Brown Adipocytes

49. 3-Iodothyronamine and Derivatives: New Allies Against Metabolic Syndrome?

50. Ultrastructural Localization of Histidine-rich Glycoprotein in Skeletal Muscle Fibers: Colocalization With AMP Deaminase

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