Teodoro Juliana C, Baptista-Neto Alvaro, Cruz-Hernández Isara L, Hokka Carlos O, Badino Alberto C
Department of Chemical Engineering, Universidade Federal de São Carlos, Cx. Postal 676, CEP 13565-905, São Carlos SP, Brazil.
Appl Microbiol Biotechnol. 2006 Sep;72(3):450-5. doi: 10.1007/s00253-005-0273-6. Epub 2006 Jan 5.
First, the effect of different levels of nitrogen source on clavulanic acid (CA) production was evaluated in batch cultivations utilizing complex culture medium containing glycerol and three different levels of soy protein isolate (SPI). Cellular growth, evaluated in terms of the rheological parameter K, was highest with a SPI concentration of 30 g.L(-1) (4.42 g.L(-1) N total). However, the highest production of CA (380 mg.L(-1)) was obtained when an intermediate concentration of 20 g.L(-1) of SPI (2.95 g.L(-1) total N) was used. To address this, the influences of volumetric flow rate (F) and glycerol concentration in the complex feed medium (Cs(F)) in fed-batch cultivations were investigated. The best experimental condition for CA production was F=0.01 L.h(-1) and Cs(F)=120 g.L(-1), and under these conditions maximum CA production was practically twice that obtained in the batch cultivation. A single empirical equation was proposed to relate maximum CA production with F and Cs(F) in fed-batch experiments.
首先,在使用含有甘油和三种不同水平大豆分离蛋白(SPI)的复合培养基进行的分批培养中,评估了不同水平氮源对克拉维酸(CA)产量的影响。以流变学参数K评估细胞生长,当SPI浓度为30 g.L(-1)(总氮4.42 g.L(-1))时最高。然而,当使用20 g.L(-1)的SPI中间浓度(总氮2.95 g.L(-1))时,获得了最高的CA产量(380 mg.L(-1))。为了解决这个问题,研究了补料分批培养中体积流速(F)和复合补料培养基中甘油浓度(Cs(F))的影响。CA生产的最佳实验条件是F = 0.01 L.h(-1)和Cs(F) = 120 g.L(-1),在这些条件下,最大CA产量实际上是分批培养中获得产量的两倍。提出了一个单一的经验方程,以关联补料分批实验中最大CA产量与F和Cs(F)。