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Integrated Microfluidic Platform for Multiple Processes from Microalgal Culture to Lipid Extraction

机译:集成的微流控平台,可用于从微藻培养到脂质提取的多个过程

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摘要

For economically viable biofuel production from microalgae, it is necessary to develop efficient analytical platforms for quantitative evaluation of different lipid productivities of numerous microalgal species. Currently, microalgal culture, lipid accumulation, and lipid extraction depend on conventional benchtop methods requiring laborious and time-consuming processes. A poly(dimethylsiloxane) (PDMS)-based integrated microfluidic platform was developed to perform multiple steps in sample preparation on a single device for efficient and quantitative analysis of lipid from various microalgal strains. To achieve this goal, a simple microchannel with a micropillar array was integrated to connect the cell chamber and output reservoir, which act as a filtration unit that enables medium change and solvent extraction by fluid injection using a syringe pump. Multiple processes of cell culture, lipid accumulation, and lipid extraction were successfully accomplished using a single device without time-consuming and labor-intensive steps. Various conditions of solvent volume and temperature were investigated to optimize lipid extraction yield in the microfluidic device. The lipid extraction efficiency in the microfluidic system was higher than that in bulk using the same solvent. The lipid extraction efficiency achieved using less toxic aqueous isopropanol on the integrated device was 113.6% of that obtained with the conventional Bligh-Dyer method. Finally, lipid productivities of different microalgal strains grown in the microfluidic device were analyzed and compared. These results demonstrate that this simple integrated microfluidic platform can be applied as an alternative to conventional benchtop methods for efficient sample preparation in microalgal lipid analysis.
机译:为了从微藻生产经济可行的生物燃料,有必要开发有效的分析平台,以定量评估多种微藻物种的不同脂质生产率。当前,微藻培养,脂质积累和脂质提取取决于需要费力且费时的过程的常规台式方法。开发了一种基于聚(二甲基硅氧烷)(PDMS)的集成微流控平台,以在单个设备上执行样品制备中的多个步骤,以高效,定量地分析来自各种微藻菌株的脂质。为实现此目标,集成了具有微柱阵列的简单微通道,以连接细胞室和输出容器,它们充当过滤单元,可通过使用注射泵进行流体注入来进行培养基更换和溶剂提取。使用单个设备即可成功完成细胞培养,脂质积累和脂质提取的多个过程,而无需耗时且费力的步骤。研究了溶剂体积和温度的各种条件,以优化微流控装置中脂质的提取率。在相同的溶剂下,微流体系统中的脂质提取效率要高于整体系统。在集成设备上使用毒性较小的异丙醇水溶液可获得的脂质提取效率是传统Bligh-Dyer方法获得的脂质提取效率的113.6%。最后,分析和比较了在微流体装置中生长的不同微藻菌株的脂质生产率。这些结果表明,该简单的集成微流控平台可作为常规台式方法的替代品,以在微藻类脂质分析中进行有效的样品制备。

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