da Silva Mateus Ribeiro, Andreia Freixo Portela Carla, Maria Ferreira Albani Silvia, Rizzo de Paiva Paola, Massako Tanizaki Martha, Zangirolami Teresa Cristina
Laboratory of Fermentation, Biotechnology Center, Butantan Institute, São Paulo, 05503-900, Brazil.
Brazilian Bioethanol Science and Technology Laboratory, CTBE, Brazilian Center of Research in Energy and Materials, CNPEM, São Paulo, 13083-100, Brazil.
Biotechnol Prog. 2017 Nov;33(6):1508-1519. doi: 10.1002/btpr.2546. Epub 2017 Sep 4.
Haemophilus influenzae type b (Hib), a Gram-negative capsulated bacterium, is a causative agent of meningitis worldwide. The capsular polysaccharide, a high molecular mass polymer consisting of the repeated units of the polyribosyl-ribitol-phosphate, is considered the main virulence factor and it is used as an antigen to vaccines, conjugated to a carrier protein. The industrial production of the polysaccharide requires the cultivation of Hib in rich medium, which impacts process costs and product recovery. In this study, a central composite rotational experimental design strategy was used to access the influence of key components of culture medium (soy peptone, yeast extract and glucose) on biomass formation and polysaccharide production in shake-flasks. The optimized medium formulation, containing half of the usual yeast extract and soytone concentrations, was further validated in batch bioreactor cultivations. High polysaccharide production (∼500 mg/L) was obtained in a cheaper and more competitive production process for use in Hib vaccine production. In addition, simulations of a metabolic model describing Hib central metabolism were used to assess the role of key amino acids on growth. A chemically defined medium supplemented only with amino acids from α-ketoglutarate and oxaloacetate families as well as phenylalanine was suggested as a promising alternative for reduced acetate accumulation and enhanced polysaccharide production in Hib cultures. © 2017 American Institute of Chemical Engineers Biotechnol. Prog., 33:1508-1519, 2017.
b型流感嗜血杆菌(Hib)是一种革兰氏阴性有荚膜细菌,是全球范围内脑膜炎的病原体。荚膜多糖是一种由聚核糖基-核糖醇-磷酸重复单元组成的高分子聚合物,被认为是主要的毒力因子,并用作疫苗抗原,与载体蛋白偶联。多糖的工业化生产需要在丰富培养基中培养Hib,这会影响工艺成本和产品回收。在本研究中,采用中心复合旋转实验设计策略来研究培养基关键成分(大豆蛋白胨、酵母提取物和葡萄糖)对摇瓶中生物量形成和多糖生产的影响。在分批生物反应器培养中进一步验证了含有通常酵母提取物和大豆蛋白胨浓度一半的优化培养基配方。在用于Hib疫苗生产的更便宜且更具竞争力的生产过程中获得了高多糖产量(约500mg/L)。此外,利用描述Hib中心代谢的代谢模型模拟来评估关键氨基酸对生长的作用。建议仅添加来自α-酮戊二酸和草酰乙酸家族的氨基酸以及苯丙氨酸的化学限定培养基作为减少Hib培养物中乙酸积累和提高多糖产量的有前景的替代方案。©2017美国化学工程师学会生物技术进展,33:1508 - 1519,2017。