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从光密度值估算细菌细胞数。

Robust estimation of bacterial cell count from optical density.

机构信息

Raytheon BBN Technologies, Cambridge, MA, USA.

Department of Biology and Biotechnology, Worcester Polytechnic Institute, Worcester, MA, USA.

出版信息

Commun Biol. 2020 Sep 17;3(1):512. doi: 10.1038/s42003-020-01127-5.

Abstract

Optical density (OD) is widely used to estimate the density of cells in liquid culture, but cannot be compared between instruments without a standardized calibration protocol and is challenging to relate to actual cell count. We address this with an interlaboratory study comparing three simple, low-cost, and highly accessible OD calibration protocols across 244 laboratories, applied to eight strains of constitutive GFP-expressing E. coli. Based on our results, we recommend calibrating OD to estimated cell count using serial dilution of silica microspheres, which produces highly precise calibration (95.5% of residuals  <1.2-fold), is easily assessed for quality control, also assesses instrument effective linear range, and can be combined with fluorescence calibration to obtain units of Molecules of Equivalent Fluorescein (MEFL) per cell, allowing direct comparison and data fusion with flow cytometry measurements: in our study, fluorescence per cell measurements showed only a 1.07-fold mean difference between plate reader and flow cytometry data.

摘要

光密度(OD)广泛用于估计液体培养物中细胞的密度,但如果没有标准化的校准协议,就不能在仪器之间进行比较,并且难以与实际细胞计数相关联。我们通过一项涉及 244 个实验室的实验室间研究来解决这个问题,该研究比较了三种简单、低成本且易于获取的 OD 校准方案,应用于 8 株组成型 GFP 表达的大肠杆菌。根据我们的结果,我们建议使用硅微球的连续稀释来校准 OD 以估计细胞计数,这可以产生高度精确的校准(95.5%的残差<1.2 倍),易于进行质量控制评估,还可以评估仪器的有效线性范围,并与荧光校准相结合以获得每个细胞的等效荧光素分子(MEFL)单位,从而允许与流式细胞术测量进行直接比较和数据融合:在我们的研究中,每个细胞的荧光测量值与平板读数器和流式细胞术数据之间的平均差异仅为 1.07 倍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b218/7499192/7aacc8dac0a8/42003_2020_1127_Fig1_HTML.jpg

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