Pintor Antía, Lavandera Iván, Volkov Alexey, Gotor-Fernández Vicente
Organic and Inorganic Chemistry Department, University of Oviedo, Avenida Julián Clavería 8, Oviedo 33006, Spain.
EnginZyme AB, Tomtebodavägen 6, 171 65 Solna, Sweden.
ACS Sustain Chem Eng. 2023 Jul 6;11(28):10284-10292. doi: 10.1021/acssuschemeng.3c00775. eCollection 2023 Jul 17.
The acylations of furfurylamine and 5-hydroxymethylfurfurylamine (HMFA) have been studied finding immobilized lipase B (CALB) as an ideal biocatalyst. CALB was used immobilized on two different supports (Novozyme 435 and EziG-CALB), with the polymer-coated controlled porosity glass carrier material from EnginZyme being an excellent carrier to yield an active and stable enzymatic preparation for the acylation of the primary amine group. The amount of the acyl donor in the reaction was a key factor to achieve the mono- and chemoselective N-protection of HMFA with large excess of ethyl acetate leading to the formation of the N,O-diacetylated product. Thus, a series of 16 nonactivated esters were used to selectively modify the amine group of HMFA, obtaining 9 hydroxy amides under mild reaction conditions and with quantitative yields through chromatography-free transformations. The influence of substrate concentration was studied, resulting in complete conversions in all cases after 22 h (100-1000 mM). Excellent results were observed at 100 and 200 mM of HMFA, while higher concentrations led to longer reaction times and, to some extent, the formation of the diacetylated product (up to 7% after 22 h at 1 M). After this optimization, a metric analysis was performed to confirm the high sustainability of the presented process (-factor of 1.1 excluding solvents) upon intensification of the biotransformation to 1 g at 200 mM HMFA concentration. The possibility of obtaining orthogonally protected HMFA-derived amido esters has been achieved through a clean and sequential one-pot process using EziG-CALB, which involved the use of ethyl methoxy acetate as the nonactivated ester for N-acylation and the activated vinyl acetate for O-protection.
对糠胺和5-羟甲基糠胺(HMFA)的酰化反应进行了研究,发现固定化脂肪酶B(CALB)是一种理想的生物催化剂。CALB被固定在两种不同的载体上(诺维信435和EziG-CALB),来自EnginZyme的聚合物涂层可控孔隙率玻璃载体材料是一种出色的载体,可产生用于伯胺基团酰化的活性和稳定的酶制剂。反应中酰基供体的量是实现HMFA单选择性和化学选择性N-保护的关键因素,大量过量的乙酸乙酯会导致形成N,O-二乙酰化产物。因此,使用了一系列16种非活化酯来选择性修饰HMFA的胺基,在温和的反应条件下通过无色谱转化获得了9种羟基酰胺,产率定量。研究了底物浓度的影响,在22小时后所有情况下均实现了完全转化(100 - 1000 mM)。在100和200 mM的HMFA下观察到了优异的结果,而较高的浓度导致反应时间延长,并且在一定程度上形成了二乙酰化产物(在1 M下22小时后高达7%)。经过这种优化后,进行了指标分析,以确认在将生物转化强化至200 mM HMFA浓度下1 g时所提出的工艺具有高度可持续性(不包括溶剂的-因子为1.1)。通过使用EziG-CALB的清洁且连续的一锅法实现了获得正交保护的HMFA衍生酰胺酯的可能性,该方法涉及使用甲氧基乙酸乙酯作为用于N-酰化的非活化酯和使用乙酸乙烯酯作为用于O-保护的活化酯。