Ibrahim Asmaa A, El-Housseiny Ghadir S, Aboshanab Khaled M, Stratmann Ansgar, Yassien Mahmoud A, Hassouna Nadia A
Department of Microbiology and Immunology, Faculty of Pharmacy, Ain Shams University, Organization of African Unity St., POB: 11566, Abbassia, Cairo, 11566, Egypt.
W42 Industrial Biotechnology GmbH, 44227, Dortmund, Germany.
AMB Express. 2024 Nov 5;14(1):121. doi: 10.1186/s13568-024-01778-1.
Cephalosporins presently stand as the most extensively utilized antibiotic in clinical settings. Acremonium (A.) chrysogenum is the main strain used in the manufacturing of cephalosporin C (CPC), which offers distinct advantages, including a wide-ranging antibacterial spectrum and powerful antibacterial efficacy. Our study aimed to determine the optimal conditions for scaling up the production of CPC from A. chrysogenum W42-I starting with the optimized conditions on the shake flask level obtained from our previous study and utilizing the optimized media (CPC2). The results indicated that an inoculum size equivalent to 1% v/v, aeration at 1 vvm, and an agitation rate of 400 rpm, with controlled pH at 4, were the most favorable conditions for the CPC production using a laboratory fermentor (14 L). The concentration of generated CPC was assessed using two standard curves obtained from agar well diffusion and high-performance liquid chromatography (HPLC). These optimized conditions resulted in a production of 399.52 µg/mL showing a significant increase of approximately 3.4 folds when compared to the unoptimized fermentation run. In conclusion, our findings demonstrated a more favorable time course for CPC production in the fermentor compared to that in the shake flask. Notably, there was a two-fold increase in production within the first three days. Fortunately, the fermentor achieved a noteworthy increase in output, generating 1.598 gm of the CPC within 4 L.
目前,头孢菌素是临床环境中使用最广泛的抗生素。顶头孢霉是生产头孢菌素C(CPC)的主要菌株,它具有明显的优势,包括抗菌谱广和抗菌效果强。我们的研究旨在从我们之前的研究中在摇瓶水平获得的优化条件出发,并使用优化培养基(CPC2),确定从顶头孢霉W42-I扩大生产CPC的最佳条件。结果表明,接种量为1% v/v、通气量为1 vvm、搅拌速度为400 rpm、pH控制在4时,是使用实验室发酵罐(14 L)生产CPC的最有利条件。使用从琼脂孔扩散法和高效液相色谱法(HPLC)获得的两条标准曲线评估生成的CPC浓度。这些优化条件下的产量为399.52 µg/mL,与未优化的发酵运行相比,显著增加了约3.4倍。总之,我们的研究结果表明,与摇瓶相比,发酵罐中CPC生产的时间进程更有利。值得注意的是,在前三天内产量增加了两倍。幸运的是,发酵罐的产量有了显著提高,在4 L内产生了1.598 g的CPC。