Kanemitsu T, Kanie O
Biomolecular Science Technology Department, Mitsubishi Kagaku Institute of Life Sciences (MITILS), Machida-shi, Tokyo, 194-8511, Japan.
Comb Chem High Throughput Screen. 2002 Aug;5(5):339-60. doi: 10.2174/1386207023330183.
Oligosaccharides, commonly found on the cell surfaces, are deeply involved in a variety of important biological functions, yet demanding difficulties synthesizing such structures limit the investigation of their functions. Technologies to chemically synthesize these oligosaccharides have dramatically advanced during the last two decades mainly due to the introduction of good anomeric leaving groups. In addition, tactical analyses have been addressed to enhance the overall efficiency of oligosaccharide synthesis. Based on the advancement of solution-phase chemistry, solid-phase technologies are being investigated in connection with the current trend of combinatorial chemistry and high throughput screening. This review summarizes the necessary solution-phase methodologies, the status of solid-phase synthesis of oligosaccharides, and combinatorial synthesis of oligosaccharide libraries.
寡糖通常存在于细胞表面,深度参与多种重要的生物学功能,然而合成此类结构所需的困难限制了对其功能的研究。在过去二十年中,化学合成这些寡糖的技术取得了显著进展,这主要归功于引入了良好的异头离去基团。此外,人们已经进行了策略分析以提高寡糖合成的整体效率。基于溶液相化学的进展,固相技术正结合组合化学和高通量筛选的当前趋势进行研究。本文综述了必要的溶液相方法、寡糖固相合成的现状以及寡糖文库的组合合成。