State Key Laboratory of NBC Protection for Civilian, Beijing, 102205, China.
Beijing Key Laboratory of Bioprocess, College of Life Science and Technology, Beijing University of Chemical Technology, Beijing, 100029, China.
Amino Acids. 2024 Mar 30;56(1):26. doi: 10.1007/s00726-023-03366-2.
Peptide drugs have disadvantages such as low stability, short half-life and side effects, which limit their widespread use in clinical practice. Therefore, peptide drugs can be modified to improve these disadvantages. Numerous studies have shown that alkyl-modified peptide drugs can self-assemble to prolong the duration of efficacy and/or reduce side effects. However, the commonly used solid-phase synthesis method for alkyl-modified peptides is time-consuming. To overcome this, a simple reductive amination reaction was employed, which can directly graft the alkyl chain to the peptide sequence and effectively avoid stepwise synthesis from C- to N-terminal with amino acids. In this study, ω-conotoxin MVIIA was used as the peptide drug, while myristic aldehyde was used as the alkylating agent. To obtain the maximum productivity of modified peptides, the molar ratio of peptide MVIIA to myristic aldehyde in the reductive amination reaction was optimized. Furthermore, the peptide modification sites in this reaction were confirmed by secondary mass spectrometry analysis. Besides, alkyl-modified peptide MVIIA was able to form micelles by self-assembly and improved stability in serum, which was related to our previous work where myristoylated peptide MVIIA micelles can improve the drug stability. Finally, this study was intended to provide a methodological basis for modifying the alkyl chain of peptide drugs.
肽类药物存在稳定性低、半衰期短和副作用等缺点,限制了其在临床实践中的广泛应用。因此,可以对肽类药物进行修饰以改善这些缺点。大量研究表明,烷基修饰的肽类药物可以自组装,以延长疗效持续时间和/或降低副作用。然而,常用于烷基修饰肽的固相合成方法耗时较长。为了克服这一问题,采用了简单的还原胺化反应,该反应可以直接将烷基链接枝到肽序列上,并有效地避免了从 C 端到 N 端逐步合成氨基酸。在这项研究中,ω-芋螺毒素 MVIIA 被用作肽类药物,而十四醛被用作烷基化试剂。为了获得最大产量的修饰肽,优化了还原胺化反应中肽 MVIIA 与十四醛的摩尔比。此外,通过二级质谱分析确认了该反应中的肽修饰位点。此外,烷基修饰的肽 MVIIA 可以通过自组装形成胶束,并提高血清中的稳定性,这与我们之前的工作有关,其中豆蔻酰化肽 MVIIA 胶束可以提高药物稳定性。最后,这项研究旨在为修饰肽类药物的烷基链提供方法学基础。