Buchenauer A, Hofmann M C, Funke M, Büchs J, Mokwa W, Schnakenberg U
Institute of Materials in Electrical Engineering 1, RWTH Aachen University, Sommerfeldstr. 24, 52074 Aachen, Germany.
Biosens Bioelectron. 2009 Jan 1;24(5):1411-6. doi: 10.1016/j.bios.2008.08.043. Epub 2008 Sep 2.
In this study an array of micro-bioreactors based on the format of 48-well microtiter plates (MTP) is presented. The process parameters pH-value and biomass are monitored online by a combination of different sensors, the biolector measurement technology and conductance measurements. A microfluidic device dispenses two fluids individually into each well for controlling the pH-value of fermentations. The micro-bioreactor consists of four wells and two reservoirs. In each well a polyimide foil with platinum electrodes for conductance measurements is integrated. The microfluidic device is fabricated using softlithographic techniques and utilizes pneumatically actuated microvalves. The device is able to dispense volumes below 5nl. Finally, fermentations of Escherichia coli are carried out in the micro-bioreactor system. During the fermentation, the pH-value is measured optically and the biomass development is monitored by the scattered light signal. Meanwhile, the pH-value is controlled by dispensing sodium hydroxide and phosphoric acid. This micro-bioreactor demonstrates the possibility of online monitored and pH-controlled fermentations in micro-scale. The pH-value in the uncontrolled culture varies within the range of 6.46-8.83 whereas the pH-value in the controlled cultures can be kept within 6.85-7.07. This results in an increase in biomass in the pH-controlled culture compared to the nearly completely inhibited pH-uncontrolled culture.
在本研究中,提出了一种基于48孔微量滴定板(MTP)形式的微生物反应器阵列。通过不同传感器、生物反应器测量技术和电导测量的组合在线监测工艺参数pH值和生物量。一种微流控装置将两种流体分别分配到每个孔中,以控制发酵的pH值。微生物反应器由四个孔和两个储液器组成。在每个孔中集成了带有用于电导测量的铂电极的聚酰亚胺箔。微流控装置采用软光刻技术制造,并利用气动微阀。该装置能够分配低于5nl 的体积。最后,在微生物反应器系统中进行大肠杆菌的发酵。在发酵过程中,通过光学测量pH值,并通过散射光信号监测生物量的变化。同时,通过分配氢氧化钠和磷酸来控制pH值。这种微生物反应器展示了在微尺度上进行在线监测和pH控制发酵的可能性。未控制培养中的pH值在6.46 - 8.83范围内变化,而控制培养中的pH值可保持在6.85 - 7.07之间。与几乎完全受抑制的未控制pH值培养相比,这导致了pH控制培养中生物量的增加。