Institute for Chemistry, Humboldt Universität zu Berlin, Brook-Taylor-Str. 2, 12489 Berlin, Germany.
Chemistry Department, Faculty of Science, Suez Canal University, Ismailia 41522, Egypt.
Int J Mol Sci. 2021 Jul 29;22(15):8171. doi: 10.3390/ijms22158171.
Sphingolipids are ubiquitous in eukaryotic plasma membranes and play major roles in human and animal physiology and disease. This class of lipids is usually defined as being derivatives of sphingosine, a long-chain 1,3-dihydroxy-2-amino alcohol. Various pathological conditions such as diabetes or neuropathy have been associated with changes in the sphingolipidome and an increased biosynthesis of structurally altered non-canonical sphingolipid derivatives. These unusual or non-canonical sphingolipids hold great promise as potential diagnostic markers. However, due to their low concentrations and the unavailability of suitable standards, the research to explore the secret of this class of 'Sphinx' lipids is ultimately hampered. Therefore, the development of efficient and facile syntheses of standard compounds is a key endeavor. Here, we present various chemical approaches for stereoselective synthesis and in-depth chemical characterization of a set of novel sphingoid bases which were recently utilized as valuable tools to explore the metabolism and biophysical properties of sphingolipids, but also to develop efficient analytical methods for their detection and quantification.
鞘脂类普遍存在于真核细胞膜中,在人和动物的生理和疾病中发挥主要作用。这类脂质通常被定义为鞘氨醇的衍生物,鞘氨醇是一种长链 1,3-二羟基-2-氨基醇。各种病理状况,如糖尿病或神经病,与鞘脂组的变化和结构改变的非典型鞘脂衍生物的生物合成增加有关。这些不寻常或非典型的鞘脂类有望成为潜在的诊断标志物。然而,由于其浓度低,且缺乏合适的标准品,因此探索这类“斯芬克斯”脂质秘密的研究最终受到阻碍。因此,开发标准化合物的高效和简便合成方法是一项关键工作。在这里,我们介绍了几种用于立体选择性合成和一组新型神经酰胺碱基的深入化学表征的化学方法,这些碱基最近被用作探索鞘脂代谢和生物物理特性的有价值的工具,但也被开发用于检测和定量它们的有效分析方法。