Pan-Enterovirus Characterization Reveals Cryptic Circulation of Clinically Relevant Subtypes in Arizona Wastewater

Daryn E Erickson1,2,3, Kyle M Simmons1,2,3, Zachary A Barrand1,2,3

  • 1Translational Genomics Research Institute, Flagstaff, AZ, USA.

Abstract

Insights

Wastewater surveillance in Arizona detected multiple enteroviruses, including Enterovirus-D68 (EV-D68), during late summer and fall 2022. This approach aids in identifying public health threats and informs diagnoses for neurological symptoms.

Area of Science:

  • Environmental microbiology
  • Virology
  • Public health surveillance

Background:

  • Enteroviruses can cause mild or severe illness, including paralysis, but only poliovirus is reportable, limiting understanding of other subtypes.
  • Limited data exists on the distribution of non-polio enteroviruses, hindering public health response.
  • Wastewater-based epidemiology offers a promising tool for monitoring viral circulation.

Approach:

  • Utilized pooled nasal samples and wastewater from Arizona (July-October 2022).
  • Employed PCR and sequencing for enterovirus identification, with QIIME 2 for bioinformatic analysis.
  • Applied RT-qPCR and whole-genome sequencing for Enterovirus-D68 (EV-D68) detection and characterization.

Key Points:

  • Coxsackievirus A6, EV-D68, and Coxsackievirus A19 were dominant in Arizona wastewater.
  • EV-D68 circulated from August to mid-October 2022, despite not being detected in human samples.
  • Phylogenetic analysis suggested limited importations and local circulation of EV-D68.

Conclusions:

  • Wastewater surveillance effectively identifies potential public health threats.
  • EV-D68 monitoring via wastewater can inform clinical diagnoses for neurological conditions.
  • This study highlights the value of pan-assay and phylogenomic approaches for viral discovery.

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