首页> 外文期刊>Analytical methods >Application of an integrated LC-UV-MS-NMR platform to the identification of secondary metabolites from cell cultures: benzophenanthridine alkaloids from elicited Eschscholzia californica (California poppy) cell cultures
【24h】

Application of an integrated LC-UV-MS-NMR platform to the identification of secondary metabolites from cell cultures: benzophenanthridine alkaloids from elicited Eschscholzia californica (California poppy) cell cultures

机译:集成的LC-UV-MS-NMR平台在鉴定细胞培养物中次生代谢产物中的应用:诱导的加利福尼亚大肠埃希氏菌(California poppy)细胞培养物中的苯并菲生物碱

获取原文
获取原文并翻译 | 示例
       

摘要

Plant cell and tissue cultures are a scalable and controllable alternative to whole plants for obtaining natural products of medical relevance. Cultures can be optimized for high yields of desired metabolites using rapid profiling assays such as HPLC. We describe an approach to establishing a rapid assay for profiling cell culture expression systems using a novel microscale LC-UV-MS-NMR platform, designed to acquire both MS and NMR each at their optimal sensitivity, by using nanosplitter MS from 4 mm analytical HPLC columns, and offline microdroplet NMR. The approach is demonstrated in the analysis of elicited Eschscholzia californica cell cultures induced with purified yeast extract to produce benzophenanthridine alkaloids. Preliminary HPLC-UV provides an overview of the changes in the production of alkaloids with time after elicitation. At the time point corresponding to the production of the most alkaloids, the integrated LC-MS-microcoil NMR platform is used for structural identification of extracted alkaloids. Eight benzophenanthridine alkaloids were identified at the sub-microgram level. This paper demonstrates the utility of the nanosplitter LC-MS/microdroplet NMR platform when establishing cell culture expression systems.
机译:植物细胞和组织培养物是整个植物的可扩展且可控的替代品,可用于获得具有医疗意义的天然产物。可以使用快速分析法(例如HPLC)针对高产量的所需代谢产物优化培养物。我们描述了一种使用新型微尺度LC-UV-MS-NMR平台建立用于分析细胞培养表达系统的快速测定方法的方法,该平台旨在通过使用来自4毫米分析HPLC的纳米分离器MS来以最佳灵敏度分别获得MS和NMR柱和离线微滴NMR。该方法在用纯化的酵母提取物诱导产生苯并菲啶生物碱的诱导的加利福尼亚大肠埃希氏菌细胞培养物的分析中得到证明。初步HPLC-UV提供了诱导后生物碱产量随时间变化的概述。在对应于生产最多生物碱的时间点,使用集成的LC-MS-微线圈NMR平台对提取的生物碱进行结构鉴定。在亚微克水平上鉴定出八种苯并菲啶生物碱。本文展示了建立细胞培养表达系统时纳米分裂LC-MS /微滴NMR平台的实用性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号