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Using gradient micro-fluidics chips to optimize BG-11 medium for the growth of cyanobacteria Synechococcus elongatus PCC7942

机译:使用梯度微流控芯片优化BG-11培养基以生长蓝藻长形突触球菌PCC7942

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Cyanobacteria are phylum of bacteria that obtain their energy through photosynthesis. They are also known as Cyanophyta. BG-11 medium, which consists of various ingredients with specific composition, is used to cultivate cyanobacteria. Although BG-11 medium is the standard protocol for cultivating cyanobacteria, many biochemical researchers still search for a new recipe with optimized concentration ratio of the components to achieve faster and better cyanobacteria growth. In order to analyze and identify the optimal BG-11 composition for cyanobacteria growth, we used UV lithography (MEMS) to fabricate the micro-channel gradient system mold (Concentration Gradient Generator Chip, CGGC) and cultivated cyanobacteria strain Synechococcus elongatus PCC7942 in PDMS chambers. By using this high throughput micro channel design as the first step, we can test six different concentrations of each BG-11 ingredient at the same time. Moreover, it lowers the experimental costs and reduces the amount of medium used in cultivation compared to conventional methods.
机译:蓝细菌是通过光合作用获得能量的细菌门。它们也被称为蓝藻。 BG-11培养基由各种具有特定成分的成分组成,用于培养蓝细菌。尽管BG-11培养基是培养蓝细菌的标准方法,但许多生化研究人员仍在寻找一种具有最佳成分浓度比的新配方,以实现更快,更好的蓝细菌生长。为了分析和确定最适合蓝细菌生长的BG-11成分,我们使用UV光刻(MEMS)制作了微通道梯度系统模具(浓度梯度生成器芯片,CGGC),并在PDMS室中培养了蓝细菌菌株长形集球菌PCC7942。 。通过将这种高通量微通道设计用作第一步,我们可以同时测试每种BG-11成分的六种不同浓度。而且,与常规方法相比,它降低了实验成本并减少了用于培养的培养基量。

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