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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.
Background:
Most seasonally circulating enteroviruses result in asymptomatic or mildly symptomatic infections. In rare cases, however, infection with some subtypes can result in paralysis or death. Of the 300 subtypes known, only poliovirus is reportable, limiting our understanding of the distribution of other enteroviruses that can cause clinical disease.
Objective:
The overarching objectives of this study were to: 1) describe the distribution of enteroviruses in Arizona during the late summer and fall of 2022, the time of year when they are thought to be most abundant, and 2) demonstrate the utility of viral pan-assay approaches for semi-agnostic discovery that can be followed up by more targeted assays and phylogenomics.
Methods:
This study utilizes pooled nasal samples collected from school-aged children and long-term care facility residents, and wastewater from multiple locations in Arizona during July-October of 2022. We used PCR to amplify and sequence a region common to all enteroviruses, followed by species-level bioinformatic characterization using the QIIME 2 platform. For Enterovirus-D68 (EV-D68), detection was carried out using RT-qPCR, followed by confirmation using near-complete whole EV-D68 genome sequencing using a newly designed tiled amplicon approach.
Results:
In the late summer and early fall of 2022, multiple enterovirus species were identified in Arizona wastewater, with Coxsackievirus A6, EV-D68, and Coxsackievirus A19 composing 86% of the characterized reads sequenced. While EV-D68 was not identified in pooled human nasal samples, and the only reported acute flaccid myelitis case in Arizona did not test positive for the virus, an in-depth analysis of EV-D68 in wastewater revealed that the virus was circulating from August through mid-October. A phylogenetic analysis on this relatively limited dataset revealed just a few importations into the state, with a single clade indicating local circulation.
Significance:
This study further supports the utility of wastewater-based epidemiology to identify potential public health threats. Our further investigations into EV-D68 shows how these data might help inform healthcare diagnoses for children presenting with concerning neurological symptoms.
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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