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Lenoch, J.

Publications and source records attributed to Lenoch, J..

3 recordsLinked to original sources

Prevalence of Avian Influenza Virus in Synanthropic Birds Associated with an Outbreak of Highly Pathogenic Strain EA/AM H5N1

The 2022 - 2023 highly pathogenic avian influenza (HPAI) virus outbreak of H5N1 Eurasian lineage goose/Guangdong clade 2.3.4.4b is the largest in North American history and has significantly impacted wild bird populations and domestic poultry across the United States. Synanthropic birds may play an important role in transmitting the virus laterally to other wild bird species and domestic poultry. Understanding the prevalence of HPAI H5N1 in different avian orders may help inform management decisions and potential risk factors for both wild and domestic bird populations. Following the confirmation of infection of HPAI H5N1 in domestic poultry at two commercial premises in IN, USA, we sampled and tested 266 synanthropic avian species within the Columbiformes and Passeriformes orders and found no detection of the virus at either location. Additionally, laboratories within the National Animal Health Laboratory Network were queried for influenza Type A rRT-PCR assay test results from morbidity and mortality events in wild birds, consisting of 10,786 birds tested across eight orders and 1,666 avian influenza virus detections. Query results were assessed by taxonomic groups for viral prevalence and suggested that the virus most often was observed in predatory and scavenging birds. Although detections were found in non-predatory synanthropic birds including the orders Columbiformes, Galliformes, and Passeriformes, the risk of transmission from and between these groups appears comparatively low, with apparent prevalence rates of 0.0090, 0.0688, and 0.0147, respectively. The highest prevalence was observed in raptors (0.2514), with prevalence rates in exclusively scavenging Cathartidae reaching up to 0.5333. There is strong evidence that consumption of infected tissues is a key pathway for transmission of avian influenza viruses. Understanding the impact of the 2022 - 2023 HPAI outbreak in wild bird populations can provide pertinent information on viral transmission, disease ecology, and risk to humans and agriculture.

ecology↗

Pathology of natural infection with highly pathogenic avian influenza virus (H5N1) clade 2.3.4.4b in wild terrestrial mammals in the United States in 2022

This article describes the first detections of disease due to natural infection with highly pathogenic avian influenza virus (HPAIv) H5N1 of the Eurasian lineage goose/Guangdong clade 2.3.4.4b in wild terrestrial mammals throughout the United States during 2021-2022. Affected mammalian species include 50 red foxes (Vulpes vulpes), 6 striped skunks (Mephitis mephitis), 4 raccoons (Procyon lotor), 2 bobcats (Lynx rufus), 2 Virginia opossums (Didelphis virginiana), 1 coyote (Canis latrans), 1 fisher (Pekania pennanti), and 1 gray fox (Urocyon cinereoargenteus). Infected mammals primarily exhibited neurological signs. Necrotizing meningoencephalitis, interstitial pneumonia, and myocardial necrosis were the most common lesions; however, species variations in lesion distribution were observed. Genotype analysis of sequences from 48 animals indicates that these cases represent spillover infections from wild birds.

pathology↗

SARS-CoV-2 exposure in Norwegian rats (Rattus norvegicus) from New York City

Millions of Norway rats (Rattus norvegicus)inhabit New York City (NYC), presenting the potential for transmission of SARS-CoV-2 from humans to rats and other wildlife. We evaluated SARS-CoV-2 exposure among 79 rats captured from NYC during the fall of 2021. Results showed that 13 of 79 rats (16.5%) tested IgG or IgM positive, and partial genomes of SARS-CoV-2 were recovered from four rats that were qRT-PCR positive. Using a virus challenge study, we also showed that Alpha, Delta, and Omicron variants can cause robust infections in wild-type Sprague Dawley (SD) rats, including high level replications in the upper and lower respiratory tracts and induction of both innate and adaptive immune responses. Additionally, the Delta variant resulted in the highest infectivity. In summary, our results indicated that rats are susceptible to infection with Alpha, Delta, and Omicron variants, and rats in the NYC municipal sewer systems have been exposed to SARS-CoV-2. Our findings highlight the potential risk of secondary zoonotic transmission from urban rats and the need for further monitoring of SARS-CoV-2 in those populations. ImportanceSince its emergence causing the COVID-19 pandemic, the host tropism expansion of SARS-CoV-2 raises a potential risk for reverse-zoonotic transmission of emerging variants into rodent species, including wild rat species. In this study, we presented both genetic and serological evidence for SARS-CoV-2 exposure in wild rat population from New York City, and these viruses are potentially linked to the viruses during the early stages of the pandemic. We also demonstrated that rats are susceptible to additional variants (i.e., Alpha, Delta, and Omicron) predominant in humans and that the susceptibility to different variants vary. Our findings highlight the potential risk of secondary zoonotic transmission from urban rats and the need for further monitoring of SARS-CoV-2 in those populations.

microbiology↗