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February 14, 2026PLOS Global Public Health0 citationsOpen Access

NTDscope: A multi-contrast portable microscope for disease diagnosis

MDMaría Díaz de León DerbyZMZaina L. MoussaCNCarlos F. Ng

Key Points

  • This research aims to develop a portable microscopy tool that facilitates rapid and accurate diagnosis of neglected tropical diseases.
  • Introduced the NTDscope, integrating multiple imaging modalities into a single system-on-module (SOM).
  • Demonstrated the use of NTDscope for brightfield, darkfield, and fluorescence imaging.
  • Applied quantification for molecular assays including a lateral flow test and a CRISPR-Cas13a-based assay.
  • Showed that NTDscope enables automated detection of parasites and pathogens in patient samples.
  • Expanded the diagnostic capabilities for microfilariae and helminth eggs.
  • Highlighted the potential for combining microscopy with machine learning for enhanced diagnostic accuracy.

Abstract

Accurate diagnostics are essential for disease control and elimination efforts. However, access to diagnostics for neglected tropical diseases (NTDs) is hindered by limited healthcare infrastructure in many NTD-endemic regions, as well as by reliance on time- and labor-intensive diagnostic methods, such as smear microscopy. New diagnostic tools that are portable, rapid, low-cost, and meet World Health Organization (WHO) sensitivity and specificity targets are urgently needed to accelerate NTD control and elimination programs. Here, we introduce the NTDscope, a portable microscopy platform that enables point-of-care imaging and automated detection of parasites and other pathogens in patient samples. The NTDscope builds on and extends the capabilities of the LoaScope, a device that turned the camera of a mobile phone into a microscope and used on-board image processing to automatically quantify Loa loa microfilariae burden in whole blood samples. The NTDscope replaces the mobile phone of the LoaScope with a system-on-module (SOM) that enables the integration of multiple imaging modalities in a single package designed to improve robustness and expand applications. In this work, we demonstrate the use of the NTDscope as a portable brightfield, darkfield, and fluorescence microscope for samples including microfilariae and helminth eggs. We also show that the device can be used to quantify molecular assays, such as a lateral flow test and a CRISPR-Cas13a-based assay. The ability to combine the diagnostic capabilities of conventional microscopy with molecular assays and machine learning in a single device could expand access to diagnostics for populations in NTD-endemic areas and beyond.

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Cite This Study

Derby et al. (2026) studied this question.

synapsesocial.com/papers/699011932ccff479cfe58532https://doi.org/10.1371/journal.pgph.0005937
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