Department of Chemical Science and Technologies, University of Rome Tor Vergata, Via della Ricerca Scientifica 1, 00133 Rome, Italy.
Molecules. 2023 Nov 11;28(22):7536. doi: 10.3390/molecules28227536.
The pharmacokinetics of peptide drugs are strongly affected by their aggregation properties and the morphology of the nanostructures they form in their native state as well as in their therapeutic formulation. In this contribution, we analyze the aggregation properties of a Liraglutide analogue (LG18), a leading drug against diabetes type 2. LG18 is a lipopeptide characterized by the functionalization of a lysine residue (K26) with an 18C lipid chain. To this end, spectroscopic experiments, dynamic light scattering measurements, and molecular dynamics simulations were carried out, following the evolution of the aggregation process from the small LG18 clusters formed at sub-micromolar concentrations to the mesoscopic aggregates formed by aged micromolar solutions. The critical aggregation concentration of LG18 in water (pH = 8) was found to amount to 4.3 μM, as assessed by the pyrene fluorescence assay. MD simulations showed that the LG18 nanostructures are formed by tetramer building blocks that, at longer times, self-assemble to form micrometric supramolecular architectures.
肽类药物的药代动力学受到其聚集特性以及它们在天然状态和治疗制剂中形成的纳米结构形态的强烈影响。在本研究中,我们分析了一种利拉鲁肽类似物(LG18)的聚集特性,LG18 是一种针对 2 型糖尿病的领先药物。LG18 是一种带有 18 个碳脂质链的赖氨酸(K26)功能化的脂肽。为此,进行了光谱实验、动态光散射测量和分子动力学模拟,以研究从小于微摩尔浓度形成的 LG18 小聚集体到由老化的微摩尔溶液形成的介观聚集体的聚集过程的演变。通过芘荧光法评估,LG18 在水中(pH = 8)的临界聚集浓度为 4.3 μM。MD 模拟表明,LG18 纳米结构由四聚体构建块形成,这些构建块在较长时间内自组装形成微米级超分子结构。