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首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Headspace solid-phase microextraction (HS-SPME) combined with GC-MS as a process analytical technology (PAT) tool for monitoring the cultivation of C. tetani
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Headspace solid-phase microextraction (HS-SPME) combined with GC-MS as a process analytical technology (PAT) tool for monitoring the cultivation of C. tetani

机译:顶空固相微萃取(HS-SPME)与GC-MS相结合,作为用于监测C.Tetani培养的过程分析技术(PAT)工具

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Vaccine production is a biological process in which variation in time and output is inevitable. Thus, the application of Process Analytical Technologies (PAT) will be important in this regard. Headspace solid-phase microextraction (HS-SPME) coupled with GC-MS can be used as a PAT for process monitoring. This method is suitable to chemical profiling of volatile organic compounds (VOCs) emitted from microorganisms. Tetanus is a lethal disease caused by Clostridium tetani (C. tetani) bacterium and vaccination is an ultimate way to prevent this disease. In this paper, SPME fiber was used for the investigation of VOCs emerging from C. tetani during cultivation. Different types of VOCs such as sulfur-containing compounds were identified and some of them were selected as biomarkers for bioreactor monitoring during vaccine production. In the second step, the portable dynamic air sampling (PDAS) device was used as an interface for sampling VOCs by SPME fibers. The sampling procedure was optimized by face-centered central composite design (FC-CCD). The optimized sampling time and inlet gas flow rates were 10 min and 2 m L s(-1), respectively. PDAS was mounted in exhausted gas line of bioreactor and 42 samples of VOCs were prepared by SPME fibers in 7 days during incubation. Simultaneously, pH and optical density (OD) were evaluated to cultivation process which showed good correlations with the identified VOCs ( 80%). This method could be used for VOCs sampling from off-gas of a bioreactor to monitoring of the cultivation process.
机译:疫苗生产是一种生物过程,其中时间和产出的变化是不可避免的。因此,过程分析技术(PAT)的应用在这方面是重要的。与GC-MS耦合的顶部空间固相微萃取(HS-SPME)可以用作PAT用于PATE处理监测。该方法适用于从微生物发射的挥发性有机化合物(VOC)的化学分析。破伤风是由Tetani(Tetani)细菌和疫苗接种的致命疾病是预防这种疾病的最终方法。本文中,SPME纤维用于培养中C.Tetani出现的VOCs的研究。鉴定了不同类型的VOC,例如含硫化合物,并选择其中一些作为生物反应器在疫苗生产中进行生物标志物。在第二步中,便携式动态空气采样(PDA)设备用作SPME光纤采样VOC的界面。采样过程由面对中心的中央复合设计(FC-CCD)进行了优化。优化的采样时间和入口气体流速分别为10分钟和2 m L s(-1)。 PDA安装在耗尽的生物反应器中,在孵育期间在7天内通过SPME纤维制备42个VOC样品。同时,评价pH和光学密度(OD)对培养过程,其与鉴定的VOC(& 80%)显示出良好的相关性。该方法可用于从生物反应器的偏离气体取样到监测培养过程的VOCS。

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