Gottfried Wilhelm Leibniz Universität Hannover, Institute of Technical Chemistry, Callinstr. 5, 30167 Hannover, Germany.
J Biotechnol. 2013 Sep 20;167(4):370-6. doi: 10.1016/j.jbiotec.2013.07.018. Epub 2013 Jul 26.
Technical scale (≥5l) cultivations of shear stress sensitive microorganisms are often difficult to perform, as common bioreactors are usually designed to maximize the oxygen input into the culture medium. This is achieved by mechanical stirrers, causing high shear stress. Examples for shear stress sensitive microorganisms, for which no specific cultivation systems exist, are many anaerobic bacteria and fungi, such as basidiomycetes. In this work a disposable bag bioreactor developed for cultivation of mammalian cells was investigated to evaluate its potential to cultivate shear stress sensitive anaerobic Eubacterium ramulus and shear stress sensitive basidiomycetes Flammulina velutipes and Pleurotus sapidus. All cultivations were compared with conventional stainless steel stirred tank reactors (STR) cultivations. Good growth of all investigated microorganisms cultivated in the bag reactor was found. E. ramulus showed growth rates of μ=0.56 h⁻¹ (bag) and μ=0.53 h⁻¹ (STR). Differences concerning morphology, enzymatic activities and growth in fungal cultivations were observed. In the bag reactor growth in form of small, independent pellets was observed while STR cultivations showed intense aggregation. F. velutipes reached higher biomass concentrations (21.2 g l⁻¹ DCW vs. 16.8 g l⁻¹ DCW) and up to 2-fold higher peptidolytic activities in comparison to cell cultivation in stirred tank reactors.
技术规模(≥5L)的剪切敏感微生物培养通常难以进行,因为常见的生物反应器通常旨在最大限度地将氧气输入培养基中。这是通过机械搅拌器实现的,会导致高剪切应力。对于没有特定培养系统的剪切敏感微生物,例如许多厌氧菌和真菌,如担子菌,就是这样的例子。在这项工作中,研究了一种用于哺乳动物细胞培养的一次性袋式生物反应器,以评估其培养剪切敏感厌氧真杆菌、剪切敏感担子菌金针菇和糙皮侧耳的潜力。所有培养都与传统的不锈钢搅拌罐反应器(STR)培养进行了比较。在袋式反应器中,所有被调查的微生物都生长良好。真杆菌在袋式反应器中的生长速率为μ=0.56 h⁻¹(袋式)和μ=0.53 h⁻¹(STR)。在真菌培养中观察到形态、酶活性和生长方面的差异。在袋式反应器中,观察到以小的、独立的颗粒形式生长,而 STR 培养则表现出强烈的聚集。与在搅拌罐反应器中进行细胞培养相比,金针菇达到了更高的生物量浓度(21.2 g l⁻¹ DCW 与 16.8 g l⁻¹ DCW)和高达 2 倍的肽酶活性。