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Efficient hydration of 2-amino-2,3-dimethylbutyronitrile to 2-amino-2,3-dimethylbutyramide in a biphasic system via an easily prepared whole-cell biocatalyst

机译:通过容易制备的全细胞生物催化剂在两相系统中将2-氨基-2,3-二甲基丁腈有效水合为2-氨基-2,3-二甲基丁酰胺

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From an environmental perspective, utilizing nonconventional solvents (i.e. green solvents) with low ecological footprints is a highly beneficial alternative to using conventional organic solvents to form a reaction system. The nitrile hydratase (NHase, EC 4.2.1.84) catalyzed hydration of 2-amino-2,3-dimethylbutyronitrile (ADBN) to 2-amino-2,3-dimethylbutyramide (ADBA) in various green solvent-aqueous reaction systems was investigated in this study. After systematically optimizing the reaction conditions, the HFE-7100/H2O (v/v, 10%) biphasic system was ultimately identified as a promising reaction system for reducing product inhibition, avoiding substrate hydrolysis, and facilitating product separation and solvent recovery. The average ADBA yield of an entire batch reaction was 97.3%, which is obviously higher than those obtained with previously reported chemical or enzymatic methods. This is the first attempt to apply a fluorous solvent-aqueous biphasic system to a biocatalytic process, and the results suggest that the fluorous solvent employed in the biphasic system satisfies the requirements for green chemistry.
机译:从环境角度来看,使用生态足迹低的非常规溶剂(即绿色溶剂)是使用常规有机溶剂形成反应体系的高度有益的替代方法。研究了腈水合酶(NHase,EC 4.2.1.84)在各种绿色溶剂-水溶液反应体系中催化2-氨基-2,3-二甲基丁腈(ADBN)水解为2-氨基-2,3-二甲基丁酰胺(ADBA)的过程。这项研究。在对反应条件进行系统优化之后,最终确定了HFE-7100 / H2O(v / v,10%)双相体系是减少产物抑制,避免底物水解,促进产物分离和溶剂回收的有前途的反应体系。整个间歇反应的平均ADBA产率为97.3%,明显高于以前报道的化学或酶促方法所获得的产率。这是将含氟溶剂-水双相体系应用于生物催化过程的首次尝试,结果表明该双相体系中使用的含氟溶剂满足绿色化学的要求。

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