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110 results on '"MT1 receptor"'

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1. The MT1 receptor as the target of ramelteon neuroprotection in ischemic stroke.

2. Melatonin MT1 receptors as a target for the psychopharmacology of bipolar disorder: A translational study

3. Agomelatine decreases cocaine-induced locomotor sensitisation and dopamine release in rats.

4. Melatonin Attenuates Cyclophosphamide-Induced Primordial Follicle Loss by Interaction with MT1 Receptor and Modulation of PTEN/Akt/FOXO3a Proteins in the Mouse Ovary.

5. Research on Heart Failure Discussed by Researchers at First Affiliated Hospital of Dalian Medical University (Melatonin alleviates aging-related heart failure through melatonin receptor 1A/B knockout in mice).

6. Melatonin suppresses the metastatic potential of osteoblastic prostate cancers by inhibiting integrin α2β1 expression.

8. Melatonin impedes prostate cancer metastasis by suppressing MMP‐13 expression.

9. Melatonin decreases cocaine-induced locomotor sensitization and cocaine-conditioned place preference in rats.

10. Researchers from University of Parma Discuss Findings in Cytoplasmic and Nuclear Receptors (Binding and Unbinding of Potent Melatonin Receptor Ligands: Mechanistic Simulations and Experimental Evidence).

11. Nociceptive responses in melatonin MT2 receptor knockout mice compared to MT1 and double MT1/MT2 receptor knockout mice.

12. Melatonin MT1 receptors as a target for the psychopharmacology of bipolar disorder: A translational study.

13. Differential Function of Melatonin MT1 and MT2 Receptors in REM and NREM Sleep

14. Melatonin MT1 receptor as a novel target in neuropsychopharmacology: MT1 ligands, pathophysiological and therapeutic implications, and perspectives.

15. Differential Function of Melatonin MT1 and MT2 Receptors in REM and NREM Sleep.

16. Studies Conducted at Firat University on Melatonin Therapy Recently Published (Modulation of Melatonin Receptors Regulates Reproductive Physiology: The Impact of Agomelatine on the Estrus Cycle, Gestation, Offspring, and Uterine Contractions in...).

17. Особливості експресії рецепторів мелатоніну МТ1 в шкірному покриві щурів при світловий депривації

18. Melatonin Attenuates Cyclophosphamide-Induced Primordial Follicle Loss by Interaction with MT1 Receptor and Modulation of PTEN/Akt/FOXO3a Proteins in the Mouse Ovary

20. Melatonin promotes sleep in mice by inhibiting orexin neurons in the perifornical lateral hypothalamus.

21. Melatonin enhances cell death and suppresses the metastatic capacity of ovarian cancer cells by attenuating the signaling of multiple kinases.

22. New Cytoplasmic and Nuclear Receptors Study Findings Reported from Rammohan College (In-vivo Thermal Stress Induces Melatonin Receptors and Heat Shock Proteins Expression in the Spleen of Mice in a Time and Temperature Dependent Manner).

23. Melatonin effective to reduce the microscopic symptoms of polycystic ovary syndrome-related infertility: An experimental study.

24. Major role of MT2 receptors in the beneficial effect of melatonin on long-term recognition memory in C57BL/6J male mice

25. New evidence of melatonin receptor contribution to ram sperm functionality.

26. Reports Outline Gene Therapy Study Results from First Affiliated Hospital of Anhui Medical University (Cardiac-targeted delivery of nuclear receptor RORa via ultrasound targeted microbubble destruction optimizes the benefits of regular dose of...).

28. Melatonin, selective and non-selective MT1/MT2 receptors agonists: Differential effects on the 24-h vigilance states.

29. Lignans from the Fruits of Melia toosendan and Their Agonistic Activities on Melatonin Receptor MT1.

30. Lignans from the Fruits of Melia toosendan and Their Agonistic Activities on Melatonin Receptor MT1.

31. Photoperiodic induced melatonin regulates immunity and expression pattern of melatonin receptor MT1 in spleen and bone marrow mononuclear cells of male golden hamster.

32. Sleep–wake characterization of double MT1/MT2 receptor knockout mice and comparison with MT1 and MT2 receptor knockout mice

33. Melatonin MT1 receptor-induced transcriptional up-regulation of p27Kip1 in prostate cancer antiproliferation is mediated via inhibition of constitutively active nuclear factor kappa B (NF-κB): potential implications on prostate cancer chemoprevention and therapy

34. Impaired mouse mammary gland growth and development is mediated by melatonin and its MT1 G protein-coupled receptor via repression of ERα, Akt1, and Stat5.

35. Melatonin Membrane Receptor Type MT1 Modulates Cell-Mediated Immunity in the Seasonally Breeding Tropical Rodent Funambulus pennanti.

36. Effects of 530 nm Green Light on Refractive Status, Melatonin, MT1 Receptor, and Melanopsin in the Guinea Pig.

37. Alteration of the MT1 melatonin receptor gene and its expression in primary human breast tumors and breast cancer cell lines.

38. Pharmacology of Ramelteon, a Selective MT1/MT2 Receptor Agonist: A Novel Therapeutic Drug for Sleep Disorders.

39. Melatonin as a negative mitogenic hormonal regulator of human prostate epithelial cell growth: potential mechanisms and clinical significance.

40. Towards rational and evidence-based use of melatonin in prostate cancer prevention and treatment.

41. Regression of NMU-induced mammary tumors with the combination of melatonin and 9-cis-retinoic acid

42. Coexpression of MT1 and ROR α1 melatonin receptors in the Syrian hamster Harderian gland.

43. Differential regulation of estrogen receptor alpha, glucocorticoid receptor and retinoic acid receptor alpha transcriptional activity by melatonin is mediated via different G proteins.

44. Neurochemical properties of ramelteon (TAK-375), a selective MT1/MT2 receptor agonist

45. The melatonin receptor subtype MT1 is expressed in human gallbladder epithelia.

46. Overexpression of the MT1 melatonin receptor in MCF-7 human breast cancer cells inhibits mammary tumor formation in nude mice

47. MT1 melatonin receptor overexpression enhances the growth suppressive effect of melatonin in human breast cancer cells

48. Characterization of an Antibody to the Human Melatonin mt1 Receptor.

49. Melatonin suppresses the metastatic potential of osteoblastic prostate cancers by inhibiting integrin α 2 β 1 expression.

50. MT1 Melatonin Receptor Reconstitution in Nanodiscs.

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