a Faculty of Sciences, Department of Chemical Engineering , University of Vigo (Campus Ourense) , Ourense , Spain .
b Laboratory of Agro-food Biotechnology , CITI (University of Vigo)-Tecnópole, Technological Park of Galicia, San Cibrao das Viñas , Ourense , Spain .
Crit Rev Biotechnol. 2016 Aug;36(4):691-704. doi: 10.3109/07388551.2015.1004660. Epub 2015 Feb 10.
Xylitol is a pentahydroxy sugar alcohol coming from xylose with many applications in the food and pharmaceutical industries as a low caloric sweetener suitable for diabetics and as an active ingredient in several biomedical applications. The microbial bioproduction of xylitol from natural xylose coming from lignocellulosic materials appears a sustainable and a promising alternative to chemical synthesis, which works at stronger reaction conditions and generates undesirable co-products which must be removed. There are several reviews that study the metabolic pathways in wild and transformed xylitol producing yeasts and the culture conditions that enhance xylitol accumulation, which are mainly related to the need of microaerobiose for the best producing wild yeasts. Nevertheless, there are relatively few studies focusing on the engineering aspects related to scalable systems and bioreactors that could result in a final industrial stage. This review explores recent advances on xylitol production using immobilized systems, which have been proposed to facilitate the reuse of the biocatalyst for extended periods and the main types of bioreactors available assayed for this purpose.
木糖醇是一种五羟基糖醇,来源于木糖,在食品和制药行业中有许多应用,可用作低热量甜味剂,适合糖尿病患者,也可用作多种生物医学应用的活性成分。从木质纤维素材料中的天然木糖微生物生物生产木糖醇,似乎是一种可持续且有前途的替代化学合成的方法,因为化学合成需要更强的反应条件,并且会产生必须去除的不良副产物。有几篇综述研究了野生和转化的产木糖醇酵母中的代谢途径,以及能够提高木糖醇积累的培养条件,这些主要与微需氧条件有关,因为这对生产野生酵母的最佳条件非常重要。然而,很少有研究关注与可扩展系统和生物反应器相关的工程方面,这些系统和生物反应器最终可能会进入工业阶段。本文综述了使用固定化系统生产木糖醇的最新进展,这些系统被提议用于延长生物催化剂的重复使用时间,并评估了为此目的可用的主要类型的生物反应器。