Biocatalysts and Enzymatic Conversion of Substrates to Valuable Products of Chemical Organic Synthesis: A Review of Domestic Developments

IF 1.3 4区 化学 Q4 CHEMISTRY, PHYSICAL
G. A. Kovalenko
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Abstract

Biocatalysis in both the homogeneous and heterogeneous versions is an independent interdisciplinary direction in scientific and practical research of single-stage conversions of feed reagents (substrates) to valuable marketable products involving, in most cases, a single enzyme as a catalyst. Single-enzyme biocatalytic processes exhibiting all specific features of enzymatic catalysis are a fairly competitive alternative to conventional chemical production. This review provides information on the results achieved by domestic research teams/laboratories that have been involved in extensive and efficient studies in the field of biocatalysis over the past decades and have practical developments protected by RF patents, which, under favorable circumstances, can be offered to commercial enterprises/companies for testing and use on a laboratory and/or pilot-scale with the prospects of industrial scale-up. In the review, special attention is given to targeted systematic studies of lipolytic enzymes (lipases), which have a unique ability to catalyze reactions in a medium of organic solvents, primarily esterification and transesterification reactions, which lead to the formation of valuable products of organic synthesis, such as esters. Lipases are active components of heterogeneous biocatalysts (BCs) synthesized by fixing (immobilizing) these enzymes on the surface of solid adsorbing supports. The review briefly describes the results of studies of domestic research teams and gives complete lists of their reports providing information on the methods of immobilization of target enzymes, the catalytic properties of the developed BCs (enzyme activity, substrate specificity, operational stability) and describing the conditions for biocatalytic processes involving heterogeneous BCs, such as the synthesis of acrylamide and various esters. Taking into account the average activity (А), which is similar to the activity measured at the half-inactivation time (t1/2), and the operational stability of BCs characterized by the t1/2 value, a fairly rough assessment of the productivity of BCs is conducted by calculating the amount of valuable product produced (in tons) per kilogram of BC.

Abstract Image

生物催化剂与底物酶法转化为有价值的有机化学合成产物——国内发展综述
均质和非均质生物催化是将饲料试剂(底物)单级转化为有价值的适销产品的科学和实践研究中的一个独立的跨学科方向,在大多数情况下,涉及单一酶作为催化剂。单酶生物催化过程显示出酶催化的所有特定特征,是传统化学生产的一种相当有竞争力的替代方法。这篇综述提供了国内研究团队/实验室在过去几十年中参与了生物催化领域的广泛而有效的研究,并在RF专利的保护下取得了实际进展,在有利的情况下,可以提供给商业企业/公司进行实验室和/或中试规模的测试和使用,具有工业放大的前景。在这篇综述中,特别关注脂肪分解酶(脂肪酶)的有针对性的系统研究,它具有在有机溶剂介质中催化反应的独特能力,主要是酯化和酯交换反应,从而形成有价值的有机合成产物,如酯。脂肪酶是通过将这些酶固定(固定)在固体吸附载体表面而合成的多相生物催化剂(BCs)的活性成分。综述简要介绍了国内研究团队的研究结果,并给出了他们的报告的完整列表,提供了关于目标酶的固定化方法、所开发的BCs的催化性能(酶活性、底物特异性、操作稳定性)的信息,并描述了涉及多相BCs的生物催化过程的条件,例如丙烯酰胺和各种酯的合成。考虑到与半灭活时间(t1/2)测得的活性相似的平均活性(А),以及以t1/2值为特征的BCs的操作稳定性,通过计算每公斤BC生产的有价值产品的数量(吨),对BCs的生产力进行了相当粗略的评估。
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来源期刊
Kinetics and Catalysis
Kinetics and Catalysis 化学-物理化学
CiteScore
2.10
自引率
27.30%
发文量
64
审稿时长
6-12 weeks
期刊介绍: Kinetics and Catalysis Russian is a periodical that publishes theoretical and experimental works on homogeneous and heterogeneous kinetics and catalysis. Other topics include the mechanism and kinetics of noncatalytic processes in gaseous, liquid, and solid phases, quantum chemical calculations in kinetics and catalysis, methods of studying catalytic processes and catalysts, the chemistry of catalysts and adsorbent surfaces, the structure and physicochemical properties of catalysts, preparation and poisoning of catalysts, macrokinetics, and computer simulations in catalysis. The journal also publishes review articles on contemporary problems in kinetics and catalysis. The journal welcomes manuscripts from all countries in the English or Russian language.
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