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4,6-O-亚苄基缩醛保护的D-葡萄糖和D-葡萄糖胺β-1,2,3-三唑衍生物的合成及自组装性质

Synthesis and self-assembling properties of 4,6-O-benzylidene acetal protected D-glucose and D-glucosamine β-1,2,3-triazole derivatives.

作者信息

Chen Anji, Okafor Ifeanyi S, Garcia Consuelo, Wang Guijun

机构信息

Department of Chemistry and Biochemistry, Old Dominion University, Norfolk, VA, 23529, USA.

Department of Chemistry and Biochemistry, Old Dominion University, Norfolk, VA, 23529, USA.

出版信息

Carbohydr Res. 2018 May 22;461:60-75. doi: 10.1016/j.carres.2018.02.011. Epub 2018 Feb 23.

Abstract

Sugar based low molecular weight gelators (LMWGs) are useful small molecules that can form reversible supramolecular gels with many applications. Selective functionalization of common monosaccharides has resulted in several classes of effective LMWGs. Recently we found that certain peracetylated sugars containing anomeric triazole functional groups were effective gelators. In this study we synthesized two series of 4,6-O-benzylidene acetal protected β-1,2,3-triazolyl glycoside of D-glucose and N-acetyl D-glucosamine derivatives and evaluated their self-assembling properties in a few solvents. Several gelators were obtained and the gelation properties of these compounds rely on the structures of the 4-triazolyl substituents. Typically, alkyl derivatives resulted in effective gelation in organic solvents and aqueous mixtures of ethanol and dimethyl sulfoxide. But further acetylation of these compounds resulted in loss of gelation properties. The gels were characterized using optical microscopy, rheology, and FTIR spectroscopy. We also analyzed the molecular assemblies, using H NMR spectroscopy to probe the influences of the hydroxyl, amide, and triazole functional groups. Naproxen was used as a model drug and it formed co-gels with compound 25 in DMSO water mixtures. Using UV spectroscopy, we found that naproxen was slowly released from the gel to aqueous solution. The general structure and gelation trend obtained here can be useful in designing sugar based biomaterials. We expect that further structural optimization can lead to more effective gelators that are compatible with different drug molecules for encapsulation and sustained release.

摘要

基于糖的低分子量凝胶剂(LMWGs)是有用的小分子,它们可以形成具有许多应用的可逆超分子凝胶。常见单糖的选择性功能化已产生了几类有效的LMWGs。最近我们发现某些含有异头三唑官能团的全乙酰化糖是有效的凝胶剂。在本研究中,我们合成了两个系列的4,6-O-亚苄基缩醛保护的D-葡萄糖和N-乙酰基-D-葡萄糖胺衍生物的β-1,2,3-三唑基糖苷,并评估了它们在几种溶剂中的自组装性能。获得了几种凝胶剂,这些化合物的凝胶化性质取决于4-三唑基取代基的结构。通常,烷基衍生物在有机溶剂以及乙醇和二甲亚砜的水性混合物中导致有效的凝胶化。但是这些化合物的进一步乙酰化导致凝胶化性质丧失。使用光学显微镜、流变学和傅里叶变换红外光谱对凝胶进行了表征。我们还使用核磁共振氢谱分析分子组装,以探究羟基、酰胺和三唑官能团的影响。萘普生用作模型药物,它在二甲基亚砜水混合物中与化合物25形成共凝胶。使用紫外光谱,我们发现萘普生从凝胶中缓慢释放到水溶液中。此处获得的一般结构和凝胶化趋势可用于设计基于糖的生物材料。我们期望进一步的结构优化能够产生更有效的凝胶剂,这些凝胶剂与不同的药物分子兼容以用于包封和缓释。

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