Oxford Brookes University, Oxford.
Eur J Histochem. 2024 Jan 29;68(1):3959. doi: 10.4081/ejh.2024.3959.
Lectins are naturally occurring carbohydrate-binding proteins that are ubiquitous in nature and highly selective for their, often incompletely characterised, binding partners. From their discovery in the late 1880s to the present day, they have provided a broad palette of versatile tools for exploring the glycosylation of cells and tissues and for uncovering the myriad functions of glycosylation in biological systems. The technique of lectin histochemistry, used to map the glycosylation of tissues, has been instrumental in revealing the changing profile of cellular glycosylation in development, health and disease. It has been especially enlightening in revealing fundamental alterations in cellular glycosylation that accompany cancer development and metastasis, and has facilitated the identification of glycosylated biomarkers that can predict prognosis and may have utility in development of early detection and screening, Moreover, it has led to insights into the functional role of glycosylation in healthy tissues and in the processes underlying disease. Recent advances in biotechnology mean that our understanding of the precise binding partners of lectins is improving and an ever-wider range of lectins are available, including recombinant human lectins and lectins with enhanced, engineered properties. Moreover, use of traditional histochemistry to support a broad range of cutting-edge technologies and the development of high throughout microarray platforms opens the way for ever more sophisticated mapping - and understanding - of the glycome.
凝集素是天然存在的碳水化合物结合蛋白,广泛存在于自然界中,对其结合配偶体具有高度选择性,而这些结合配偶体的特征往往并不完全明确。从 19 世纪 80 年代末发现至今,凝集素为探索细胞和组织的糖基化以及揭示糖基化在生物系统中的多种功能提供了广泛而多样的工具。用于绘制组织糖基化图谱的凝集素组织化学技术对于揭示发育、健康和疾病过程中细胞糖基化的变化模式至关重要。它特别有助于揭示伴随癌症发生和转移而来的细胞糖基化的基本改变,并促进了糖基化生物标志物的鉴定,这些标志物可用于预测预后,并可能有助于早期检测和筛查的发展。此外,它还使人们深入了解糖基化在健康组织中的功能作用以及疾病背后的过程。生物技术的最新进展意味着我们对凝集素的确切结合配偶体的理解正在不断提高,并且可供使用的凝集素的范围也越来越广,包括重组人凝集素和具有增强、工程化特性的凝集素。此外,传统组织化学的应用支持了广泛的前沿技术,并开发了高通量微阵列平台,为更复杂的糖组学图谱绘制和理解开辟了道路。