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August 15, 2025Biosensors15 citationsOpen Access

Droplet-Based Microfluidics in Single-Bacterium Analysis: Advancements in Cultivation, Detection, and Application

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HMHaiyan MaYZYuewen ZhangRSRen Shen

Key Points

  • Droplet-based microfluidics enhances detection and cultivation of microorganisms, addressing traditional limitations.
  • Key applications include antibiotic susceptibility testing and enzyme-directed evolution screening, indicating broad utility.
  • Observational analysis of recent advancements in microdroplet technology highlights its potential in microbial research.
  • This approach supports precision microbiology, potentially transforming techniques for understanding microbial diversity and functions.

Abstract

Microorganisms exhibit remarkable diversity, making their comprehensive characterization essential for understanding ecosystem functioning and safeguarding human health. However, traditional culture-based methods entail inherent limitations for resolving microbial heterogeneity, isolating slow-growing microorganisms, and accessing uncultivated microbes. Conversely, droplet-based microfluidics enables a high-throughput and precise platform for single-bacterium manipulation by physically isolating individual cells within microdroplets. This technology presents a transformative approach to overcoming the constraints of conventional techniques. This review outlines the fundamental principles, recent research advances, and key application domains of droplet-based microfluidics, with a particular focus on innovations in single-bacterium encapsulation, sorting, cultivation, and functional analysis. Applications such as antibiotic susceptibility testing, enzyme-directed evolution screening, microbial interaction studies, and the cultivation of novel bacterial species are discussed, underscoring the technology’s broad potential in microbiological research and biotechnology.

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Cite This Study

Ma et al. (2025) studied this question.

synapsesocial.com/papers/68af5701ad7bf08b1eadd7e0https://doi.org/10.3390/bios15080535
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