Tomita Shunsuke, Nagai-Okatani Chiaki
Health and Medical Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba, Ibaraki 305-8566, Japan.
School of Integrative and Global Majors, University of Tsukuba, Tsukuba, Ibaraki 305-8577, Japan.
BBA Adv. 2024 Dec 8;7:100129. doi: 10.1016/j.bbadva.2024.100129. eCollection 2025.
Chemical-nose/tongue technologies are emerging as promising analytical tools for glycan analysis. After briefly introducing the importance of glycans and their analytical methods, including the lectin microarray (LMA) as one of the gold standards, the fundamental principles underlying chemical noses/tongues are explained and various applications for monosaccharides and glycans are introduced. Then, the similarities and differences of these two approaches are discussed. While both technologies aim to comprehensively profile biospecimens based on 'interaction patterns' between multiple recognition probes and analytes, each has its own strengths. LMAs excel at specific, targeted analysis based on defined lectin-glycan interactions, whereas chemical nose/tongue offers greater flexibility and expandability in terms of system design, making it well-suited for discovering unknown glycan profiles and detecting broader differences in glycan mixtures. In the future, chemical-nose/tongue technologies may be applied to niche areas in glycan analysis and become powerful tools that complement LMA techniques.
化学鼻/舌技术正成为用于聚糖分析的颇具前景的分析工具。在简要介绍聚糖的重要性及其分析方法(包括作为金标准之一的凝集素微阵列(LMA))之后,阐述了化学鼻/舌的基本原理,并介绍了其在单糖和聚糖方面的各种应用。然后,讨论了这两种方法的异同。虽然这两种技术都旨在基于多种识别探针与分析物之间的“相互作用模式”对生物样本进行全面分析,但各有其优势。LMA擅长基于特定的凝集素 - 聚糖相互作用进行特定的靶向分析,而化学鼻/舌在系统设计方面具有更大的灵活性和可扩展性,使其非常适合发现未知的聚糖谱并检测聚糖混合物中更广泛的差异。未来,化学鼻/舌技术可能会应用于聚糖分析的特定领域,并成为补充LMA技术的强大工具。