Kim J H, Lim J S, Kim C H, Kim S W
Department of Chemical and Biological Engineering, Korea University, Seoul, South Korea.
Lett Appl Microbiol. 2005;40(5):307-11. doi: 10.1111/j.1472-765X.2005.01682.x.
In this study, the relationship between morphology and cephalosporin C (CPC) production in a 30-l bioreactor culture of Cephalosporium acremonium M25 using a 3:7 seed mixture was investigated. In addition, the kinetic model was established and applied.
CPC production was performed in a 30-l bioreactor using a 3:7 seed mixture. It was recognized that a 3:7 seed mixture was able to reduce lag phase and enhance CPC production. The maximum CPC production and cell mass were 1.96 and 81.5 g l-1 respectively. Through a morphology study by observation using image analysis, it was concluded that changes of morphological features predicted the progressive production of CPC and that a morphology study could be useful in monitoring the CPC fermentation by C. acremonium M25. In the kinetics study, a kinetic model of CPC fermentation was developed and applied. The proposed model could adequately describe the fermentation of C. acremonium M25 in a 30-l bioreactor.
CPC productivity was improved by using a 3:7 seed mixture in a 30-1 bioreactor. The changes in morphological features showed a very similar tendency with CPC production. A kinetic model of CPC fermentation was successfully established.
The results of the present study suggest that the use of a 3:7 seed mixture inocula has considerable possibilities for improving CPC productivity if applied to industrial scale fermentations. Through morphology and kinetics study, the kinetic model to describe the morphological differentiation and CPC production by C. acremonium M25 was established.
本研究考察了顶头孢霉M25在30升生物反应器中使用3:7种子混合物培养时形态与头孢菌素C(CPC)产量之间的关系。此外,还建立并应用了动力学模型。
在30升生物反应器中使用3:7种子混合物进行CPC生产。结果表明,3:7种子混合物能够缩短延迟期并提高CPC产量。CPC的最大产量和细胞质量分别为1.96克/升和81.5克/升。通过图像分析观察进行形态学研究得出,形态特征的变化预示着CPC的逐步产生,形态学研究有助于监测顶头孢霉M25的CPC发酵过程。在动力学研究中,建立并应用了CPC发酵的动力学模型。所提出的模型能够充分描述顶头孢霉M25在30升生物反应器中的发酵过程。
在30升生物反应器中使用3:7种子混合物可提高CPC生产力。形态特征的变化与CPC产量呈现出非常相似的趋势。成功建立了CPC发酵的动力学模型。
本研究结果表明,如果将3:7种子混合物接种物应用于工业规模发酵,对于提高CPC生产力具有很大的可能性。通过形态学和动力学研究,建立了描述顶头孢霉M25形态分化和CPC产生的动力学模型。