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通过四氯化钛促进环糊精衍生物的开环反应制备用于糖结构的双功能构建模块。

Bifunctional building blocks for glyco-architectures by TiCl4 -promoted ring opening of cyclodextrin derivatives.

作者信息

Bösch Andreas, Mischnick Petra

机构信息

Technical University Braunschweig, Institute of Food Chemistry, Schleinitzstrasse 20, Braunschweig, Germany.

出版信息

Biomacromolecules. 2007 Jul;8(7):2311-20. doi: 10.1021/bm0702612. Epub 2007 May 27.

Abstract

During our studies on the preparation of blocklike substituted 1,4-glucans by cationic ring-opening polymerization,1,2 we found that TiCl4 behaves differently from common initiators like Et3O+X- (X = PF6, SbCl6), BF3.Et2O, or methyl triflate, causing only ring opening under formation of alpha-maltooligosyl chlorides bearing one free hydroxyl group (4-OH) at the nonreducing end. These compounds are valuable building blocks for the preparation of new glyco-architectures since they are easily accessible starting materials for direct glycosylations or the preparation of a variety of oligomeric glycosyl donors like alkyl glycosides, thioglycosides, or azides. We successfully carried out and optimized the TiCl4-promoted ring opening with per-O-methylated, per-O-ethylated, and temporarily protected per-O-allylated cyclodextrins of various ring size. 1H NMR spectroscopy and high-pressure liquid chromatography-evaporative light-scattering detection (HPLC-ELSD) were used to characterize the products.

摘要

在我们通过阳离子开环聚合制备块状取代1,4-葡聚糖的研究过程中,[1,2]我们发现四氯化钛(TiCl4)的行为与常见引发剂如三乙氧基阳离子盐(Et3O+X-,X = PF6、SbCl6)、三氟化硼乙醚络合物(BF3·Et2O)或三氟甲磺酸甲酯不同,它仅引发开环反应,生成在非还原端带有一个游离羟基(4-OH)的α-麦芽寡糖基氯化物。这些化合物是制备新型糖结构的宝贵构建单元,因为它们是直接糖基化或制备各种低聚糖基供体(如烷基糖苷、硫代糖苷或叠氮化物)的易于获取的起始原料。我们成功地进行并优化了用不同环大小的全O-甲基化、全O-乙基化和暂时保护的全O-烯丙基化环糊精进行的TiCl4促进的开环反应。使用1H核磁共振光谱和高压液相色谱 - 蒸发光散射检测(HPLC-ELSD)对产物进行表征。

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