Department of Chemical and Materials Engineering, Tunghai University, 181, Taichung Harbor Rd, Taichung 407, Taiwan, ROC.
J Biosci Bioeng. 2013 Sep;116(3):366-70. doi: 10.1016/j.jbiosc.2013.03.011. Epub 2013 Apr 25.
Rapamycin was known to have the functions of being an antibiotic and immunosuppressant; recently it was also recognized as being able to retard the aging process. The effects of dissolved oxygen (DO) level on rapamycin production by pellet-form of Streptomyces hygroscopicus were investigated in this study. The results suggest that a high DO level is required to enhance rapamycin production. However, the premise for getting a high rapamycin concentration by using DO control was keeping the intact of pellet-form of S. hygroscopicus. What if the high DO level achieved was coming from the increase of agitation; it might break down the morphology of pellets-form in the fermentation tank and result in the decrease of rapamycin production. The maximum rapamycin obtained in this study was about 780 mg/L in the 5 L fermentor batch with DO controlled over 30%, with the supplement of pure oxygen in the inlet gas, and the agitation speed limited to less than 200 rpm. Conclusively, a high DO level and the morphology of pellets form both were detrimental to achieving a high rapamycin production by S. hygroscopicus in the agitation fermentor.
雷帕霉素具有抗生素和免疫抑制剂的功能;最近,它也被认为能够延缓衰老过程。本研究考察了溶解氧(DO)水平对吸水链霉菌球形体生产雷帕霉素的影响。结果表明,需要高 DO 水平来增强雷帕霉素的生产。然而,通过 DO 控制获得高雷帕霉素浓度的前提是保持吸水链霉菌球形体的完整。如果达到的高 DO 水平是通过增加搅拌来实现的,它可能会破坏发酵罐中颗粒形式的形态,并导致雷帕霉素产量的下降。本研究在 5L 发酵罐分批培养中,通过向进气中补充纯氧并将搅拌速度限制在 200rpm 以下,控制 DO 超过 30%,获得了约 780mg/L 的最大雷帕霉素产量。总之,高 DO 水平和颗粒形态都不利于吸水链霉菌在搅拌发酵罐中获得高产雷帕霉素。