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An automated and parallelised DIY-dosing unit for individual and complex feeding profiles: Construction validation and applications

机译:自动和并行的DIY定量给料单元用于单个和复杂的进料曲线:构造验证和应用

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摘要

Since biotechnological research becomes more and more important for industrial applications, there is an increasing need for scalable and controllable laboratory procedures. A widely used approach in biotechnological research to improve the performance of a process is to vary the growth rates in order to find the right balance between growth and the production. This can be achieved by the application of a suitable feeding strategy. During this initial bioprocess development, it is beneficial to have at hand cheap and easy setups that work in parallel (e.g. in shaking flasks). Unfortunately, there is a gap between these easy setups and defined and controllable processes, which are necessary for up-scaling to an industrial relevant volume. One prerequisite to test and evaluate different process strategies apart from batch-mode is the availability of pump systems that allow for defined feeding profiles in shaking flasks. To our knowledge, there is no suitable dosing device on the market which fulfils the requirements of being cheap, precise, programmable, and parallelizable. Commercially available dosing units are either already integrated in bioreactors and therefore inflexible, or not programmable, or expensive, or a combination of those. Here, we present a LEGO-MINDSTORMS-based syringe pump, which has the potential of being widely used in daily laboratory routine due to its low price, programmability, and parallelisability. The acquisition costs do not exceed 350 € for up to four dosing units, that are independently controllable with one EV3 block. The system covers flow rates ranging from 0.7 μL min-1 up to 210 mL min-1 with a reliable flux. One dosing unit can convey at maximum a volume of 20 mL (using all 4 units even up to 80 mL in total) over the whole process time. The design of the dosing unit enables the user to perform experiments with up to four different growth rates in parallel (each measured in triplicates) per EV3-block used. We estimate, that the LEGO-MINDSTORMS-based dosing unit with 12 syringes in parallel is reducing the costs up to 50-fold compared to a trivial version of a commercial pump system (~1500 €) which fits the same requirements. Using the pump, we set the growth rates of a E. coli HMS174/DE3 culture to values between 0.1 and 0.4 h-1 with a standard deviation of at best 0.35% and an average discrepancy of 13.2%. Additionally, we determined the energy demand of a culture for the maintenance of the pTRA-51hd plasmid by quantifying the changes in biomass yield with different growth rates set. Around 25% of total substrate taken up is used for plasmid maintenance. To present possible applications and show the flexibility of the system, we applied a constant feed to perform microencapsulation of Pseudomonas putida and an individual dosing profile for the purification of a his-tagged eGFP via IMAC. This smart and versatile dosing unit, which is ready-to-use without any prior knowledge in electronics and control, is affordable for everyone and due to its flexibility and broad application range a valuable addition to the laboratory routine.
机译:由于生物技术研究对于工业应用变得越来越重要,因此对可扩展和可控制的实验室程序的需求日益增长。生物技术研究中广泛使用的一种改善过程性能的方法是改变增长率,以在生长与生产之间找到适当的平衡。这可以通过应用适当的进食策略来实现。在最初的生物过程开发过程中,手头便宜且易于并行运行的装置(例如在摇瓶中)是有益的。不幸的是,这些简单的设置与已定义和可控制的过程之间存在差距,这对于按比例放大到工业相关的体积是必需的。除批处理模式外,测试和评估不同工艺策略的先决条件是泵系统的可用性,该泵系统允许在摇瓶中定义进料曲线。据我们所知,市场上没有合适的加料装置可以满足廉价,精确,可编程和可并行化的要求。市售的加料单元已经集成在生物反应器中,因此不灵活,或者不可编程,或者价格昂贵,或者是它们的组合。在这里,我们介绍一种基于LEGO-MINDSTORMS的注射泵,由于其价格低,可编程性和并行性好,它有可能被广泛用于日常实验室日常工作中。最多可使用一个EV3模块独立控制的四个计量单元的购置成本不超过350欧元。该系统的流量范围为0.7μLmin -1 至210 mL min -1 ,流量可靠。一个加液单元在整个处理时间内最多可输送20毫升的体积(使用全部4个单元甚至最多80毫升)。配液单元的设计使用户能够对所使用的每个EV3模块并行进行多达四个不同生长速率的实验(每个生长速率一式三份)。我们估计,与满足相同要求的普通泵系统版本(约1500欧元)相比,基于LEGO-MINDSTORMS的具有12个注射器的并行加药装置可将成本降低多达50倍。使用泵,我们将大肠杆菌HMS174 / DE3培养物的生长速率设置为0.1到0.4 h -1 之间的值,标准偏差最大为0.35%,平均差异为13.2% 。此外,我们通过定量设置不同生长速率的生物量产量变化来确定维持pTRA-51hd质粒所需的培养物能量需求。吸收的总底物的约25%用于质粒维护。为了展示可能的应用并显示系统的灵活性,我们应用了恒定进料来进行恶臭假单胞菌的微囊化和通过IMAC纯化带有组氨酸标签的eGFP的单独剂量。这种智能多功能的加液装置无需任何电子和控制方面的先验知识即可直接使用,每个人都可以负担得起,并且由于其灵活性和广泛的应用范围,这是实验室常规工作的宝贵补充。

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