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October 10, 2025Nature Communications17 citationsOpen Access

Direct single-molecule detection and super-resolution imaging with a low-cost portable smartphone-based microscope

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MLMorgane LoretanMBMariano BarellaNFNathan Fuchs

Key Points

  • The portable smartphone-based microscope achieves single molecule detection without signal amplification, making it highly sensitive.
  • It directly measures single-molecule fluorescence and supports super-resolution imaging, demonstrating versatility in applications.
  • The setup utilizes smartphone image sensors and data handling, showcasing adaptability across various smartphone models.
  • Its implementation as a point-of-care device opens up possibilities for personalized assays in diagnostics and education.

Abstract

Abstract Detecting single molecules, which represents the ultimate level of sensitivity, is typically achieved with research-grade equipment. Here we present a low-cost, portable smartphone-based fluorescence microscope capable of detecting single-molecule fluorescence directly, i.e., without the need for any signal amplification. The setup leverages the image sensors and data handling capacity of mass-produced smartphones, it is adaptable to different smartphones and capable of detecting single molecules across the visible spectral range. We showcase this capability through single-molecule measurements on DNA origami models and super-resolution microscopy of cells by single-molecule localization microscopy. Last, we illustrate its potential as a point-of-care (POC) device by implementing a single-molecule bioassay for RNA detection. This development paves the way for innovative applications of massively distributed or personalized assays with single-molecule sensitivity in various fields such as digital bioassays, POC diagnostics, field expeditions, STEM outreach, and life science education.

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Cite This Study

Loretan et al. (2025) studied this question.

synapsesocial.com/papers/68e92b74531184d53775e2bfhttps://doi.org/10.1038/s41467-025-63993-z
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