Lipid quantification in living microalgal cultures with digital holographic microscopy

C. Yourassowsky, Renaud Theunissen, Jérôme Dohet-Eraly, Frank Dubois
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Abstract

Large amounts of lipids are stored inside lipid droplets by some microalgae. Since these lipids can be used to produce nutraceuticals and biodiesel in a sustainable way, research is developing on fast non-destructive methods to quantify and monitor the amount of lipids within microalgal cultures. In this paper, we have developed with digital holographic microscopy a fast quantitative method to assess the evolution of the lipid content inside the diatom Phaeodactylum tricornutum living cells. The method uses a specific processing of recorded hologram sequences based on the refocusing capability in digital holographic microscopy. In representative samples of the culture, inside living cells, each lipid droplet volume is evaluated. In those experiments, for each sample, more than one thousand lipid droplets are automatically analysed from a sequence of one hundred recorded holograms. We have validated the method thanks to correlative quantitative phase contrast–fluorescence imaging and extrapolated it to larger calibrated spherical refractive particles, to demonstrate the flexibility of the method.
利用数字全息显微镜量化活体微藻培养物中的脂质
一些微藻的脂滴中储存着大量的脂质。由于这些脂质可用于以可持续的方式生产营养保健品和生物柴油,因此研究人员正在开发快速无损的方法来量化和监测微藻培养物中的脂质含量。在本文中,我们利用数字全息显微镜开发了一种快速定量方法,用于评估硅藻三尖杉活细胞内脂质含量的变化。该方法基于数字全息显微镜的重新聚焦功能,对记录的全息图序列进行特定处理。在活细胞内具有代表性的培养样本中,对每个脂滴体积进行评估。在这些实验中,对于每个样本,我们都从一百张全息图序列中自动分析了一千多个脂滴。我们通过相关的定量相衬-荧光成像验证了该方法,并将其推广到更大的校准球形折射颗粒,以证明该方法的灵活性。
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