School of Chemical Engineering, Department of Materials and Engineering Bioprocesses, State University of Campinas, Campinas, SP, Brazil.
Federal Institute of Education, Science and Technology of São Paulo, Campus Capivari, Capivari, SP, 13360-000, Brazil.
Bioprocess Biosyst Eng. 2021 Aug;44(8):1721-1732. doi: 10.1007/s00449-021-02555-1. Epub 2021 Apr 5.
The production of biocompounds through the cultivation of filamentous microorganisms is mainly affected by Oxygen Transfer Rate (OTR) and shear rate ([Formula: see text]) conditions. Despite efforts have been made to evaluate the effect of operating variables (impeller speed, N; and airflow rate, ϕ) on clavulanic acid production, no analysis regarding the effect of OTR and [Formula: see text] was made. Then, the aim of this study was to evaluate the dissociated effect of physical phenomena such as oxygen transfer and shear rate in the production of clavulanic acid from Streptomyces clavuligerus using a stirred tank bioreactor. Streptomyces clavuligerus cultivations were performed at five different OTR and [Formula: see text] conditions by manipulating the operating conditions (N, ϕ, and gas inlet composition). Cultivations performed at equal impeller speed (600 rpm, similar [Formula: see text]) using oxygen enrichment, showed that CA productivity (Prod) was positively affected by OTR increase. Subsequently, the different shear conditions (achieved by varying the impeller speed) lead to an increase in CA production levels. Despite both OTR and shear rate positively enhanced CA productivity, [Formula: see text] exhibited the highest impact: an increase of 145% in OTR enhanced the clavulanic acid productivity of about 29%, while an increment in the shear rate of 134% raised the Prod in 53%.
通过丝状微生物的培养来生产生物化合物主要受氧传递速率(OTR)和剪切速率([Formula: see text])条件的影响。尽管已经努力评估操作变量(搅拌器速度,N;和空气流量率,ϕ)对克拉维酸生产的影响,但没有分析 OTR 和 [Formula: see text] 的影响。因此,本研究的目的是评估物理现象(如氧传递和剪切速率)在使用搅拌罐生物反应器生产克拉维酸时对棒状链霉菌的分离效果。通过操纵操作条件(N、ϕ 和气体入口组成),在五个不同的 OTR 和 [Formula: see text] 条件下进行棒状链霉菌培养。在相同搅拌器速度(600 rpm,相似的 [Formula: see text])下使用氧气富集进行培养,表明 CA 生产力(Prod)随 OTR 的增加而正向增加。随后,不同的剪切条件(通过改变搅拌器速度来实现)导致 CA 产量水平增加。尽管 OTR 和剪切速率都能提高 CA 生产力,但 [Formula: see text] 的影响最大:OTR 增加 145%,可使克拉维酸生产力提高约 29%,而剪切速率增加 134%,可使 Prod 提高 53%。