生长素
恶病质
化学
内分泌学
调解人
受体
内科学
分泌物
脂肪生成
催乳素
肌肉萎缩
激素
分解代谢
生长激素
药理学
细胞生长
蛋白质水解
肽类激素
萎缩
兴奋剂
结构-活动关系
药效学
生物活性
骨骼肌
胰岛素
作者
Cristina Gardelli,Antonio Llinàs,Igor L. Shamovsky,Yao Xiong,Rongfeng Chen,Moya Caffrey,Lotta Hidestål,Asim K. Ray,Martin Cooper,Tina Jellesmark Jensen,Leif Hultin,Jan Andersson,Sara Lundqvist,Botilda Lindberg,Helena Douglasson,Nina Krutrök,Anna Pettersen,Richard J. Lewis,Paul Jansson
标识
DOI:10.1021/acs.jmedchem.5c02097
摘要
Muscle atrophy and cachexia are common comorbidities among patients suffering from cancer, chronic obstructive pulmonary disease, acquired immunodeficiency syndrome, and several other chronic diseases. The peptide hormone ghrelin exerts pleiotropic effects; it acts by stimulating growth hormone secretion and subsequent increase of insulin-like growth factor-1 levels, an important mediator of muscle growth and repair. Ghrelin also acts on inflammation, appetite, and adipogenesis and, therefore, has been considered a promising therapeutic target for catabolic conditions. We previously reported on the synthesis and properties of indane- and pyrrolidine-based series of ghrelin receptor full agonists, which led to a sustained increase of insulin-like growth factor-1 in a dog pharmacodynamic study. Herein, we report a subsequent lead optimization work that, taking advantage of the previous work on indanes and pyrrolidines, with the synthesis of only two dozen compounds, brought to the identification of compound 22 suitable for progression as a clinical candidate.
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