Dang Kai, Zhang Wenjuan, Jiang Shanfeng, Lin Xiao, Qian Airong
Laboratory for Bone Metabolism, Xi'an Key Laboratory of Special Medicine and Health Engineering, Key Laboratory for Space Biosciences and Biotechnology, Research Center for Special Medicine and Health Systems Engineering, NPU-UAB Joint Laboratory for Bone Metabolism, School of Life Sciences Northwestern Polytechnical University Xi'an 710072, Shaanxi China.
ChemistryOpen. 2020 Mar 2;9(3):285-300. doi: 10.1002/open.201900326. eCollection 2020 Mar.
Many proteins in living organisms are glycosylated. As their glycan patterns exhibit protein-, cell-, and tissue-specific heterogeneity, changes in the glycosylation levels could serve as useful indicators of various pathological and physiological states. Thus, the identification of glycoprotein biomarkers from specific changes in the glycan profiles of glycoproteins is a trending field. Lectin microarrays provide a new glycan analysis platform, which enables rapid and sensitive analysis of complex glycans without requiring the release of glycans from the protein. Recent developments in lectin microarray technology enable high-throughput analysis of glycans in complex biological samples. In this review, we will discuss the basic concepts and recent progress in lectin microarray technology, the application of lectin microarrays in biomarker discovery, and the challenges and future development of this technology. Given the tremendous technical advancements that have been made, lectin microarrays will become an indispensable tool for the discovery of glycoprotein biomarkers.
生物体内的许多蛋白质都进行了糖基化修饰。由于其聚糖模式呈现出蛋白质、细胞和组织特异性的异质性,糖基化水平的变化可作为各种病理和生理状态的有用指标。因此,从糖蛋白聚糖谱的特定变化中鉴定糖蛋白生物标志物是一个热门领域。凝集素微阵列提供了一个新的聚糖分析平台,无需从蛋白质中释放聚糖就能对复杂聚糖进行快速灵敏的分析。凝集素微阵列技术的最新进展使得对复杂生物样品中的聚糖进行高通量分析成为可能。在这篇综述中,我们将讨论凝集素微阵列技术的基本概念和最新进展、凝集素微阵列在生物标志物发现中的应用以及该技术面临的挑战和未来发展。鉴于已取得的巨大技术进步,凝集素微阵列将成为发现糖蛋白生物标志物不可或缺的工具。