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固定化蔗糖异构酶从甜菜糖蜜直接合成异麦芽酮糖

Direct Isomaltulose Synthesis From Beet Molasses by Immobilized Sucrose Isomerase.

作者信息

Wang Qin-Qing, Yang Ming, Hao Jian-Hua, Ma Zai-Chao

机构信息

National Glycoengineering Research Center, State Key Laboratory of Microbial Technology, Shandong University, Qingdao, China.

School of Marine Sciences, Sun Yat-sen University, Guangzhou, China.

出版信息

Front Bioeng Biotechnol. 2021 Jul 16;9:691547. doi: 10.3389/fbioe.2021.691547. eCollection 2021.

Abstract

Isomaltulose is becoming a focus as a functional sweetener for sucrose substitutes; however, isomaltulose production using sucrose as the substrate is not economical. Low-cost feedstocks are needed for their production. In this study, beet molasses (BM) was introduced as the substrate to produce isomaltulose for the first time. Immobilized sucrose isomerase (SIase) was proved as the most efficient biocatalyst for isomaltulose synthesis from sulfuric acid (HSO) pretreated BM followed by centrifugation for the removal of insoluble matters and reducing viscosity. The effect of different factors on isomaltulose production is investigated. The isomaltulose still achieved a high concentration of 446.4 ± 5.5 g/L (purity of 85.8%) with a yield of 0.94 ± 0.02 g/g under the best conditions (800 g/L pretreated BM, 15 U immobilized SIase/g dosage, 40°C, pH of 5.5, and 10 h) in the eighth batch. Immobilized SIase used in repeated batch reaction showed good reusability to convert pretreated BM into isomaltulose since the sucrose conversion rate remained 97.5% in the same batch and even above 94% after 11 batches. Significant cost reduction of feedstock costs was also confirmed by economic analysis. The findings indicated that this two-step process to produce isomaltulose using low-cost BM and immobilized SIase is feasible. This process has the potential to be effective and promising for industrial production and application of isomaltulose as a functional sweetener for sucrose substitute.

摘要

异麦芽酮糖作为蔗糖替代品的功能性甜味剂正成为一个焦点;然而,以蔗糖为底物生产异麦芽酮糖并不经济。其生产需要低成本的原料。在本研究中,首次引入甜菜糖蜜(BM)作为底物来生产异麦芽酮糖。固定化蔗糖异构酶(SIase)被证明是从经硫酸(HSO)预处理、随后离心去除不溶物并降低粘度的BM合成异麦芽酮糖的最有效生物催化剂。研究了不同因素对异麦芽酮糖生产的影响。在第八批反应的最佳条件(800 g/L预处理BM、15 U固定化SIase/g用量、40°C、pH 5.5和10 h)下,异麦芽酮糖仍达到446.4±5.5 g/L的高浓度(纯度85.8%),产率为0.94±0.02 g/g。用于重复分批反应的固定化SIase表现出良好的可重复使用性,可将预处理的BM转化为异麦芽酮糖,因为在同一批次中蔗糖转化率保持在97.5%,在11批次后甚至高于94%。经济分析也证实了原料成本的显著降低。研究结果表明,使用低成本BM和固定化SIase生产异麦芽酮糖的两步法是可行的。该工艺对于异麦芽酮糖作为蔗糖替代品的功能性甜味剂的工业生产和应用具有有效且有前景的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3016/8322766/cd85cd450fe2/fbioe-09-691547-g001.jpg

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