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A device architecture for three-dimensional, patterned paper immunoassays. | LitMetric

AI Article Synopsis

  • Diagnostic assays are crucial for assessing patient health by detecting biomarkers related to infections, disease progression, and treatment efficacy.
  • There is a significant demand for diagnostic tools in low-resource settings, leading to the development of innovative, paper-based assays that can function without centralized lab support.
  • This article details a device that performs immunoassays on patterned paper, showcasing its effectiveness by comparing results for hCG detection in urine against traditional home pregnancy tests, indicating potential for widespread use in point-of-care diagnostics.

Article Abstract

Diagnostic assays can provide valuable information about the health status of a patient, which include detection of biomarkers that indicate the presence of an infection, the progression or regression of a disease, and the efficacy of a course of treatment. Critical healthcare decisions must often be made at the point-of-care, far from the infrastructure and diagnostic capabilities of centralized laboratories. There exists an obvious need for diagnostic tools that are designed to address the unique challenges encountered by healthcare workers in limited-resource settings. Paper, a readily-available and inexpensive commodity, is an attractive medium with which to develop diagnostic assays for use in limited-resource settings. In this article, we describe a device architecture to perform immunoassays in patterned paper. These paper-based devices use a combination of lateral and vertical flow to control the wicking of fluid in three-dimensions. We provide guidelines to aid in the design of these devices and we illustrate how patterning can be used to tune the duration and performance of the assay. We demonstrate the use of these paper-based devices by developing a sandwich immunoassay for human chorionic gonadotropin (hCG) in urine, a biomarker of pregnancy. We then directly compare the qualitative and quantitative results of these paper-based immunoassays to commercially available lateral flow tests (i.e., the home pregnancy test). Our results suggest paper-based devices may find broad utility in the development of immunoassays for use at the point-of-care.

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Source
http://dx.doi.org/10.1039/c4lc00876fDOI Listing

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