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壳寡糖的胍基化涉及到还原端胍基的内部环化以及胍基化对蛋白质结合能力的影响。

Guanidinylation of Chitooligosaccharides Involving Internal Cyclization of the Guanidino Group on the Reducing End and Effect of Guanidinylation on Protein Binding Ability.

机构信息

Graduate School of Engineering, Tottori University, 4-101 Koyama-Minami, Tottori 680-8550, Japan.

Centre for Research on Green Sustainable Chemistry, Tottori University, Tottori 680-8550, Japan.

出版信息

Biomolecules. 2019 Jul 5;9(7):259. doi: 10.3390/biom9070259.

Abstract

In order to synthesize a promising material for developing a novel peptide/protein delivery system, guanidinylation of chitooligosaccharides with 1-amidinopyrazole hydrochloride was investigated herein. The production of guanidinylated chitooligosaccharides was demonstrated by infrared spectroscopy (IR), nuclear magnetic resonance (NMR), and elemental analyses. Interestingly, we found that the reducing end in the guanidinylated chitooligosaccharides was converted to a cyclic guanidine structure (2-[(aminoiminomethyl)amino]-2-deoxy-d-glucose structure). This reaction was carefully proven by the guanidinylation of d-glucosamine. Although this is not the first report on the synthesis of the 2-[(aminoiminomethyl)amino]-2-deoxy-d-glucose, it has provided a rational synthetic route using the high reactivity of the reducing end. Furthermore, we found that the interaction between chitooligosaccharides and bovine serum albumin is weak when in a neutral pH environment; however, it is significantly improved by guanidinylation. The guanidinylated chitooligosaccharides are useful not only for the development of a novel drug delivery system but also as a chitinase/chitosanase inhibitor and an antibacterial agent.

摘要

为了合成一种有前途的新型肽/蛋白质递药系统的材料,本文研究了用 1-脒基吡唑盐酸盐对壳寡糖进行胍基化。红外光谱(IR)、核磁共振(NMR)和元素分析证明了胍基化壳寡糖的生成。有趣的是,我们发现胍基化壳寡糖的还原端转化为环状胍基结构(2-[(氨基亚氨基甲基)氨基]-2-脱氧-d-葡萄糖结构)。通过对 d-葡萄糖胺的胍基化反应,这一反应得到了仔细的证实。尽管这不是首次报道 2-[(氨基亚氨基甲基)氨基]-2-脱氧-d-葡萄糖的合成,但它提供了一条使用还原端高反应性的合理合成路线。此外,我们发现壳寡糖与牛血清白蛋白在中性 pH 环境下的相互作用较弱,但胍基化后显著增强。胍基化壳寡糖不仅可用于新型药物递药系统的开发,还可用作几丁质酶/壳聚糖酶抑制剂和抗菌剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/976c/6681198/dd6e22967db8/biomolecules-09-00259-sch001.jpg

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