BioPlanta GmbH, Deutscher Platz 5, 04103 Leipzig, Germany.
Appl Biochem Biotechnol. 2012 Aug;167(7):1907-20. doi: 10.1007/s12010-012-9743-3. Epub 2012 May 26.
The production of galanthamine by shoots of Leucojum aestivum grown in different bioreactor systems (shaking and nonshaking batch culture, temporary immersion system, bubble bioreactor, continuous and discontinuous gassing bioreactor) under different culture conditions was studied. The influence of the nutrient medium, weight of inoculum, and size of bioreactor on both growth and galanthamine production was studied. The maximal yield of galanthamine (19.416 mg) was achieved by cultivating the L. aestivum shoots (10 g of fresh inoculum) in a temporary immersion system in a 1-L bioreactor vessel which was used as an airlift culture vessel, gassing 12 times per day (5 min).
研究了不同生物反应器系统(摇瓶和非摇瓶分批培养、暂养系统、鼓泡生物反应器、连续和不连续通气生物反应器)中生长的雪兔子芽在不同培养条件下生产加兰他敏的情况。研究了营养培养基、接种物重量和生物反应器大小对生长和加兰他敏生产的影响。在 1 升生物反应器容器中,通过暂养系统培养雪兔子芽(10 克新鲜接种物),每天通气 12 次(每次 5 分钟),实现了加兰他敏的最大产量(19.416 毫克),该生物反应器容器被用作气升式培养容器。