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Published on: March 29, 2020
Detection and genetic characterization of domestic cat hepadnavirus in cats with cavitary effusions
Gabriele Ratti1, Angelica Stranieri1, Donatella Scavone1
1Department of Veterinary Medicine and Animal Sciences, University of Milan, Via dell'Università 6, 26900 Lodi, Italy.
Insights
Domestic cat hepadnavirus (DCH) was detected in serum and effusion samples of cats with liver damage likelihood. This study suggests DCH circulation and variants in Italy, mirroring human HBV presence in body fluids.
Area of Science:
- Veterinary Virology
- Hepatology
- Molecular Epidemiology
Background:
- The novel domestic cat hepadnavirus (DCH) was identified in 2018, with its role in feline liver disease proposed.
- Previous findings indicated DCH presence in feline serum and peritoneal effusion.
Purpose of the Study:
- To investigate DCH prevalence in cats with and without cavitary effusions.
- To determine DCH presence within effusion samples.
- To explore DCH genetic diversity and phylogenetic relationships in Italy.
Main Methods:
- Retrospective analysis of stored serum and effusion samples from cats (2020-2022).
- Quantitative PCR (qPCR) for DCH detection.
- Whole genome sequencing and phylogenetic analysis of positive samples.
Main Results:
- DCH was detected in 2.8% (2/72) of cats, specifically in serum and peritoneal effusion samples.
- DCH was found in 6.1% (2/33) of cats with effusions, including inflammatory and non-inflammatory types.
- Both DCH-positive cats had a likelihood of liver damage (9.1%, 2/22).
- Phylogenetic analysis revealed DCH strains clustering with an Australian strain, distinct from other Italian DCH sequences.
Conclusions:
- Results indicate the circulation of diverse DCH variants in Italy.
- DCH was identified in effusion samples of infected cats, similar to HBV in humans.
- Further research is necessary to elucidate the pathogenic role of DCH in feline hepatic diseases.
Abstract:
After the identification of the novel domestic cat hepadnavirus (DCH) in 2018, its potential pathogenetic role in feline hepatic diseases has been suggested. Following the detection of DCH in a cat's serum and peritoneal effusion, the aim of this study was to retrospectively investigate the presence of DCH in cats with and without cavitary effusions along with DCH presence in effusions. Stored serum and effusion samples from cats with and without effusions admitted to the Veterinary Teaching Hospital of Lodi (Italy) in 2020-2022 were included based on results of hematobiochemical parameters. Effusions were classified based on cytological and physicochemical findings. The likelihood of liver damage was estimated based on clinical and laboratory findings. Samples were tested for DCH presence by quantitative PCR (qPCR). Positive samples were subjected to whole genome sequencing and phylogenetic analysis. DCH was detected in both serum and peritoneal effusion samples of 2/72 (2.8%) enrolled cats, included in the group with effusions (2/33; 6.1%), with one cat showing inflammatory and the other non-inflammatory effusion. Both DCH-positive cats belonged to the group with a likelihood of liver damage (2/22, 9.1%). Phylogeny showed that the DCH sequences from this study clustered with the prototypic Australian strain but were not included in the clade with other Italian DCH sequences. Results suggest the circulation of different DCH variants in Italy and show the presence of DCH in effusion samples from DCH-positive cats, mirroring the presence of HBV in body fluids from HBV-infected humans. Further studies are still recommended to define the pathogenic role of DCH in cats.
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