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菊粉酶解生产果糖的技术现状。

The state of the art in the production of fructose from inulin enzymatic hydrolysis.

作者信息

Ricca Emanuele, Calabrò Vincenza, Curcio Stefano, Iorio Gabriele

机构信息

Department of Chemical Engineering and Materials, University of Calabria, Arcavacata di Rende, Italy.

出版信息

Crit Rev Biotechnol. 2007 Jul-Sep;27(3):129-45. doi: 10.1080/07388550701503477.

Abstract

The present work reviews the main advancements achieved in the last decades in the study of the fructose production process by inulin enzymatic hydrolysis. With the aim of collecting and clarifying the majority of the knowledge in this area, the research on this subject has been divided in three main parts: a) the characteristics of inulin (the process reactant); b) the properties of the enzyme inulinase and its hydrolytic action; c) the advances in the study of the applications of inulinases in bioreactors for fructose production. Many vegetable sources of inulin are reported, including information about their yields in terms of inulin. The properties of inulin that appear relevant for the process are also summarized, with reference to their vegetable origin. The characteristics of the inulinase enzyme that catalyzes inulin hydrolysis, together with the most relevant information for a correct process design and implementation, are described in the paper. An extended collection of data on microorganisms capable of producing inulinase is reported. The following characteristics and properties of inulinase are highlighted: molecular weight, mode of action, activity and stability with respect to changes in temperature and pH, kinetic behavior and effect of inhibitors. The paper describes in detail the main aspects of the enzyme hydrolysis reaction; in particular, how enzyme and reactant properties can affect process performance. The properties of inulinase immobilized on various supports are shown and compared to those of the enzyme in its native state. Finally, a number of applications of free and immobilized inulinases and whole cells in bioreactors are reported, showing the different operating procedures and reactor types adopted for fructose production from inulin on a laboratory scale.

摘要

本工作回顾了过去几十年间在菊粉酶促水解生产果糖过程研究中取得的主要进展。为了收集和阐明该领域的大部分知识,对这一主题的研究分为三个主要部分:a)菊粉(过程反应物)的特性;b)菊粉酶的性质及其水解作用;c)菊粉酶在用于果糖生产的生物反应器中的应用研究进展。报告了许多菊粉的植物来源,包括其菊粉产量方面的信息。还总结了菊粉与植物来源相关的、对该过程似乎具有相关性的性质。本文描述了催化菊粉水解的菊粉酶的特性,以及正确的工艺设计和实施所需的最相关信息。报告了一系列关于能够产生菊粉酶的微生物的数据。突出了菊粉酶的以下特征和性质:分子量、作用方式、活性以及对温度和pH变化的稳定性、动力学行为和抑制剂的影响。本文详细描述了酶水解反应的主要方面;特别是酶和反应物的性质如何影响工艺性能。展示了固定在各种载体上的菊粉酶的性质,并与天然状态下的酶进行了比较。最后,报告了游离和固定化菊粉酶以及全细胞在生物反应器中的一些应用,展示了实验室规模下从菊粉生产果糖所采用的不同操作程序和反应器类型。

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