raccoon rabies virus
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Viruses ◽  
2021 ◽  
Vol 13 (2) ◽  
pp. 157
Author(s):  
Shylo R. Johnson ◽  
Dennis Slate ◽  
Kathleen M. Nelson ◽  
Amy J. Davis ◽  
Samual A. Mills ◽  
...  

Since the 1990s, oral rabies vaccination (ORV) has been used successfully to halt the westward spread of the raccoon rabies virus (RV) variant from the eastern continental USA. Elimination of raccoon RV from the eastern USA has proven challenging across targeted raccoon (Procyon lotor) and striped skunk (Mephitis mephitis) populations impacted by raccoon RV. Field trial evaluations of the Ontario Rabies Vaccine Bait (ONRAB) were initiated to expand ORV products available to meet the rabies management goal of raccoon RV elimination. This study describes the continuation of a 2011 trial in West Virginia. Our objective was to evaluate raccoon and skunk response to ORV occurring in West Virginia for an additional two years (2012–2013) at 75 baits/km2 followed by three years (2014–2016) of evaluation at 300 baits/km2. We measured the change in rabies virus-neutralizing antibody (RVNA) seroprevalence in targeted wildlife populations by comparing levels pre- and post-ORV during each year of study. The increase in bait density from 75/km2 to 300/km2 corresponded to an increase in average post-ORV seroprevalence for raccoon and skunk populations. Raccoon population RVNA levels increased from 53% (300/565, 95% CI: 50–57%) to 82.0% (596/727, 95% CI: 79–85%) during this study, and skunk population RVNA levels increased from 11% (8/72, 95% CI: 6–20%) to 39% (51/130, 95% CI: 31–48%). The RVNA seroprevalence pre-ORV demonstrated an increasing trend across study years for both bait densities and species, indicating that multiple years of ORV may be necessary to achieve and maintain RVNA seroprevalence in target wildlife populations for the control and elimination of raccoon RV in the eastern USA.


2020 ◽  
Vol 26 (6) ◽  
Author(s):  
Scott Brunt ◽  
Heather Solomon ◽  
Hilaire Leavitt ◽  
Erica Lasek-Nesselquist ◽  
Pascal LaPierre ◽  
...  

2020 ◽  
Vol 32 (1) ◽  
pp. 166-168
Author(s):  
Christopher L. Siepker ◽  
Martha F. Dalton ◽  
Brittany J. McHale ◽  
Kaori Sakamoto ◽  
Daniel R. Rissi

Porcine rabies is exceedingly rare worldwide. We describe herein the neuropathology and the diagnostic features of an outbreak of rabies in a litter of piglets attacked by a skunk in Georgia, United States. Rabies viral infection was confirmed in 2 of 3 piglets submitted for testing. Inflammatory and degenerative changes were more prominent in the brainstem and consisted of lymphoplasmacytic meningoencephalitis with glial nodules, neuronal necrosis, and neuronophagia. No viral inclusions (Negri bodies) were observed in multiple sections of brain. A fluorescent antibody test on fresh samples of brainstem and cerebellum was confirmatory for the eastern United States raccoon rabies virus variant. Immunoreactivity for rabies virus was detected across all brain sections in both cases but was more prominent in the thalamic and brainstem nuclei, as well as in the medial lemniscus. Rabies is an important differential diagnosis in pigs with neurologic disease.


Ecosphere ◽  
2014 ◽  
Vol 5 (10) ◽  
pp. art132 ◽  
Author(s):  
Olivia Tardy ◽  
Ariane Massé ◽  
Fanie Pelletier ◽  
Julien Mainguy ◽  
Daniel Fortin

2014 ◽  
Vol 04 (16) ◽  
pp. 1222-1236
Author(s):  
Vythegi Srithayakumar ◽  
Hariharan Sribalachandran ◽  
Rick Rosatte ◽  
Christopher J. Kyle

2014 ◽  
Vol 95 (1) ◽  
pp. 16-25 ◽  
Author(s):  
Vythegi Srithayakumar ◽  
Hariharan Sribalachandran ◽  
Rick Rosatte ◽  
Susan A. Nadin-Davis ◽  
Christopher J. Kyle

Zoonotic wildlife diseases pose significant health risks not only to their primary vectors but also to humans and domestic animals. Rabies is a lethal encephalitis caused by rabies virus (RV). This RNA virus can infect a range of terrestrial mammals but each viral variant persists in a particular reservoir host. Active management of these host vectors is needed to minimize the negative impacts of this disease, and an understanding of the immune response to RV infection aids strategies for host vaccination. Current knowledge of immune responses to RV infection comes primarily from rodent models in which an innate immune response triggers activation of several genes and signalling pathways. It is unclear, however, how well rodent models represent the immune response of natural hosts. This study investigates the innate immune response of a primary host, the raccoon, to a peripheral challenge using the raccoon rabies virus (RRV). The extent and temporal course of this response during RRV infection was analysed using genes predicted to be upregulated during infection (IFNs; IFN regulatory factors; IL-6; Toll like receptor-3; TNF receptor). We found that RRV activated components of the innate immune system, with changes in levels of transcripts correlated with presence of viral RNA. Our results suggest that natural reservoirs of rabies may not mimic the immune response triggered in rodent models, highlighting the need for further studies of infection in primary hosts.


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