Jani Peter, Emmert Joachim, Wohlgemuth Roland
Research Specialties, Sigma-Aldrich, Buchs, Switzerland.
Biotechnol J. 2008 Feb;3(2):202-8. doi: 10.1002/biot.200700174.
The optimization of the biosynthetic pathways is highly attractive for the large-scale preparation of macrotetrolides, because overall yields in the chemical synthesis of compounds like nonactin have been very low. A key success factor determining the outcome of such optimizations is the adequate process analysis for the envisioned product. The analytical methods for process control involved in the past spectrophotometric and chromatographic measurements. LC-MS offers a modern approach to obtain more detailed data than the spectrophotometric and chromatographic measurements used in the past. In this work, a fast and versatile analytical LC-MS method has been set up, which has proven of much value for the in-process analysis of macrotetrolides during fermentation and which has allowed rapid large-scale bioprocess development.
生物合成途径的优化对于大环四萜类化合物的大规模制备极具吸引力,因为像无活菌素这样的化合物在化学合成中的总产率一直很低。决定此类优化结果的一个关键成功因素是对预期产物进行充分的过程分析。过去,过程控制所涉及的分析方法包括分光光度法和色谱法测量。液相色谱 - 质谱联用(LC-MS)提供了一种现代方法,能够获得比过去使用的分光光度法和色谱法测量更详细的数据。在这项工作中,建立了一种快速且通用的分析LC-MS方法,该方法已被证明在发酵过程中对大环四萜类化合物的过程分析具有很大价值,并使得大规模生物过程开发得以快速进行。