期刊文献+

化学生物组合法合成米格列醇及其表征 被引量:1

Synthesis and characterization of miglitol by combined biotechnological-chemical synthesis method
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摘要 以葡萄糖和乙醇胺为原料,催化加氢生成N-羟乙基葡糖胺,葡萄糖转化率为89%。氧化葡萄糖酸杆菌Gouv2007的静息细胞在通气下氧化N-羟乙基葡糖胺脱氢生成米格列醇的前体物质6-脱氧-6-羟乙基氨基-α-L-呋喃山梨糖,再催化加氢生成米格列醇,对从N-羟乙基葡糖胺生成米格列醇的底物转化率为77.3%。采用熔程测定、红外光谱分析、质谱分析对N-羟乙基葡糖胺和米格列醇进行了表征,结果表明:所合成的产物分别被鉴定为N-羟乙基葡糖胺和米格列醇。 Glucose and ethanolamines were catalytic hydrogenated to obtain N-(2-hydroxyethyl)- glucamine, with a transformation rate of 89%. N-(2-hydroxyethyl)-glucamine was dehydrogenated to 6-(2-droxyethyl)amino-6-deoxy-α-L-sorbofiuanose the key intermediate of miglitol by the resting cells of Gluconobater oxydans Gouv2007 through aeration. 6-(2-Droxyethyl)amino-6-deoxy-a-Lsorbofiuanose was hydrogenated catalyticlly to miglitol. In the transformation of N-(2-hydroxyethyl)- glucamine to miglitol, the transformation rate was 77.3%. The samples of N-(2-hydroxyethyl)- glucamine and miglitol were characterized with infrared spectroscopy, melting point and MALDI-MS analysis. The results confirmed the samples of N-(2-hydroxyethyl)-glucamine and miglitol.
出处 《化工进展》 EI CAS CSCD 北大核心 2009年第3期477-480,共4页 Chemical Industry and Engineering Progress
关键词 氧化葡萄糖酸杆菌 N-羟乙基葡糖胺 微生物氧化 米格列醇 Gluconobateroxydans N-(2-hydroxyethyl)-glucamine microbial oxidation miglitol
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参考文献8

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同被引文献8

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