Dipartimento di Chimica, Universita' degli Studi di Milano, Milano, Italy.
Med Res Rev. 2020 Mar;40(2):495-531. doi: 10.1002/med.21625. Epub 2019 Jul 30.
In the past few decades, our understanding of glycan information-encoding power has notably increased, thus leading to a significant growth also in the design and synthesis of glycomimetic probes. Combining data from multiple analytical sources, such as crystallography, nuclear magnetic resonance spectroscopy, and other biophysical methods (eg, surface plasmon resonance and carbohydrate microarrays) has allowed to shed light on the key interaction events between carbohydrates and their protein-targets. However, the low metabolic stability of carbohydrates and their high hydrophilicity, which translates in low bioavailability, undermine their development as drugs. In this framework, the design of chemically modified analogues (called carbohydrate mimics or glycomimetics) appears as a valid alternative for the development of therapeutic agents. Glycomimetics, as structural and functional mimics of carbohydrates, can replace the native ligands in the interaction with target proteins, but are designed to show enhanced enzymatic stability and bioavailability and, possibly, an improved affinity and selectivity toward the target. In the present account, we specifically focus on the most recent advances in the design and synthesis of glycomimetics. In particular, we highlight the efforts of the scientific community in the development of straightforward synthetic procedures for the preparation of sugar mimics and in their preliminary biological evaluation.
在过去几十年中,我们对糖基信息编码能力的理解显著增强,这也导致了糖模拟探针的设计和合成有了显著的发展。将来自多个分析来源的数据(例如结晶学、核磁共振波谱学和其他生物物理方法(例如表面等离子体共振和糖微阵列)相结合,使我们能够揭示碳水化合物与其蛋白质靶标之间的关键相互作用事件。然而,碳水化合物的低代谢稳定性和高亲水性,转化为低生物利用度,这破坏了它们作为药物的发展。在这一框架内,设计化学修饰的类似物(称为碳水化合物模拟物或糖模拟物)是开发治疗剂的有效替代方法。糖模拟物作为碳水化合物的结构和功能模拟物,可以在与靶蛋白的相互作用中替代天然配体,但设计目的是提高酶稳定性和生物利用度,并可能提高对靶标的亲和力和选择性。在本报告中,我们特别关注糖模拟物设计和合成的最新进展。特别是,我们强调科学界在开发用于制备糖模拟物的简单合成程序以及对其进行初步生物学评估方面所做的努力。