肽
体外
体内
二硫键
化学
药物开发
寡肽
肽序列
生物化学
药品
生物
药理学
基因
遗传学
作者
Fu Li,Minghua Lei,Junye Xie,Shujun Guo,Weicai Li,Xinrong Ren,Wei Teng,Shu-fei Lin,Qiuling Xie,Xiaojia Chen
标识
DOI:10.3390/bioengineering10060674
摘要
Peptides pose a challenge in drug development due to their short half-lives in vivo. In this study, we conducted in vitro degradation experiments on SAIF, which is a shark-derived peptide that we previously studied. The degradation fragments were sequenced and a truncated peptide sequence was identified. The truncated peptide was then cloned and expressed via the E. coli system with traceless cloning to form a novel cyclic peptide in vitro oxidation condition via the formation of a disulfide bond between the N- and C-termini, which was named ctSAIF. ctSAIF exhibited high anti-HCC activity and enhanced enzymatic stability in vitro, and retained antitumor activity and good biocompatibility in systemic circulation in a HCC xenograft model. Our study discovered and characterized a novel shark-derived cyclic peptide with antitumor activity, laying a foundation for its further development as an antitumor drug candidate. The study also provided a new solution for peptide drug development.
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