4.8 Article

A digital microfluidic system for serological immunoassays in remote settings

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SCIENCE TRANSLATIONAL MEDICINE
卷 10, 期 438, 页码 -

出版社

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/scitranslmed.aar6076

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资金

  1. Stars in Global Health (Grand Challenges Canada)
  2. Emergency Response and Recovery Branch (ERRB) Innovation Grant (CDC)
  3. Abbott Laboratories
  4. NSERC (Natural Sciences and Engineering Research Council of Canada) E.W.R. Steacie Memorial Fellowship
  5. Queen Elizabeth II Graduate Scholarship in Science and Technology (Government of Ontario)
  6. NSERC Postgraduate Scholarship
  7. Canada Research Chair Program (Government of Canada)

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Serosurveys are useful for assessing population susceptibility to vaccine-preventable disease outbreaks. Although at-risk populations in remote areas could benefit from this type of information, they face several logistical barriers to implementation, such as lack of access to centralized laboratories, cold storage, and transport of samples. We describe a potential solution: a compact and portable, field-deployable, point-of-care system relying on digital microfluidics that can rapidly test a small volume of capillary blood for disease-specific antibodies. This system uses inexpensive, inkjet-printed digital microfluidic cartridges together with an integrated instrument to perform enzyme-linked immunosorbent assays (ELISAs). We performed a field validation of the system's analytical performance at Kakuma refugee camp, a remote setting in northwestern Kenya, where we tested children aged 9 to 59 months and caregivers for measles and rubella immunoglobulin G (IgG). The IgG assays were determined to have sensitivities of 86% [95% confidence interval (CI), 79 to 91% (measles)] and 81% [95% CI, 73 to 88% (rubella)] and specificities of 80% [95% CI, 49 to 94% (measles)] and 91% [95% CI, 76 to 97% (rubella)] (measles, n = 140; rubella, n = 135) compared with reference tests (measles IgG and rubella IgG ELISAs from Siemens Enzygnost) conducted in a centralized laboratory. These results demonstrate a potential role for this point-of-care system in global serological surveillance, particularly in remote areas with limited access to centralized laboratories.

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