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基于响应面模型优化策略,通过稀马来酸介导木聚糖水解生产益生元低聚木糖

Production of Prebiotic Xylooligosaccharides via Dilute Maleic Acid-Mediated Xylan Hydrolysis Using an RSM-Model-Based Optimization Strategy.

作者信息

Jiang Kankan, Fu Xiaoliang, Huang Rong, Fan Xingli, Ji Lei, Cai Damin, Liu Xiaoxiang, Fu Yixiu, Sun Aihua, Feng Chenzhuo

机构信息

School of Basic Medical Sciences and Forensic Medicine, Hangzhou Medical College, Hangzhou, China.

出版信息

Front Nutr. 2022 May 10;9:909283. doi: 10.3389/fnut.2022.909283. eCollection 2022.

Abstract

Xylooligosaccharides (XOS) are functional feed additives that are attracting growing commercial interest owing to their excellent ability to modulate the composition of the gut microbiota. The acid hydrolysis-based processing of xylan-containing materials has been proposed to represent a cost-effective approach to XOS preparation, with organic acids being preferable in this context. As such, in the present study, maleic acid was selected as a mild, edible organic acid for use in the hydrolysis of xylan to produce XOS. A response surface methodology (RSM) approach with a central composite design was employed to optimize maleic acid-mediated XOS production, resulting in a yield of 50.3% following a 15 min treatment with 0.08% maleic acid at 168°C. Under these conditions, the desired XOS degree of polymerization (2-3) was successfully achieved, demonstrating the viability of this using a low acid dose and a high reaction temperature to expedite the production of desired functional products. Moreover, as maleic acid is a relatively stable carboxylic acid, it has the potential to be recycled. These results suggest that dilute maleic acid-based thermal treatment of corncob-derived xylan can achieve satisfactory XOS yields, highlighting a promising and cost-effective approach to XOS production.

摘要

低聚木糖(XOS)是一种功能性饲料添加剂,因其具有出色的调节肠道微生物群组成的能力而受到越来越多的商业关注。基于酸水解的含木聚糖材料加工方法被认为是一种制备XOS的经济有效方法,在这种情况下,有机酸是更可取的。因此,在本研究中,选择马来酸作为一种温和的可食用有机酸,用于木聚糖水解以生产XOS。采用具有中心复合设计的响应面法(RSM)来优化马来酸介导的XOS生产,在168°C下用0.08%马来酸处理15分钟后,产率达到50.3%。在这些条件下,成功实现了所需的XOS聚合度(2-3),证明了使用低酸剂量和高反应温度来加速所需功能产品生产的可行性。此外,由于马来酸是一种相对稳定的羧酸,它具有回收利用的潜力。这些结果表明,基于马来酸的稀溶液对玉米芯衍生的木聚糖进行热处理可以获得令人满意的XOS产率,突出了一种有前景且经济有效的XOS生产方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5438/9127663/cf9f2cf5fd76/fnut-09-909283-g0001.jpg

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