Food Science & Technology Institute, Federal University of Rio Grande do Sul, Av. Bento Goncalves, 9500, PO Box 15090, Porto Alegre, RS, 91501-970, Brazil.
J Ind Microbiol Biotechnol. 2011 Sep;38(9):1599-604. doi: 10.1007/s10295-011-0950-7. Epub 2011 Feb 22.
In this research, the combined effects of polydimethylsiloxane (PDMS) and different conditions of oxygen volumetric mass transfer coefficient (k(L)a) on lipase production by Staphylococcus warneri EX17 were studied and optimized in bioreactor cultures. Raw glycerol from biodiesel synthesis was used as the sole carbon source. Full-factorial central composite design and the response surface methodology were employed for the experimental design and analysis of the results. The optimal polydimethylsiloxane concentration and mass coefficient transfer (k(L)a) were found to be 13.5% (v/v) and 181 h(-1), respectively. Under these conditions, the maximal cell production obtained was 10.0 g/l, and the volumetric lipase activities of approximately 490 U/l, after 6 h of cultivation. These results are in close agreement with the model predictions. Results obtained in this work reveal the positive effects of PDMS on oxygen volumetric mass transfer coefficient (k(L)a) in the Staphylococcus warneri EX17 cultivation and lipase production.
在这项研究中,研究了聚二甲基硅氧烷(PDMS)和不同条件下的氧体积传质系数(k(L)a)对 Staphylococcus warneri EX17 脂肪酶生产的综合影响,并在生物反应器培养中进行了优化。生物柴油合成中的原始甘油被用作唯一的碳源。采用完全析因中心组合设计和响应面法进行实验设计和结果分析。发现最佳的聚二甲基硅氧烷浓度和质量转移系数(k(L)a)分别为 13.5%(v/v)和 181 h(-1)。在这些条件下,培养 6 小时后,获得的最大细胞产量为 10.0 g/l,体积脂肪酶活性约为 490 U/l。这些结果与模型预测非常吻合。这项工作的结果表明,PDMS 对 Staphylococcus warneri EX17 培养和脂肪酶生产中的氧体积传质系数(k(L)a)有积极影响。