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Beattie, Patrick Daniel

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Beattie

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Patrick Daniel

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Beattie, Patrick Daniel

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  • Publication

    A Paper-Based Multiplexed Transaminase Test for Low-Cost, Point-of-Care Liver Function Testing

    (American Association for the Advancement of Science (AAAS), 2012) Pollock, Nira; Rolland, Jason P.; Kumar, Shailendra; Beattie, Patrick Daniel; Jain, Sidhartha; Noubary, Farzad; Wong, Vicki L.; Pohlmann, Rebecca; Ryan, Una S.; Whitesides, George

    In developed nations, monitoring for drug-induced liver injury through serial measurements of serum transaminases [aspartate aminotransferase (AST) and alanine aminotransferase (ALT)] in at-risk individuals is the standard of care. Despite the need, monitoring for drug-related hepatotoxicity in resource-limited settings is often limited by expense and logistics, even for patients at highest risk. This article describes the development and clinical testing of a paper-based, multiplexed microfluidic assay designed for rapid, semiquantitative measurement of AST and ALT in a fingerstick specimen. Using 223 clinical specimens obtained by venipuncture and 10 fingerstick specimens from healthy volunteers, we have shown that our assay can, in 15 min, provide visual measurements of AST and ALT in whole blood or serum, which allow the user to place those values into one of three readout “bins” [<3× upper limit of normal (ULN), 3 to 5× ULN, and >5× ULN, corresponding to tuberculosis/HIV treatment guidelines] with >90% accuracy. These data suggest that the ultimate point-of-care fingerstick device will have high impact on patient care in low-resource settings.

  • Publication

    From the Bench to the Field in Low-Cost Diagnostics: Two Case Studies

    (Wiley-Blackwell, 2015) Kumar, Ashok Ashwin; Hennek, Jonathan; Smith, Barbara; Kumar, Shailendra; Beattie, Patrick Daniel; Jain, Sidhartha; Rolland, Jason P.; Stossel, Thomas; Chunda-Liyoka, Catherine; Whitesides, George

    Despite the growth of research in universities on point-of-care (POC) diagnostics for global health, most devices never leave the laboratory. The processes that move diagnostic technology from the laboratory to the field—the processes intended to evaluate operation and performance under realistic conditions—are more complicated than they might seem. Two case studies illustrate this process: the development of a paper-based device to measure liver function, and the development of a device to identify sickle cell disease based on aqueous multiphase systems (AMPS) and differences in the densities of normal and sickled cells. Details of developing these devices provide strategies for forming partnerships, prototyping devices, designing studies, and evaluating POC diagnostics. Technical and procedural lessons drawn from these experiences may be useful to those designing diagnostic tests for developing countries, and more generally, technologies for use in resource-limited environments.