Abstract
Standard digital assays need a large number of compartments for precise quantification of a sample over a broad dynamic range. We address this issue with an optimized droplet digital approach that uses a drastically reduced number of compartments for quantification. We generate serial logarithmic dilutions of an initial bacterial sample as an array of microliter-sized droplet plugs. In a subsequent step, these droplets are split into libraries of nanoliter droplets and pooled together for incubation and analysis. We show that our technology is at par with traditional dilution plate count for quantification of bacteria, but has the advantage of simplifying the experimental setup and reducing the manual workload. The method also has the potential to reduce the assay time significantly.
Cite
CITATION STYLE
Scheler, O., Pacocha, N., Debski, P. R., Ruszczak, A., Kaminski, T. S., & Garstecki, P. (2017). Optimized droplet digital CFU assay (ddCFU) provides precise quantification of bacteria over a dynamic range of 6logs and beyond. Lab on a Chip, 17(11), 1980–1987. https://doi.org/10.1039/c7lc00206h
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