Streamlined CRISPR-based assays for detection and subtyping of H5 and H7 avian influenza

Avian influenza viruses (AIVs) are zoonotic pathogens that pose an increasing global threat due to their potential for significant economic losses in agriculture, and the risk of a pandemic should human-to-human transmission occur. In light of this, we need rapid, sensitive, and specific tests to detect and differentiate circulating AIVs. Current AIV diagnostic methods require specialized laboratory equipment, limiting their use in the field and in low-resource settings. Here, we develop three CRISPR-based Streamlined Highlighting of Infections to Navigate Epidemics (SHINE) assays that address these limitations. We designed, optimized, and validated a SHINE assay for H5 AIV, achieving 100% specificity when tested on seasonal-influenza-positive clinical samples, and a limit of detection of 121.7 copies/μL. We also developed SHINE assays targeting the 2.3.4.4b A(H5N1) and Eurasian H7 lineages. Together, these SHINE assays offer a promising platform for AIV diagnosis and surveillance, particularly outside laboratory settings.

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Publication Details

Journal
iScience
Published
2026-09-18
DOI
https://doi.org/10.1016/j.isci.2026.117556
Primary Topic
CRISPR and Genetic Engineering
Type
article
Field-Weighted Citation Impact
0.00

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article

Streamlined CRISPR-based assays for detection and subtyping of H5 and H7 avian influenza

Jacob E. Lemieux, Cameron Myhrvold, Andrew Guo, Yujia Huang et al.
iScience
CRISPR and Genetic Engineering
article

Streamlined CRISPR-based assays for detection and subtyping of H5 and H7 avian influenza

Jacob E. Lemieux, Cameron Myhrvold, Andrew Guo, Yujia Huang, Gordon Adams
article en

Abstract

Avian influenza viruses (AIVs) are zoonotic pathogens that pose an increasing global threat due to their potential for significant economic losses in agriculture, and the risk of a pandemic should human-to-human transmission occur. In light of this, we need rapid, sensitive, and specific tests to detect and differentiate circulating AIVs. Current AIV diagnostic methods require specialized laboratory equipment, limiting their use in the field and in low-resource settings. Here, we develop three CRISPR-based Streamlined Highlighting of Infections to Navigate Epidemics (SHINE) assays that address these limitations. We designed, optimized, and validated a SHINE assay for H5 AIV, achieving 100% specificity when tested on seasonal-influenza-positive clinical samples, and a limit of detection of 121.7 copies/μL. We also developed SHINE assays targeting the 2.3.4.4b A(H5N1) and Eurasian H7 lineages. Together, these SHINE assays offer a promising platform for AIV diagnosis and surveillance, particularly outside laboratory settings.

iScienceVol. 29(10)
Princeton University (US), Massachusetts General Hospital (US)
Centers for Disease Control and Prevention, National Institute of Allergy and Infectious Diseases
Openalex Percentile: Top 18%
CRISPR and Genetic Engineering
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Streamlined CRISPR-based assays for detection and subtyping of H5 and H7 avian influenza — Jacob E. Lemieux, Cameron Myhrvold, et al. · iScience (2026) | TGRS Research Map | TGRS