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Chain-Shortened Myostatin Inhibitory Peptides Improve Grip Strength in Mice

机译:链缩短的肌肉抑制蛋白抑制肽改善小鼠握持强度

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Inhibition of myostatin is a promising strategy for treatment of muscle atrophic disorders. We had already identified a 23mer peptide (1) as a synthetic myostatin inhibitor, and structure activity relationship studies with 1 afforded a potent 22-mer peptide derivative (3). Herein, we report the shortest myostatin inhibitory peptide so far. Among chain-shortened 16-mer peptidic inhibitors derived from the C-terminal region of 3, peptide inhibitor 8a with beta-sheet propensity was twice as potent as 22-mer inhibitor 3 and significantly increased not only muscle mass but also hind limb grip strength in Duchenne muscular dystrophic model mice. These results suggest that 8a is a promising platform for drug development treating muscle atrophic disorders.
机译:抑制myostatin是治疗肌萎缩疾病的有希望的策略。 我们已经鉴定了23mer肽(1)作为合成肌肉抑制剂抑制剂,并且结构活性关系研究用1提供了效率的22-MEL肽衍生物(3)。 在此,我们以迄今为止报告最短的肌肌抑素抑制肽。 在衍生自3的C-末端区域的链条缩短的16-MER肽抑制剂中,肽抑制剂8a具有β-张倾向的效率是22-MEL抑制剂3的两倍,并且不仅显着增加肌肉质量,而且显着增加,但也是后肢夹具强度 在Duchenne肌营养不良模型小鼠。 这些结果表明,8A是治疗肌萎缩疾病的药物开发的有希望的平台。

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