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首页> 外文期刊>Journal of Micromechanics and Microengineering >Microbioreactors with microfluidic control and a user-friendly connection to the actuator hardware
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Microbioreactors with microfluidic control and a user-friendly connection to the actuator hardware

机译:带有微流体控制的微生物反应器,并且用户友好的连接到执行器硬件

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In this study, an array of microbioreactors based on the format of 48-well microtiter plates (MTPs) is presented. The process parameters pH and biomass are monitored online using commercially available optical sensor technology. A microfluidic device dispenses acid or base individually into each well for controlling the pH of fermentations. Fluid volumes from 72 nL to 940 nL can be supplied with valve opening times between 10 ms and 200 ms. One microfluidic device is capable of supplying four wells from two reservoirs. Up to four microfluidic devices can be integrated on the area of a prototype MTP. The devices are fabricated in polydimethylsiloxane (PDMS) using soft lithographic techniques and utilize pneumatically actuated microvalves. During fermentations, the microbioreactor is clamped to an orbital shaker and a temporary pneumatic connection guides the externally controlled pressurized air to the microfluidic device. Finally, fermentations of Escherichia coli in the presence and absence of pH control are carried out in the microbioreactor system over 18 h. During the fermentation the pH of the cultures is continuously monitored by means of optodes. An ammonia solution or phosphoric acid is dispensed to adjust the pH if it differs from the set point of 7.2. In a controlled culture, the pH can be sustained within 7.0 to 7.3 while the pH in an uncontrolled culture ranges between 6.5 and 9.0. This microbioreactor demonstrates the possibility of pH-controlled fermentations in micro-scale. The process control and the user friendly connection to the actuation hardware provide an easy handling comparable to standard MTPs.
机译:在这项研究中,提出了一系列基于48孔微量滴定板(MTP)格式的微生物反应器。使用可商购的光学传感器技术在线监测过程参数pH和生物量。微流体装置将酸或碱分别分配到每个孔中,以控制发酵的pH。阀开启时间在10毫秒至200毫秒之间,可提供72 nL至940 nL的流体量。一种微流体装置能够从两个储层供应四个井。原型MTP区域上最多可以集成四个微流体设备。该设备使用软光刻技术在聚二甲基硅氧烷(PDMS)中制造,并使用气动微型阀。在发酵过程中,将微生物反应器夹在定轨振荡器上,并通过临时的气动连接将外部控制的压缩空气引导至微流体装置。最后,在有和没有pH控制的情况下,在微生物反应器系统中进行大肠杆菌发酵超过18小时。在发酵期间,通过光电极连续监测培养物的pH。如果氨溶液或磷酸与设定值7.2不同,则分配氨溶液或磷酸以调节pH。在受控培养物中,pH值可维持在7.0至7.3之内,而在非受控培养物中,pH值可维持在6.5至9.0之间。这种微生物反应器证明了在微尺度上pH控制的发酵的可能性。与标准MTP相比,过程控制和用户对致动硬件的友好连接提供了易于处理的功能。

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