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5-苯甲酰基三唑作为糖缀合物中的新结构维度。

5-Benzoyl triazole as new structural dimension in glycoconjugates.

作者信息

Sahoo Laxminarayan, Kundu Soumya, Singhamahapatra Anadi, Jena Naresh K, Nayak Ganesh C, Sahoo Satyanarayan

机构信息

Department of Chemistry, Government Science College Chatrapur, 761020, Odisha, India; Department of Chemistry, Indian Institute of Technology Madras, Chennai, 600036, India.

Department of Chemistry, Indian Institute of Technology Madras, Chennai, 600036, India.

出版信息

Carbohydr Res. 2018 Nov;469:23-30. doi: 10.1016/j.carres.2018.08.015. Epub 2018 Aug 31.

Abstract

In recent years, 1,4-triazole rings are being widely used for the synthesis of carbohydrate derived biomimetics, due to their easy synthesis and wide range of functional group compatibility. These triazole rings lead to synthetic molecules with improved enzymatic stability, bioavailability, and structural diversity. In this present work, a benzoyl group has been introduced at the C-5 position of the triazole ring present in the synthetic glycoconjugates providing further structural diversity to the molecule. 5-Benzoyl 1,4-triazole ring containing glycoconjugates were synthesized using Cu(I) catalyzed [3 + 2] cycloaddition reaction of per-O-acetylated glycopyranosyl azide and phenyl acetylene followed by in situ electrophilic addition of benzoyl group to the Cu(I) coordinated triazole intermediate. The X-ray crystal structure of one of the 5-benzoyl 1,4-triazole linked glycoconjugate derived from d-xylose {1-N-(2,3,4-tri-O-acetyl-β-d-xylopyranosyl)-4-phenyl-5-benzoyl-1,2,3-triazole} showed unique pattern of intermolecular CH…O interactions arranging the molecules in an anti-parallel orientation. The structure and morphology of the compounds were further explored using computational calculation and scanning electron microscopic (SEM) study which firmly established the uniqueness of 5-benzoyl 1,4-triazole linked glycoconjugates compared to that of 5-H 1,4-triazole linked derivative.

摘要

近年来,1,4-三唑环因其易于合成且具有广泛的官能团兼容性,而被广泛用于合成碳水化合物衍生的仿生化合物。这些三唑环使得合成分子具有更高的酶稳定性、生物利用度和结构多样性。在本研究中,在合成糖缀合物中三唑环的C-5位引入了一个苯甲酰基,为分子提供了进一步的结构多样性。通过全-O-乙酰化吡喃糖基叠氮化物与苯乙炔的Cu(I)催化[3 + 2]环加成反应,然后将苯甲酰基原位亲电加成到Cu(I)配位的三唑中间体上,合成了含5-苯甲酰基1,4-三唑环的糖缀合物。一种源自d-木糖的5-苯甲酰基1,4-三唑连接的糖缀合物{1-N-(2,3,4-三-O-乙酰基-β-d-吡喃木糖基)-4-苯基-5-苯甲酰基-1,2,3-三唑}的X射线晶体结构显示出独特的分子间CH…O相互作用模式,使分子以反平行方向排列。使用计算计算和扫描电子显微镜(SEM)研究进一步探索了化合物的结构和形态,这牢固地确立了5-苯甲酰基1,4-三唑连接的糖缀合物与5-H 1,4-三唑连接的衍生物相比的独特性。

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