Wang Xu-Dong, Hu Chun-Yan, Qin Chao, Dong Yue-Sheng, Ying Guo-Qing, Xiu Zhi-Long, Su Zhi-Guo
School of Bioengineering Dalian University of Technology Dalian P. R. China.
College of Pharmaceutical Science Zhejiang University of Technology Hangzhou P. R. China.
Eng Life Sci. 2021 Jul 29;21(10):643-652. doi: 10.1002/elsc.202000091. eCollection 2021 Oct.
Clavulanic acid (CA) is usually used together with other β-lactam antibiotics as combination drugs to inhibit bacterial β-lactamases, which is mainly produced from the fermentation of microorganism such as . Recently, it is still a challenge for downstream processing of low concentration and unstable CA from fermentation broth with high solid content, high viscosity, and small cell size. In this study, an integrated process was developed for simultaneous solid-liquid separation and primary purification of CA from real fermentation broth of using salting-out extraction system (SOES). First, different SOESs were investigated, and a suitable SOES composed of ethanol/phosphate was chosen and further optimized using the pretreated fermentation broth. Then, the optimal system composed of 20% ethanol/15% KHPO and 10% KHPO w/w was used to direct separation of CA from untreated fermentation broth. The result showed that the partition coefficient () and recovery yield () of CA from untreated fermentation broth were 29.13 and 96.8%, respectively. Simultaneously, the removal rates of the cells and proteins were 99.8% and 63.3%, respectively. Compared with the traditional method of membrane filtration or liquid-liquid extraction system, this developed SOES showed the advantages of simple operation, shorter operation time, lower process cost and higher recovery yield of CA. These results demonstrated that the developed SOES could be used as an attractive alternative for the downstream processing of CA from real fermentation broth.
克拉维酸(CA)通常与其他β-内酰胺类抗生素联合使用,作为复方药物来抑制细菌β-内酰胺酶,该酶主要由诸如……等微生物发酵产生。近来,从高固体含量、高粘度且细胞尺寸小的发酵液中对低浓度且不稳定的CA进行下游加工仍是一项挑战。在本研究中,开发了一种集成工艺,用于使用盐析萃取系统(SOES)从……的实际发酵液中同时进行固液分离和CA的初步纯化。首先,研究了不同的SOES,选择了由乙醇/磷酸盐组成的合适SOES,并使用预处理后的发酵液对其进行进一步优化。然后,由20%乙醇/15%KHPO和10%KHPO(w/w)组成的最佳系统用于从未经处理的发酵液中直接分离CA。结果表明,从未经处理的发酵液中CA的分配系数()和回收率()分别为29.13和96.8%。同时,细胞和蛋白质的去除率分别为99.8%和63.3%。与传统的膜过滤或液液萃取系统方法相比,所开发的SOES显示出操作简单、操作时间短、工艺成本低以及CA回收率高的优点。这些结果表明,所开发的SOES可作为从实际发酵液中对CA进行下游加工的一种有吸引力的替代方法。