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1. Design, Synthesis, and Evaluation of Proline and Pyrrolidine Based Melanocortin Receptor Agonists. A Conformationally Restricted Dipeptide Mimic Approach

2. Synthesis of Tic-d-Phe Ψ[CH2–CH2] isostere and its use in the development of melanocortin receptor agonists

3. Design, synthesis, and evaluation of proline based melanocortin receptor ligands

4. Activation of the CRF 2 receptor modulates skeletal muscle mass under physiological and pathological conditions

5. Two novel paradigms for the simultaneous assessment of conditioned taste aversion and food intake effects of anorexic agents

6. Assessment of the aversive consequences of acute and chronic administration of the melanocortin agonist, MTII

7. Proteomic analysis of the atrophying rat soleus muscle following denervation

8. Discovery of orally bioavailable 1,3,4-trisubstituted 2-oxopiperazine-based melanocortin-4 receptor agonists as potential antiobesity agents

9. Design and synthesis of potent and selective 1,3,4-trisubstituted-2-oxopiperazine based melanocortin-4 receptor agonists

10. The effect of the melanocortin agonist, MT-II, on the defended level of body adiposity

11. Activation of the vasoactive intestinal peptide 2 receptor modulates normal and atrophying skeletal muscle mass and force

12. Corticotropin releasing factor 2 receptor agonists reduce the denervation-induced loss of rat skeletal muscle mass and force and increase non-atrophying skeletal muscle mass and force

13. Skeletal muscle hypertrophy and anti-atrophy effects of clenbuterol are mediated by the beta2-adrenergic receptor

14. Magnetic resonance imaging of denervation-induced muscle atrophy: effects of clenbuterol in the rat

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