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1. Galanin Coordinates Macrophage-Associated Fibro-Inflammatory Response and Mitochondrial Integrity in Myocardial Infarction Reperfusion Injury.

2. Galanin diminishes cortical spreading depolarization across rodents - A candidate for treatment?

3. Long-term enhancements in antidepressant efficacy and neurogenesis: Effects of intranasal co-administration of neuropeptide Y 1 receptor (NPY1R) and galanin receptor 2 (GALR2) agonists in the ventral hippocampus.

4. Enhancement of neurogenesis and cognition through intranasal co-delivery of galanin receptor 2 (GALR2) and neuropeptide Y receptor 1 (NPY1R) agonists: a potential pharmacological strategy for cognitive dysfunctions.

5. An update on galanin and spexin and their potential for the treatment of type 2 diabetes and related metabolic disorders.

6. Exogenous GalR2-specific peptide agonist as a tool for treating myocardial ischemia/reperfusion injury.

7. Cortical spreading depolarization is a potential target for rat brain excitability modulation by Galanin.

8. Exogenous galanin alleviates hepatic steatosis by promoting autophagy via the AMPK-mTOR pathway.

9. Galanin 2 Receptor: A Novel Target for a Subset of Pancreatic Ductal Adenocarcinoma.

10. Astrocyte-derived adenosine excites sleep-promoting neurons in the ventrolateral preoptic nucleus: Astrocyte-neuron interactions in the regulation of sleep.

11. Galanin N-terminal fragment (1-15) reduces alcohol seeking and alcohol relapse in rats: Involvement of mesocorticolimbic system.

12. Galanin analogs prevent mortality from seizure-induced respiratory arrest in mice.

13. Galanin enhanced insulin-mediated intracellular signaling by regulating the stability of membrane-localized insulin/IR.

14. Time-restricted feeding prevents metabolic diseases through the regulation of galanin/GALR1 expression in the hypothalamus of mice.

15. Roles of Neuropeptides in Sleep-Wake Regulation.

16. Galanin (1-15) Enhances the Behavioral Effects of Fluoxetine in the Olfactory Bulbectomy Rat, Suggesting a New Augmentation Strategy in Depression.

17. Galanin mediates tumor-induced immunosuppression in head and neck squamous cell carcinoma.

18. Immortalized Bone Mesenchymal Stromal Cells With Inducible Galanin Expression Produce Controllable Pain Relief in Neuropathic Rats.

19. Galanin(1-15) Potentiates the Antidepressant-like Effects Induced by Escitalopram in a Rat Model of Depression.

20. Modified N-Terminal Fragments of Galanin: Cardioprotective Properties and Mechanisms of Action.

21. Cell-type specific expression and behavioral impact of galanin and GalR1 in the locus coeruleus during opioid withdrawal.

22. Activation of Galanin Receptor 1 with M617 Attenuates Neuronal Apoptosis via ERK/GSK-3β/TIP60 Pathway After Subarachnoid Hemorrhage in Rats.

23. Injection of galanin into the dorsal hippocampus impairs emotional memory independent of 5-HT 1A receptor activation.

24. Antioxidant Properties of Galanin and Its N-Terminal Fragments in in vitro and in vivo Oxidative Stress Modeling.

25. The activation of galanin receptor 2 plays an antinociceptive effect in nucleus accumbens of rats with neuropathic pain.

26. Beneficial effects of galanin system on diabetic peripheral neuropathic pain and its complications.

27. Cooperative effects of galanin and leptin on alleviation of insulin resistance in adipose tissue of diabetic rats.

28. Neuropeptide galanin and its effects on metabolic and reproductive disturbances in female rats with estradiol valerate (EV) - Induced polycystic ovary syndrome (PCOS).

29. Blunted leptin sensitivity during hedonic overeating can be reinstated by activating galanin 2 receptors (Gal2R) in the lateral hypothalamus.

30. Is Galanin a Promising Therapeutic Resource for Neural and Nonneural Diseases?

31. Galanin administration into the prelimbic cortex impairs consolidation and expression of contextual fear conditioning.

32. Galanin receptors activation modulates myocardial metabolic and antioxidant responses to ischaemia/reperfusion stress.

33. Influence of the regulatory peptide galanin on cytokine expression in human monocytes.

34. Galanin (1-15)-fluoxetine interaction in the novel object recognition test. Involvement of 5-HT1A receptors in the prefrontal cortex of the rats.

35. Cooperation between galanin and insulin in facilitating glucose transporter 4 translocation in adipose cells of diabetic rats.

36. Galanin plays a role in antinociception via binding to galanin receptors in the nucleus accumbens of rats with neuropathic pain.

37. Galanin receptor 1 plays an antinociceptive effect via inhibiting PKA activation in the nucleus accumbens of rats with neuropathic pain.

38. Galanin Protects Rat Cortical Astrocyte from Oxidative Stress: Involvement of GalR2 and pERK1/2 Signal Pathway.

39. Transportan-derived cell-penetrating peptide delivers siRNA to inhibit replication of influenza virus in vivo.

40. Protective Effects of a Novel Agonist of Galanin Receptors Against Doxorubicin-Induced Cardiotoxicity in Rats.

41. C7 peptide inhibits hepatocellular carcinoma metastasis by targeting the HGF/c-Met signaling pathway.

42. Central administration of galanin N-terminal fragment 1-15 decreases the voluntary alcohol intake in rats.

43. Central galanin receptor 2 mediates galanin action to promote systemic glucose metabolism of type 2 diabetic rats.

44. The Expression of Galanin in the Parafacial Respiratory Group and its Effects on Respiration in Neonatal Rats.

45. Galanin enhances systemic glucose metabolism through enteric Nitric Oxide Synthase-expressed neurons.

46. Galanin Administration Partially Restores Erectile Function After Cavernous Nerve Injury and Mediates Endogenous Nitrergic Nerve Outgrowth In Vitro.

47. Label-Free Confocal Raman Mapping of Transportan in Melanoma Cells.

48. Activiated galanin receptor 2 attenuates insulin resistance in skeletal muscle of obese mice.

49. Involvement of galanin and galanin receptor 1 in nociceptive modulation in the central nucleus of amygdala in normal and neuropathic rats.

50. The novel anticonvulsant neuropeptide and galanin analogue, NAX-5055, does not alter energy and amino acid metabolism in cultured brain cells.

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