RWTH Aachen, AVT-Biochemical Engineering, Worringer Weg, 52074 Aachen, Germany.
Biotechnol Bioeng. 2013 May;110(5):1386-95. doi: 10.1002/bit.24815. Epub 2013 Jan 17.
Non-invasive methods for online monitoring of biotechnological processes without compromising the integrity of the reactor system are very important to generate continuous data. Even though calorimetry has been used in conventional biochemical analysis for decades, it has not yet been specifically applied for online detection of product formation at technical scale. Thus, this article demonstrates a calorespirometric method for online detection of microbial lysine formation in stirred tank bioreactors. The respective heat generation of two bacterial strains, Corynebacterium glutamicum ATCC 13032 (wild-type) and C. glutamicum DM1730 (lysine producer), was compared with the O2 -consumption in order to determine whether lysine was formed. As validation of the proposed calorespirometric method, the online results agreed well with the offline measured data. This study has proven that calorespirometry is a viable non-invasive technique to detect product formation at any time point.
非侵入式方法可在线监测生物技术过程,而不会影响反应系统的完整性,这对于生成连续数据非常重要。尽管量热法在传统的生化分析中已经使用了几十年,但它尚未专门应用于技术规模下在线检测产物形成。因此,本文展示了一种用于在线检测搅拌罐生物反应器中微生物赖氨酸形成的量热呼吸测量法。比较了两株细菌(谷氨酸棒杆菌 ATCC 13032(野生型)和 C. glutamicum DM1730(赖氨酸产生菌)的各自产热量与 O2 消耗,以确定是否形成了赖氨酸。作为所提出的量热呼吸测量法的验证,在线结果与离线测量数据吻合良好。这项研究证明了量热呼吸测量法是一种可行的非侵入式技术,可随时检测产物形成。