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利用响应面法优化长双歧杆菌HSBL001高密度培养的培养基成分

Optimization of Medium Composition for High Cell Density Culture of Bifidobacterium longum HSBL001 Using Response Surface Methodology.

作者信息

Cheng Hao, Liu Jiangbin, Mei Liya, Liu Wei, Yang Fengxi, Ma Xiaojuan, Zhang Yan, Xie Youfa, Zhang Yang, Xiong Yanxia

机构信息

Jiang Zhong Pharmaceutical Co. Ltd., Nanchang, China.

State Key Laboratory of Food Science and Resources, Nanchang University, Nanchang, Jiangxi, China.

出版信息

Microbiologyopen. 2025 Aug;14(4):e70027. doi: 10.1002/mbo3.70027.

DOI:10.1002/mbo3.70027
PMID:40605152
Abstract

Bifidobacterium longum plays a critical role in the human gut and exhibits diverse probiotic functions. Achieving high-density fermentation of B. longum largely depends on the composition of the culture medium and fermentation conditions. This study aimed to optimize the medium composition and fermentation parameters for B. longum HSBL001, using viable cell counts and optical density at 600 nm (OD600) as indicators. The goal was to improve biomass yield and support the development and industrial application of highly active probiotic preparations. The optimal medium composition and culture conditions were established using a combination of single-factor experiments, the Plackett-Burman design, the steepest ascent method, and the central composite design. The optimized culture medium consisted of yeast extract (19.524 g/L), yeast peptone (25.85 g/L), arginine (0.599 g/L), glucose (27.36 g/L), MnSO (0.09 g/L), MgSO (0.8 g/L), Tween-80 (1 g/L), l-cysteine hydrochloride (0.24 g/L), and methionine (0.15 g/L). The optimal culture conditions included an initial pH of 7.0, 5% inoculum size, and incubation at 37°C, yielding a final viable cell count of 4.20 × 10 colony-forming units (CFU/mL). In a 3 L bioreactor, the viable cell count reached 1.17 × 10 CFU/mL, which was 1.786 times higher than that achieved with the modified MRS medium. These findings demonstrate that the optimized medium and fermentation conditions are well-suited for high-density cultivation of B. longum HSBL001 and provide a basis for its industrial application.

摘要

长双歧杆菌在人体肠道中发挥着关键作用,并展现出多种益生菌功能。实现长双歧杆菌的高密度发酵很大程度上取决于培养基的组成和发酵条件。本研究旨在以活菌计数和600nm处的光密度(OD600)为指标,优化长双歧杆菌HSBL001的培养基组成和发酵参数。目标是提高生物量产量,并支持高活性益生菌制剂的开发和工业应用。通过单因素实验、Plackett-Burman设计、最速上升法和中心复合设计相结合的方法,确定了最佳培养基组成和培养条件。优化后的培养基由酵母提取物(19.524g/L)、酵母蛋白胨(25.85g/L)、精氨酸(0.599g/L)、葡萄糖(27.36g/L)、硫酸锰(0.09g/L)、硫酸镁(0.8g/L)、吐温-80(1g/L)、L-盐酸半胱氨酸(0.24g/L)和蛋氨酸(0.15g/L)组成。最佳培养条件包括初始pH为7.0、接种量为5%以及在37°C下培养,最终活菌计数为4.20×10菌落形成单位(CFU/mL)。在3L生物反应器中,活菌计数达到1.17×10CFU/mL,比改良MRS培养基所达到的计数高出1.786倍。这些发现表明,优化后的培养基和发酵条件非常适合长双歧杆菌HSBL001的高密度培养,并为其工业应用提供了依据。

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