Narla Satya Nandana, Nie Huan, Li Yu, Sun Xue-Long
Department of Chemistry, Chemical and Biomedical Engineering and Center for Gene Regulation in Health and Disease (GRHD), Cleveland State University, 2121 Euclid Avenue, Cleveland, OH, 44115, USA.
Department of Life Science and Engineering, Harbin Institute of Technology, Harbin, China, 150001.
Glycoconj J. 2015 Oct;32(7):483-95. doi: 10.1007/s10719-015-9580-z. Epub 2015 May 10.
Glycan microarray has become a powerful high-throughput tool for examining binding interactions of carbohydrates with the carbohydrate binding biomolecules like proteins, enzymes, antibodies etc. It has shown great potential for biomedical research and applications, such as antibody detection and profiling, vaccine development, biomarker discovery, and drug screening. Most glycan microarrays were made with monovalent glycans immobilized directly onto the array surface via either covalent or non-covalent bond, which afford a multivalent glycans in two dimensional (2D) displaying. A variety of glyco-macroligands have been developed to mimic multivalent carbohydrate-protein interactions for studying carbohydrate-protein interactions and biomedical research and applications. Recently, a number of glyco-macroligands have been explored for glycan microarray fabrication, in particular to mimick the three dimensional (3D) multivalent display of cell surface carbohydrates. This review highlights these recent developments of glyco-macroligand-based microarrays, predominantly, novel glycan microarrays with glyco-macroligands like glycodendrimers, glycopolymers, glycoliposomes, neoglycoproteins, and glyconanoparticles with the effort in controlling the density and orientation of glycans on the array surface, which facilitate both their binding specificity and affinity and thus the high performance of glycan microarrays.
聚糖微阵列已成为一种强大的高通量工具,用于检测碳水化合物与蛋白质、酶、抗体等碳水化合物结合生物分子之间的结合相互作用。它在生物医学研究和应用中显示出巨大潜力,如抗体检测与分析、疫苗开发、生物标志物发现以及药物筛选。大多数聚糖微阵列是通过共价键或非共价键将单价聚糖直接固定在阵列表面制成的,这在二维(2D)展示中提供了多价聚糖。已开发出多种糖基大环配体来模拟多价碳水化合物 - 蛋白质相互作用,用于研究碳水化合物 - 蛋白质相互作用以及生物医学研究和应用。最近,人们探索了多种糖基大环配体用于聚糖微阵列的制备,特别是为了模拟细胞表面碳水化合物的三维(3D)多价展示。本综述重点介绍了基于糖基大环配体的微阵列的这些最新进展,主要是具有糖基大环配体(如糖树枝状大分子、糖聚合物、糖脂质体、新糖蛋白和糖纳米颗粒)的新型聚糖微阵列,这些努力旨在控制阵列表面聚糖的密度和方向,这有助于提高它们的结合特异性和亲和力,从而提升聚糖微阵列的高性能。