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Purification of microalgae from bacterial contamination using a disposable inertia-based microfluidic device

机译:使用一次性的基于惯性的微流控设备从细菌污染中纯化微藻

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摘要

Microalgae are a promising source of bioactive ingredients for the food, pharmaceutical and cosmetic industries. Every microalgae research group or production facility is facing one major problem regarding the potential contamination of the algal cell with bacteria. Prior to the storage of the microalgae in strain collections or to cultivation in bioreactors, it is necessary to carry out laborious purification procedures to separate the microalgae from the undesired bacterial cells. In this work, we present a disposable microfluidic cartridge for the high-throughput purification of microalgae samples based on inertial microfluidics. Some of the most relevant microalgae strains have a larger size than the relatively small, few micron bacterial cells, so making them distinguishable by size. The inertial microfluidic cartridge was fabricated with inexpensive materials, like pressure sensitive adhesive (PSA) and thin plastic layers, which were patterned using a simple cutting plotter. In spite of fabrication restrictions and the intrinsic difficulties of biological samples, the separation of microalgae from bacteria reached values in excess of 99%, previously only achieved using conventional high-end and high cost lithography methods. Moreover, due to the simple and high-throughput characteristic of the separation, it is possible to concatenate serial purification to exponentially decrease the absolute amount of bacteria in the final purified sample.
机译:微藻是食品,制药和化妆品工业中有希望的生物活性成分来源。每个微藻研究小组或生产设施都面临着有关藻类细胞被细菌潜在污染的一个主要问题。在将微藻储存在菌株集合中或在生物反应器中培养之前,有必要进行费力的纯化程序以将微藻与不期望的细菌细胞分离。在这项工作中,我们提出了一种基于惯性微流体技术的高通量纯化微藻样品的一次性微流体滤芯。一些最相关的微藻菌株的大小要比相对较小,只有几个微米的细菌细胞大,因此可以按大小区分它们。惯性微流体药筒由廉价材料制成,例如压敏粘合剂(PSA)和薄塑料层,这些材料使用简单的切割绘图仪进行了构图。尽管存在制造限制和生物样品的固有困难,但是从细菌中分离微藻的价值仍超过了99%,这以前只能使用常规的高端和高成本的光刻方法来实现。此外,由于分离的简单和高通量特性,可以串联纯化,以指数形式减少最终纯化样品中细菌的绝对数量。

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