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Biocatalytic Regioselective Oxidation of N-hydroxyethyl glucamine for Synthesis of Miglitol

机译:用于合成MIGLITOL的N-羟乙基葡聚糖的生物催化区域氧化

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N-2-hydroxyethyl-glucamine (NHEG) was converted into 6-deoxy-6-hydroxylethyl-amino-L-sorbose (DHES) by the regioselective oxidation of Gluconobacter oxydans, and then the generated intermediate of this process was produced to N-hydroxyethyl-deoxynojirimycin (Miglitol) by reductive ring closure reaction. Regioselective oxidation reaction was catalyzed by the high activity sorbitol dehydrogenase of Gluconobacter oxydans biomass which was obtained in preliminary studies. Reductive ring closure reaction was carried out under the conditions of 10%Pd/C as catalyst, at 45~55°C and 0.6MPa of hydrogen. Reaction mixture by the separation and purification of strong acidic exchange resin column has been the Miglitol. In addition, the structure and properties of synthetic product was characterized by thin layer chromatography (TLC), melting point, mass spectrometry (MALDI-MS), Fourier transform infrared spectroscopy (FTIR) analysis. The results showed that the miglitol yield is 77.3%.The regional specificity of the high activity sorbitol dehydrogenase of Gluconobacter oxydans has been verified. Moreover, combinating the technology of the Pd/C- catalyzed reductive ring closure reaction, an effective synthesis process of miglitol is achieved.
机译:将N-2-羟乙基 - 葡聚糖(NHEG)转化为6-脱氧-6-羟乙基 - 氨基-1-山梨糖醇(牛)通过葡糖糖的区域氧化,然后将该方法的产生中间体产生为N-通过还原环闭合反应的羟乙基 - 脱氧酸二尼霉素(MIGLITOL)。通过在初步研究中获得的高活性山梨糖醇脱氢酶催化区域选择性氧化反应。还原环闭合反应在10%Pd / C作为催化剂的条件下进行,在45〜55℃和0.6MPa的氢气中进行。通过强酸性交换树脂塔的分离和纯化的反应混合物是MIGLITOL。此外,合成产物的结构和性质的特征在于薄层色谱(TLC),熔点,质谱(MALDI-MS),傅里叶变换红外光谱(FTIR)分析。结果表明,MIGLITOL产率为77.3%。已经验证了葡萄糖杆菌的高活性山梨糖醇脱氢酶的区域特异性。此外,组合PD / C-催化的还原环闭合反应的技术,实现了MIGLITOL的有效合成方法。

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