Structural Biology and Computational Chemistry, IRBM SpA, Via Pontina Km 30 600, 00 071 Pomezia, Rome, Italy.
Drug Metabolism and Pharmacokinetics, IRBM SpA, Via Pontina Km 30 600, 00 071 Pomezia, Rome, Italy; Department of Chemical Science and Technology, University of Rome "Tor Vergata", 00133 Rome, Italy.
J Pharm Biomed Anal. 2022 Feb 20;210:114566. doi: 10.1016/j.jpba.2021.114566. Epub 2022 Jan 7.
Lipidation, a common strategy to improve half-life of therapeutic peptides, affects their tendency to oligomerize, their interaction with plasmatic proteins, and their catabolism. In this work, we have leveraged the use of NMR and SPR spectroscopy to elucidate oligomerization propensity and albumin interaction of different analogs of the two marketed lipidated GLP-1 agonists liraglutide and semaglutide. As most lipidated therapeutic peptides are administered by subcutaneous injection, we have also assessed in vitro their catabolism in the SC tissue using the LC-HRMS-based SCiMetPep assay. We observed that oligomerization had a shielding effect against catabolism. At the same time, binding to albumin may provide only limited protection from proteolysis due to the higher unbound peptide fraction present in the subcutaneous compartment with respect to the plasma. Finally, identification of catabolites in rat plasma after SC dosing of semaglutide showed a good correlation with the in vitro data, with Tyr-Leu being the major cleavage site. Early characterization of the complex interplay between oligomerization, albumin binding, and catabolism at the injection site is essential for the synthesis of lipidated peptides with good pharmacokinetic profiles.
脂质化是一种提高治疗性肽半衰期的常用策略,它会影响肽的聚集倾向、与血浆蛋白的相互作用以及它们的代谢分解。在这项工作中,我们利用 NMR 和 SPR 光谱学来阐明不同市售的 GLP-1 激动剂利拉鲁肽和司美格鲁肽的脂质化类似物的聚集倾向和白蛋白相互作用。由于大多数脂质化治疗性肽都是通过皮下注射给药,我们还使用基于 LC-HRMS 的 SCiMetPep 测定法评估了它们在 SC 组织中的体外代谢分解情况。我们观察到聚集对代谢分解具有屏蔽作用。同时,由于与血浆相比,皮下组织中存在更高的未结合肽分数,与白蛋白结合可能只能提供有限的保护,防止蛋白水解。最后,皮下给予司美格鲁肽后在大鼠血浆中鉴定的代谢产物与体外数据具有良好的相关性,Tyr-Leu 是主要的断裂位点。在注射部位早期对聚集、白蛋白结合和代谢分解之间的复杂相互作用进行表征对于合成具有良好药代动力学特征的脂质化肽至关重要。