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Large-scale label-free single-cell analysis of paramylon in Euglena gracilis by high-throughput broadband Raman flow cytometry

机译:高通量宽带拉曼流式细胞术对大型裸藻中对甲酰胺的大规模无标记单细胞分析

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摘要

Microalga-based biomaterial production has attracted attention as a new source of drugs, foods, and biofuels. For enhancing the production efficiency, it is essential to understand its differences between heterogeneous microalgal subpopulations. However, existing techniques are not adequate to address the need due to the lack of single-cell resolution or the inability to perform large-scale analysis and detect small molecules. Here we demonstrated large-scale single-cell analysis of (a unicellular microalgal species that produces paramylon as a potential drug for HIV and colon cancer) with our recently developed high-throughput broadband Raman flow cytometer at a throughput of >1,000 cells/s. Specifically, we characterized the intracellular content of paramylon from single-cell Raman spectra of 10,000 cells cultured under five different conditions and found that paramylon contents in cells cultured in an identical condition is given by a log-normal distribution, which is a good model for describing the number of chemicals in a reaction network. The capability of characterizing distribution functions in a label-free manner is an important basis for isolating specific cell populations for synthetic biology via directed evolution based on the intracellular content of metabolites.
机译:基于微藻的生物材料生产作为药物,食品和生物燃料的新来源已引起关注。为了提高生产效率,必须了解其在异质微藻亚群之间的差异。但是,由于缺乏单细胞分辨率或无法进行大规模分析和检测小分子,现有技术不足以满足需求。在这里,我们用最近开发的高通量宽带拉曼流式细胞仪以> 1,000细胞/ s的通量证明了对单细胞微藻类分析(一种单细胞微藻种,产生亚甲酰胺作为HIV和结肠癌的潜在药物)的大规模单细胞分析。具体而言,我们从在5种不同条件下培养的10,000个细胞的单细胞拉曼光谱表征了副粘菌的胞内含量,发现在相同条件下培养的细胞中的副粘菌素含量由对数正态分布给出,这是一个很好的模型描述反应网络中化学物质的数量。以无标记的方式表征分布功能的能力是通过基于代谢物细胞内含量的定向进化为合成生物学分离特定细胞群体的重要基础。

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