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带有集成混合器和流体注射器的微生物反应器阵列,用于具有pH值和溶解氧控制的高通量实验。

Microbioreactor arrays with integrated mixers and fluid injectors for high-throughput experimentation with pH and dissolved oxygen control.

作者信息

Lee Harry L T, Boccazzi Paolo, Ram Rajeev J, Sinskey Anthony J

机构信息

Research Laboratory of Electronics, Massachusetts Institute of Technology, 77 Massachusetts Ave, Cambridge, MA 02139, USA.

出版信息

Lab Chip. 2006 Sep;6(9):1229-35. doi: 10.1039/b608014f. Epub 2006 Jul 27.

DOI:10.1039/b608014f
PMID:16929403
Abstract

We have developed an integrated array of microbioreactors, with 100 microL working volume, comprising a peristaltic oxygenating mixer and microfluidic injectors. These integrated devices were fabricated in a single chip and can provide a high oxygen transfer rate (k(L)a approximately 0.1 s(-1)) without introducing bubbles, and closed loop control over dissolved oxygen and pH (+/-0.1). The system was capable of supporting eight simultaneous Escherichia coli fermentations to cell densities greater than 13 g-dcw L(-1) (1 cm OD(650 nm) > 40). This cell density was comparable to that achieved in a 4 litre reference fermentation, conducted with the same strain, in a bench scale stirred tank bioreactor and is more than four times higher than cell densities previously achieved in microbioreactors. Bubble free oxygenation permitted near real time optical density measurements which could be used to observe subtle changes in the growth rate and infer changes in the state of microbial genetic networks. Our system provides a platform for the study of the interaction of microbial populations with different environmental conditions, which has applications in basic science and industrial bioprocess development. We leverage the advantages of microfluidic integration to deliver a disposable, parallel bioreactor in a single chip, rather than robotically multiplexing independent bioreactors, which opens a new avenue for scaling small scale bioreactor arrays with the capabilities of bench scale stirred tank reactors.

摘要

我们开发了一种集成的微生物反应器阵列,工作体积为100微升,包括一个蠕动式充氧混合器和微流体注射器。这些集成设备在单个芯片上制造,能够在不引入气泡的情况下提供高氧传递速率(k(L)a约为0.1 s(-1)),并对溶解氧和pH值进行闭环控制(±0.1)。该系统能够同时支持八次大肠杆菌发酵,使细胞密度超过13 g-dcw L(-1)(1 cm OD(650 nm) > 40)。这个细胞密度与在4升参考发酵中使用相同菌株在台式搅拌罐生物反应器中获得的密度相当,并且比之前在微生物反应器中获得的细胞密度高出四倍多。无气泡充氧允许进行近实时光密度测量,可用于观察生长速率的细微变化并推断微生物遗传网络状态的变化。我们的系统为研究微生物群体与不同环境条件的相互作用提供了一个平台,在基础科学和工业生物工艺开发中都有应用。我们利用微流体集成的优势,在单个芯片上提供一次性的平行生物反应器,而不是通过机器人对独立生物反应器进行多路复用,这为扩展具有台式搅拌罐反应器能力的小规模生物反应器阵列开辟了一条新途径。

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