首页> 外文期刊>Journal of Oleo Science >Production of Valuable Lipophilic Compounds by Using Three Types of Interface Bioprocesses: Solid-Liquid Interface Bioreactor, Liquid-Liquid Interface Bioreactor, and Extractive Liquid-Surface Immobilization System
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Production of Valuable Lipophilic Compounds by Using Three Types of Interface Bioprocesses: Solid-Liquid Interface Bioreactor, Liquid-Liquid Interface Bioreactor, and Extractive Liquid-Surface Immobilization System

机译:通过使用三种类型的界面生物过程生产有价值的亲脂性化合物:固液界面生物反应器,液液界面生物反应器和萃取液-表面固定系统

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摘要

Bioconversions such as enzymatic and microbial transformations are attractive alternatives to organic synthesis because of practical advantages such as resource conservation, energy efficiency, and environmentally harmonic properties. In addition, the production of secondary metabolites through microbial fermentation is also useful for manufacturing pharmaceuticals, agricultural chemicals, and aroma compounds. For microbial production of useful chemicals, the authors have developed three unique interfacial bioprocesses: a solid-liquid interface bioreactor (S/L-IBR), a liquid-liquid interface bioreactor (L/L-IBR), and an extractive liquid-surface immobilization (Ext-LSI) system. The S/L-IBR comprises a hydrophobic organic solvent (upper phase), a microbial film (middle phase), and a hydrophilic gel such as an agar plate (lower phase); the L/L-IBR and the Ext-LSI consist of a hydrophobic organic solvent (upper phase), a fungal mat with ballooned microspheres (middle phase), and a liquid medium (lower phase). All three systems have unique and practically important characteristics such as utilization of living cells, high concentration of lipophilic substrates/products in an organic phase, no requirement for aeration and agitation, efficient supply of oxygen, easy recovery of product, high regio- and stereoselectivity, and wide versatility. This paper reviews the principle, construction, characteristics, and application of these interfacial systems for producing lipophilic compounds such as useful aroma compounds, citronellol-related compounds, β-caryophyllene oxide, and 6-penty-α-pyrone.
机译:生物转化(例如酶促和微生物转化)是有机合成的有吸引力的替代方法,因为它具有资源节约,能源效率和环境谐波特性等实用优势。此外,通过微生物发酵生产次生代谢产物也可用于制造药品,农药和香气化合物。为了微生物生产有用的化学物质,作者开发了三种独特的界面生物过程:固液界面生物反应器(S / L-IBR),液液界面生物反应器(L / L-IBR)和液液萃取表面固定(Ext-LSI)系统。 S / L-IBR包​​含疏水性有机溶剂(上层),微生物膜(中间层)和亲水性凝胶,例如琼脂板(下层); L / L-IBR和Ext-LSI由疏水性有机溶剂(上相),带球状微球的真菌垫(中相)和液体介质(下相)组成。所有这三个系统都具有独特且在实践中很重要的特性,例如活细胞的利用,高浓度的亲脂性底物/产物在有机相中,不需要充气和搅动,氧气的有效供应,产物的容易回收,区域和立体选择性高,并且用途广泛。本文综述了这些界面系统的原理,结构,特性及其在生产亲脂性化合物(如有用的香气化合物,香茅醇相关化合物,β-石竹烯氧化物和6-戊基-α-吡喃酮)中的应用。

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