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首页> 外文期刊>Analytical and bioanalytical chemistry >An integrated microfluidic device for the high-throughput screening of microalgal cell culture conditions that induce high growth rate and lipid content
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An integrated microfluidic device for the high-throughput screening of microalgal cell culture conditions that induce high growth rate and lipid content

机译:集成的微流控设备,用于高通量筛选诱导高生长速率和脂质含量的微藻细胞培养条件

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摘要

This study describes the development of a microfluidic device for the high-throughput screening of culture conditions, such as the optimum sodium acetate concentration for promoting rapid growth and high lipid accumulation of Chlamydomonas reinhardtii. An analysis of the microalgal growth on the microfluidic device revealed an optimum sodium acetate concentration of 5.72 g L~(-1). The lipid content, determined by the 4,4-Difluoro-1,3,5,7- tetramethyl-4-bora-3a,4a-diaza-s-indacene (BODIPY? 505/515) staining method, increased with the sodium acetate concentration. The results were found to be statistically reproducible with respect to cell growth and lipid production. Other nutrient conditions, including the nitrogen and phosphorus concentrations, can also be optimized on the same microfluidic platform. The microfluidic device performance results agreed well with the results obtained from the flask-scale experiments, validating that the culture conditions were scalable. Finally, we, for the first time, established a method for the absolute quantification of the microalgal lipid content in the picoliter culture volumes by comparing the on-chip and off-chip data. In conclusion, we successfully demonstrated the high-throughput screening of sodium acetate concentrations that induced high growth rates and high lipid contents in C. reinhardtii cells on the microfluidic device. [Figure not available: see fulltext.]
机译:这项研究描述了用于高通量筛选培养条件的微流体装置的开发,例如用于促进莱茵衣藻快速生长和高脂质积累的最佳乙酸钠浓度。对微流体装置上微藻生长的分析表明,最佳乙酸钠浓度为5.72 g L〜(-1)。通过4,4-二氟-1,3,5,7-四甲基-4-硼3a,4a-二氮杂-s-茚并四烯(BODIPY?505/515)染色法测定的脂质含量随钠的增加而增加醋酸盐浓度。发现结果关于细胞生长和脂质产生在统计学上可再现。其他营养条件,包括氮和磷的浓度,也可以在同一微流体平台上进行优化。微流体装置的性能结果与从烧瓶规模实验获得的结果吻合得很好,证实了培养条件是可扩展的。最后,我们首次建立了一种通过比较芯片上和芯片外数据来绝对定量微微升培养体积中微藻脂质含量的方法。总之,我们成功地证明了在微流体装置上对乙酸钠浓度进行高通量筛选的乙酸钠浓度可诱导莱茵衣藻细胞中的高生长速率和高脂质含量。 [图不可用:请参见全文。]

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