Liang Ying, Zhu Li, Gao Minjie, Wu Jianrong, Zhan Xiaobei
a Ministry of Education, Key Lab Carbohydrate Chemical and Biotechnology, School of Biotechnology , Jiangnan University , Wuxi , Jiangsu , China.
b Jiangsu Rayguang Biotech Co. Ltd. , Wuxi , Jiangsu , China.
Prep Biochem Biotechnol. 2018 May 28;48(5):446-456. doi: 10.1080/10826068.2018.1452259.
Water-soluble β-1,3-glucan (w-glucan) prepared from curdlan is reported to possess various bioactive and medicinal properties. To develop an efficient and cost-effective microbial fermentation method for the direct production of w-glucan, a coupled fermentation system of Agrobacterium sp. and Trichoderma harzianum (CFS-AT) was established. The effects of Tween-80, glucose flow rate, and the use of a dissolved oxygen (DO) control strategy on w-glucan production were assessed. The addition of 10 g L Tween-80 to the CFS-AT enhanced w-glucan production, presumably by loosening the curdlan ultrastructure and increasing the efficiency of curdlan hydrolysis. A two-stage glucose and DO control strategy was optimal for w-glucan production. At the T. harzianum cell growth stage, the optimal glucose flow rate and agitation speed were 2.0 g L hr and 600 rpm, respectively, and at the w-glucan production stage, they were 0.5 g L hr and 400 rpm, respectively. W-glucan production reached 17.31 g L, with a degree of polymerization of 19-25. Furthermore, w-glucan at high concentrations exhibited anti-tumor activity against MCF-7, HepG2, and Hela cancer cells in vitro. This study provides a novel, cost-effective, eco-friendly, and efficient microbial fermentation method for the direct production of biologically active w-glucan.
据报道,由凝胶多糖制备的水溶性β-1,3-葡聚糖(w-葡聚糖)具有多种生物活性和药用特性。为了开发一种高效且经济高效的直接生产w-葡聚糖的微生物发酵方法,建立了一种土壤杆菌属和哈茨木霉的耦合发酵系统(CFS-AT)。评估了吐温80、葡萄糖流速以及溶解氧(DO)控制策略的使用对w-葡聚糖生产的影响。向CFS-AT中添加10 g/L吐温80可提高w-葡聚糖的产量,这可能是通过疏松凝胶多糖的超微结构并提高凝胶多糖水解效率实现的。两阶段葡萄糖和DO控制策略对w-葡聚糖生产最为有利。在哈茨木霉细胞生长阶段,最佳葡萄糖流速和搅拌速度分别为2.0 g/L·hr和600 rpm,而在w-葡聚糖生产阶段,它们分别为0.5 g/L·hr和400 rpm。w-葡聚糖产量达到17.31 g/L,聚合度为19 - 25。此外,高浓度的w-葡聚糖在体外对MCF-7、HepG2和Hela癌细胞具有抗肿瘤活性。本研究提供了一种新颖、经济高效、环保且高效的直接生产具有生物活性的w-葡聚糖的微生物发酵方法。