Biofunctional Chemistry Laboratory, A. Butlerov Institute of Chemistry, Kazan Federal University, 18 Kremlyovskaya Street, 420008 Kazan, Russia.
Biofunctional Synthetic Chemistry Laboratory, RIKEN Cluster for Pioneering Research, 2-1 Hirosawa, Wako-shi, Saitama 351-0198, Japan.
Molecules. 2022 Feb 14;27(4):1285. doi: 10.3390/molecules27041285.
Neoglycoconjugates mimicking natural compounds and possessing a variety of biological functions are very successful tools for researchers to understand the general mechanisms of many biological processes in living organisms. These substances are characterized by high biotolerance and specificity, with low toxicity. Due to the difficult isolation of individual glycoclusters from biological objects, special interest has been directed toward synthetic analogs. This review is mainly focused on the one-pot, double-click methodology (containing alkyne-azide click cycloaddition with the following 6π-azaelectrocyclization reactions) used in the synthesis of -glycoconjugates. Homogeneous (including one type of biantennary -glycan fragments) and heterogeneous (containing two to four types of biantennary -glycan fragments) glycoclusters on albumin were synthesized via this strategy. A series of cell-, tissue- and animal-based experiments proved glycoclusters to be a very promising class of targeted delivery systems. Depending on the oligosaccharide units combined in the cluster, their amount, and arrangement relative to one another, conjugates can recognize various cells, including cancer cells, with high selectivity. These results open new perspectives for affected tissue visualization and treatment.
模拟天然化合物并具有多种生物功能的糖缀合物是研究人员理解生物体内许多生物过程一般机制的非常成功的工具。这些物质具有高生物耐受性和特异性,毒性低。由于从生物对象中分离单个糖簇非常困难,因此人们特别关注合成类似物。本文主要集中讨论一锅双点击方法(包含炔基-叠氮点击环加成与随后的 6π-氮杂电环化反应)在 -糖缀合物合成中的应用。通过该策略合成了白蛋白上的均相(包括一种类型的双触角 -糖片段)和异相(包含两种到四种类型的双触角 -糖片段)糖簇。一系列基于细胞、组织和动物的实验证明糖缀合物是一类很有前途的靶向递药系统。根据组合在簇中的寡糖单元、其数量以及彼此之间的排列方式,缀合物可以高度选择性地识别包括癌细胞在内的各种细胞。这些结果为受影响组织的可视化和治疗开辟了新的前景。