Parente Michael Jack, Sitharaman Balaji
Millennial Scientific, Stony Brook, New York 11790, United States.
ACS Omega. 2025 Aug 6;10(32):35666-35677. doi: 10.1021/acsomega.5c02172. eCollection 2025 Aug 19.
Innovations in liquid chromatography stationary phase media can address emerging peptide separation and purification challenges. Herein, we report the synthesis of novel carbon microbeads from natural micrographite flakes as the starting material (referred to as All Carbon microbeads) and their performance as reversed-phase liquid chromatography stationary phase media using the glucagon-like peptide-1 (GLP-1) analogs semaglutide and liraglutide as probe analytes. High-performance liquid chromatography (HPLC) performance metrics were characterized and validated, including column efficiency measured by theoretical plate count (), as well as linear response, precision, limit of detection (LOD), limit of quantitation (LOQ), and loading capacity. Commercially available silica C18 media, the current industry standard, were used as controls for comparison. The results indicated that HPLC columns packed with All Carbon microbeads consistently separate the GLP-1 analogs with retention times similar to those of the reference silica C18 columns. Their performance metrics are comparable to those of silica C18 in terms of plate count (N), LOD, LOQ, and loading capacity. Additionally, they perform better in the precision of retention time and linear response compared with silica C18. The chromatographic performance of All Carbon microbeads was stable in the presence of ion-pairing agents, extreme pHs (pH 1 and 13), salt concentrations, under field conditions (liraglutide crude), and with 100% aqueous loading conditions. The results present opportunities for further development as a sustainable reversed-phase media for GLP-1 analog analytical characterization and manufacturing.
液相色谱固定相介质的创新可以应对新出现的肽分离和纯化挑战。在此,我们报告了以天然微晶石墨薄片为起始原料合成新型碳微珠(称为全碳微珠),以及使用胰高血糖素样肽-1(GLP-1)类似物司美格鲁肽和利拉鲁肽作为探针分析物,将其作为反相液相色谱固定相介质的性能。对高效液相色谱(HPLC)性能指标进行了表征和验证,包括通过理论塔板数()测量的柱效,以及线性响应、精密度、检测限(LOD)、定量限(LOQ)和负载量。使用市售的硅胶C18介质(当前行业标准)作为对照进行比较。结果表明,填充全碳微珠的HPLC柱能够持续分离GLP-1类似物,其保留时间与参考硅胶C18柱相似。在塔板数(N)、LOD、LOQ和负载量方面,它们的性能指标与硅胶C18相当。此外,与硅胶C18相比,它们在保留时间精密度和线性响应方面表现更好。在存在离子对试剂、极端pH值(pH 1和13)、盐浓度、现场条件(利拉鲁肽粗品)以及100%水相负载条件下,全碳微珠的色谱性能稳定。这些结果为作为用于GLP-1类似物分析表征和制造的可持续反相介质的进一步开发提供了机会。