Glycan arrays and other tools produced by automated glycan assembly

Peter H. Seeberger
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引用次数: 6

Abstract

Carbohydrates are the dominant biopolymer on earth and play important roles ranging from building material for plants to function in many biological systems. Glycans remain poorly studied due to a lack of synthetic tools. The goal of my laboratory has been to develop a general method for the automated assembly of glycans. The general protocols we developed resulted in the commercialisation of the Glyconeer 2.1™ synthesizer as well as the building blocks and all reagents. Oligosaccharides as long as 50-mers are now accessible within days. Rapid access to defined oligosaccharides has been the foundation to many applications including synthetic tools such as glycan microarrays, glycan nanoparticles and anti-glycan antibodies. The platform technology is helping to address real-life problems by the creation of new vaccines and diagnostics. After addressing mainly mammalian glycobiology earlier, material science and plant biology are benefitting increasingly from synthetic glycans.

聚糖阵列和其他由自动聚糖组装产生的工具
碳水化合物是地球上主要的生物聚合物,在许多生物系统中扮演着重要的角色,从植物的建筑材料到功能。由于缺乏合成工具,对聚糖的研究仍然很少。我实验室的目标是开发一种自动组装聚糖的通用方法。我们制定的一般方案导致Glyconeer 2.1™合成器以及构建模块和所有试剂的商业化。长50米的低聚糖现在可以在几天内获得。快速获取寡糖已成为许多应用的基础,包括合成工具,如聚糖微阵列、聚糖纳米颗粒和抗聚糖抗体。该平台技术通过创造新的疫苗和诊断方法,帮助解决现实生活中的问题。在早期主要研究哺乳动物糖生物学之后,材料科学和植物生物学越来越多地从合成聚糖中受益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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