固定化苯丙氨酸解氨酶连续流法可持续合成L-苯丙氨酸衍生物

David Roura Padrosa, H. Lehmann, Radka Snajdrova, F. Paradisi
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引用次数: 1

摘要

应用苯丙氨酸解氨酶(PAL)胺化多种肉桂酸已被证明是生产多种苯丙氨酸类似物的一种成本有效的方法。尽管如此,与许多其他生物催化工具一样,工艺强化,特别是由于所需的高当量氨,以及催化剂生产和使用的成本效率,是进一步证明其有用性的关键。在这里,我们研究了先前表征的PAL(AvPAL和PbPAL)用于一系列取代肉桂酸的胺化的用途。为了提高工艺的可扩展性和催化剂的可重复使用性,我们研究了在市售载体上使用共价固定化,创造了一种具有良好回收活性(50%)和优异稳定性的多相催化剂。固定化酶也以连续流动的方式用于合成3-甲氧基-苯丙氨酸和4-硝基-苯丙氨酸,这分别允许更短的反应时间(20分钟的接触时间)和优异的转化率(88%±4%和89%±5%),并且可以在长达24小时的长时间内保持。这项工作体现了酶催化与流动技术相结合的优势,不仅在反应动力学方面,而且在生产率、催化剂可重复使用性和下游加工方面。
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Sustainable synthesis of L-phenylalanine derivatives in continuous flow by immobilized phenylalanine ammonia lyase
The application of phenylalanine ammonia lyases (PALs) for the amination of a variety of cinnamic acids has been shown to be a cost-efficient method to produce a variety of phenylalanine analogues. Nonetheless, as many other biocatalytic tools, the process intensification, especially due to the high equivalents of ammonia needed, and the cost-efficiency of the catalyst production and use have been key points to further prove their usefulness. Here, we investigated the use of previously characterized PALs (AvPAL and PbPAL) for the amination of a series of substituted cinnamic acids. To enhance the process scalability and the reusability of the catalyst, we investigated the use of covalent immobilization onto commercially available supports, creating a heterogeneous catalyst with good recovered activity (50%) and excellent stability. The immobilized enzyme was also incorporated in continuous flow for the synthesis of 3-methoxy-phenyl alanine and 4-nitro-phenylalanine, which allowed for shorter reaction times (20 min of contact time) and excellent conversions (88% ± 4% and 89% ± 5%) respectively, which could be maintained over extended period of time, up to 24 h. This work exemplifies the advantages that the combination of enzyme catalysis with flow technologies can have not only in the reaction kinetics, but also in the productivity, catalyst reusability and downstream processing.
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