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Published on: September 27, 2018
Rapid enumeration of phage in monodisperse emulsions
Katrina F Tjhung1, Sean Burnham, Hany Anany
1Department of Chemistry, University of Alberta , Edmonton, AB T6G 2G2, Canada.
Abstract:
Phage-based detection assays have been developed for the detection of viable bacteria for applications in clinical diagnosis, monitoring of water quality, and food safety. The majority of these assays deliver a positive readout in the form of newly generated progeny phages by the bacterial host of interest. Progeny phages are often visualized as plaques, or holes, in a lawn of bacteria on an agar-filled Petri dish; however, this rate-limiting step requires up to 12 h of incubation time. We have previously described an amplification of bacteriophages M13 inside droplets of media suspended in perfluorinated oil; a single phage M13 in a droplet yields 10(7) copies in 3-4 h. Here, we describe that encapsulation of reporter phages, both lytic T4-LacZ and nonlytic M13, in monodisperse droplets can also be used for rapid enumeration of phage. Compartmentalization in droplets accelerated the development of the signal from the reporter enzyme; counting of "positive" droplets yields accurate enumeration of phage particles ranging from 10(2) to 10(6) pfu/mL. For enumeration of T4-LacZ phage, the fluorescent signal appeared in as little as 90 min. Unlike bulk assays, quantification in emulsion is robust and insensitive to fluctuations in environmental conditions (e.g., temperature). Power-free emulsification using gravity-driven flow in the absence of syringe pumps and portable fluorescence imaging solutions makes this technology promising for use at the point of care in low-resource environments. This droplet-based phage enumeration method could accelerate and simplify point-of-care detection of the pathogens for which reporter bacteriophages have been developed.
Insights
Rapid phage enumeration using droplet technology accelerates bacterial detection. This method enhances speed and simplifies point-of-care diagnostics for various applications, including food safety and clinical settings.
Area of Science:
- Microbiology
- Biotechnology
- Analytical Chemistry
Background:
- Phage-based assays detect viable bacteria for clinical diagnosis, water quality, and food safety.
- Current methods using plaque assays require lengthy incubation (up to 12 hours).
- Previous work demonstrated bacteriophage M13 amplification within droplets.
Purpose of the Study:
- To develop a rapid phage enumeration method using encapsulated reporter phages in monodisperse droplets.
- To assess the efficiency of droplet encapsulation for both lytic (T4-LacZ) and non-lytic (M13) phages.
- To evaluate the potential for point-of-care applications in low-resource settings.
Main Methods:
- Encapsulation of reporter phages (T4-LacZ, M13) in monodisperse droplets within perfluorinated oil.
- Utilizing gravity-driven flow for power-free emulsification.
- Employing portable fluorescence imaging for signal detection and droplet counting.
Main Results:
- Droplet compartmentalization accelerated reporter enzyme signal development.
- Accurate phage enumeration (10^2 to 10^6 pfu/mL) was achieved by counting positive droplets.
- Fluorescent signal for T4-LacZ phage appeared in as little as 90 minutes.
- Quantification in emulsion demonstrated robustness and insensitivity to environmental fluctuations.
Conclusions:
- Droplet-based phage enumeration offers a rapid and simplified alternative to traditional plaque assays.
- The technology is suitable for point-of-care diagnostics, especially in resource-limited environments.
- This method holds promise for accelerating pathogen detection where reporter bacteriophages are available.

