Bai Di, Kim Hyunjung, Wang Pengfei
Department of Chemistry, University of Alabama at Birmingham, Birmingham, AL AL35294 USA.
Med Chem Res. 2024;33(8):1292-1306. doi: 10.1007/s00044-024-03227-x. Epub 2024 May 18.
Many natural saponins demonstrate immunostimulatory adjuvant activities, but they also have some inherent drawbacks that limit their clinical use. To overcome these limitations, extensive structure-activity-relationship (SAR) studies have been conducted. The SAR studies of QS-21 and related saponins reveal that their respective fatty side chains are crucial for potentiating a strong cellular immune response. Replacing the hydrolytically unstable ester side chain in the C28 oligosaccharide domain with an amide side chain in the same domain or in the C3 branched trisaccharide domain is a viable approach for generating robust semisynthetic saponin immunostimulants. Given the striking resemblance of natural saponins (MS) I and II to the deacylated (QS) saponins (e.g., QS-17, QS-18, and QS-21), incorporating an amide side chain into the more sustainable MS, instead of deacylated QS saponins, led to the discovery of MS-derived semisynthetic immunostimulatory adjuvants VSA-1 and VSA-2. This review focuses on the authors' previous work on SAR studies of QS and MS saponins.
许多天然皂苷具有免疫刺激佐剂活性,但它们也有一些固有缺点,限制了其临床应用。为克服这些限制,已开展了广泛的构效关系(SAR)研究。对QS-21及相关皂苷的SAR研究表明,它们各自的脂肪侧链对于增强强烈的细胞免疫反应至关重要。用同一结构域或C3分支三糖结构域中的酰胺侧链取代C28寡糖结构域中水解不稳定的酯侧链,是生成强大的半合成皂苷免疫刺激剂的可行方法。鉴于天然皂苷(MS)I和II与脱酰基(QS)皂苷(如QS-17、QS-18和QS-21)极为相似,将酰胺侧链引入更具可持续性的MS而非脱酰基QS皂苷中,从而发现了源自MS的半合成免疫刺激佐剂VSA-1和VSA-2。本综述聚焦于作者先前关于QS和MS皂苷构效关系研究的工作。