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Keywords = multicat environment

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12 pages, 710 KB  
Article
Successful Eradication of Feline Coronavirus in Breeding Catteries Paves the Way to Prevent Feline Infectious Peritonitis
by Luna Vanden Buijs, Jolien Van Cleemput, Emmanuel Abatih and Hans Nauwynck
Viruses 2026, 18(6), 614; https://doi.org/10.3390/v18060614 - 28 May 2026
Viewed by 2232
Abstract
Feline coronavirus (FCoV) is widespread in multi-cat environments. Although most infections are asymptomatic, FCoV may mutate into a virulent form responsible for feline infectious peritonitis (FIP), a progressive and mostly fatal systemic disease. Controlling FCoV circulation in multi-cat environments is challenging, but desirable [...] Read more.
Feline coronavirus (FCoV) is widespread in multi-cat environments. Although most infections are asymptomatic, FCoV may mutate into a virulent form responsible for feline infectious peritonitis (FIP), a progressive and mostly fatal systemic disease. Controlling FCoV circulation in multi-cat environments is challenging, but desirable for feline health and breeding management. In this study, we evaluated the impact of stepwise management protocols with increasing stringency on viral shedding in 20 catteries across Flanders, Belgium. Each cattery was allocated to one of three eradication protocols: voluntary (n = 10), stimulatory (n = 5) or obligatory (n = 5). Rectal swabs were collected at the start (T0) and twice after implementation (T6m = 6 months, T12m = 12 months) and tested by RT-qPCR. With the voluntary protocol, the proportion of shedders decreased significantly from 78.6% at T0 to 62.4% at T6m and 45.5% at T12m, though all catteries remained positive (minimum one shedder). The stimulatory protocol reduced shedding from 70.5% (T0) to 30.5% at T6m and 12.9% at T12m, with two of five catteries achieving a negative status. The obligatory eradication protocol achieved the most pronounced effect, with the shedding declining from 55.5% at the start to 17.1% at T6m and 2.5% at T12m, and four of five catteries testing negative by T12m. These findings demonstrate that cattery-level FCoV control is feasible, with an effectiveness depending on the stringency of management. At the end, FCoV-negative catteries can sell certified FCoV-negative kittens. Full article
(This article belongs to the Section Animal Viruses)
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11 pages, 1647 KB  
Article
Description of a Virulent Systemic Feline Calicivirus Infection in a Kitten with Footpads Oedema and Fatal Pneumonia
by Martina Magliocca, Luciana Mandrioli, Mara Battilani, Barbara Bacci, Giulia Ballotta, Maral Anjomanibenisi, Lorenza Urbani, Liliana Martella, Veronica Facile, Raffaele Scarpellini, Irene Ascenzi, Laura Gallina and Andrea Balboni
Pathogens 2025, 14(11), 1183; https://doi.org/10.3390/pathogens14111183 - 19 Nov 2025
Cited by 3 | Viewed by 2351
Abstract
Feline calicivirus (FCV) is widespread in multi-cat environments and typically causes acute upper respiratory tract disease (URTD). FCV also causes outbreaks of virulent systemic disease (VSD), mainly in adults, with multiple organ involvement. In this study, an FCV-VSD infection was described in a [...] Read more.
Feline calicivirus (FCV) is widespread in multi-cat environments and typically causes acute upper respiratory tract disease (URTD). FCV also causes outbreaks of virulent systemic disease (VSD), mainly in adults, with multiple organ involvement. In this study, an FCV-VSD infection was described in a less-one-month-old Maine Coon kitten originating from a cattery where an outbreak of FCV-URTD had previously been reported. After spontaneous death, post-mortem examination as well as histopathological, immunohistochemical, bacteriological and virological investigations were carried out. Pathological findings were consistent with severe pneumonia and cutaneous oedema of the footpads. No concomitant bacterial infection was detected. FCV RNA was detected in several organs and the highest amount of viral RNA was observed in the lung sample, in which the presence of the FCV antigen was confirmed by immunohistochemistry. With the same immunohistochemical technique, the IBA-1 antibody detected sparse alveolar macrophages, the main viral target cell and pulmonary replication site. The nucleotide sequences of the viral ORF2 gene amplified from all positive tissues were identical with each other and phylogeny confirms that highly virulent FCV strains are not distinguishable from FCV-URTD phenotypes. Our findings reinforce the hypothesis that VSD outbreaks can occur even in small populations, due to the high genetic variability of FCV. Full article
(This article belongs to the Special Issue Diagnostics of Emerging and Re-Emerging Pathogens)
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17 pages, 2401 KB  
Article
How Lazy Are Pet Cats Really? Using Machine Learning and Accelerometry to Get a Glimpse into the Behaviour of Privately Owned Cats in Different Households
by Michelle Smit, Rene A. Corner-Thomas, Ina Draganova, Christopher J. Andrews and David G. Thomas
Sensors 2024, 24(8), 2623; https://doi.org/10.3390/s24082623 - 19 Apr 2024
Cited by 7 | Viewed by 8430
Abstract
Surprisingly little is known about how the home environment influences the behaviour of pet cats. This study aimed to determine how factors in the home environment (e.g., with or without outdoor access, urban vs. rural, presence of a child) and the season influences [...] Read more.
Surprisingly little is known about how the home environment influences the behaviour of pet cats. This study aimed to determine how factors in the home environment (e.g., with or without outdoor access, urban vs. rural, presence of a child) and the season influences the daily behaviour of cats. Using accelerometer data and a validated machine learning model, behaviours including being active, eating, grooming, littering, lying, scratching, sitting, and standing were quantified for 28 pet cats. Generalized estimating equation models were used to determine the effects of different environmental conditions. Increasing cat age was negatively correlated with time spent active (p < 0.05). Cats with outdoor access (n = 18) were less active in winter than in summer (p < 0.05), but no differences were observed between seasons for indoor-only (n = 10) cats. Cats living in rural areas (n = 7) spent more time eating than cats in urban areas (n = 21; p < 0.05). Cats living in single-cat households (n = 12) spent more time lying but less time sitting than cats living in multi-cat households (n = 16; p < 0.05). Cats in households with at least one child (n = 20) spent more time standing in winter (p < 0.05), and more time lying but less time sitting in summer compared to cats in households with no children (n = 8; p < 0.05). This study clearly shows that the home environment has a major impact on cat behaviour. Full article
(This article belongs to the Section Intelligent Sensors)
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32 pages, 17841 KB  
Article
Clinicopathological and Radiological Features of Cats Presented with Infectious Respiratory Disease Signs: A Focus on Rhodococcus equi and Klebsiella pneumoniae
by Muhammad Waseem Aslam, Seng Fong Lau, Rozanaliza Radzi, Sharina Omar, Ubedullah Kaka and Ishtiaq Ahmed
Microorganisms 2023, 11(3), 737; https://doi.org/10.3390/microorganisms11030737 - 14 Mar 2023
Cited by 4 | Viewed by 7759
Abstract
The objective of this study was to evaluate the prevalence of involvement of common viral organisms R. equi and K. pneumoniae and their clinicopathological and radiological features in respiratory disease of Malaysian domestic cats. A total of 34 feline cases with acute/chronic infectious [...] Read more.
The objective of this study was to evaluate the prevalence of involvement of common viral organisms R. equi and K. pneumoniae and their clinicopathological and radiological features in respiratory disease of Malaysian domestic cats. A total of 34 feline cases with acute/chronic infectious respiratory disease signs were followed prospectively to investigate respiratory disease due to R. equi and K. pneumoniae and their relationship with concurrent viral infections in disease manifestation. All sampled cats (n = 27) were positive for FCoV antibodies and negative for FeLV. A significantly high antibody titer for FCV in n = 26 cases was also noticed. A single sample of pyothorax from a 3-months-old, non-vaccinated kitten was positive for R. equi. Bronchopneumonia with severe infiltration of the polymorphs and mononuclear inflammatory cells were prominent features of lungs histopathology from the kitten positive for R. equi. K. pneumoniae subsp. pneumoniae was confirmed from tracheal swabs of two cats. Histologically, the tracheal tissues of the two cats positive for K. pneumoniae were normal. In diagnostic imaging, epicenter of the infectious URT disease was nasal conchae rostrally and nasal turbinates caudally, however for infectious LRT disease was bronchial tree. Conclusively, infectious respiratory disease is a complex illness in cats, predominantly for unvaccinated kittens and young adult cats, especially those kept in multi-cat household or shelter environments because of the involvement of multiple bacterial and viral organisms as primary or secondary invaders. Clinicians should not preclude feline rhodococcosis from differentials, especially in kittens with pyothorax and less than one year of age. Unlike R. equi, K. pneumoniae has the potential to colonize URT of cats which might be disseminating further to cause LRT disease. Full article
(This article belongs to the Section Veterinary Microbiology)
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31 pages, 4426 KB  
Review
Calicivirus Infection in Cats
by Regina Hofmann-Lehmann, Margaret J. Hosie, Katrin Hartmann, Herman Egberink, Uwe Truyen, Séverine Tasker, Sándor Belák, Corine Boucraut-Baralon, Tadeusz Frymus, Albert Lloret, Fulvio Marsilio, Maria Grazia Pennisi, Diane D. Addie, Hans Lutz, Etienne Thiry, Alan D. Radford and Karin Möstl
Viruses 2022, 14(5), 937; https://doi.org/10.3390/v14050937 - 29 Apr 2022
Cited by 92 | Viewed by 31570
Abstract
Feline calicivirus (FCV) is a common pathogen in domestic cats that is highly contagious, resistant to many disinfectants and demonstrates a high genetic variability. FCV infection can lead to serious or even fatal diseases. In this review, the European Advisory Board on Cat [...] Read more.
Feline calicivirus (FCV) is a common pathogen in domestic cats that is highly contagious, resistant to many disinfectants and demonstrates a high genetic variability. FCV infection can lead to serious or even fatal diseases. In this review, the European Advisory Board on Cat Diseases (ABCD), a scientifically independent board of experts in feline medicine from 11 European countries, presents the current knowledge of FCV infection and fills gaps with expert opinions. FCV infections are particularly problematic in multicat environments. FCV-infected cats often show painful erosions in the mouth and mild upper respiratory disease and, particularly in kittens, even fatal pneumonia. However, infection can be associated with chronic gingivostomatitis. Rarely, highly virulent FCV variants can induce severe systemic disease with epizootic spread and high mortality. FCV can best be detected by reverse-transcriptase PCR. However, a negative result does not rule out FCV infection and healthy cats can test positive. All cats should be vaccinated against FCV (core vaccine); however, vaccination protects cats from disease but not from infection. Considering the high variability of FCV, changing to different vaccine strain(s) may be of benefit if disease occurs in fully vaccinated cats. Infection-induced immunity is not life-long and does not protect against all strains; therefore, vaccination of cats that have recovered from caliciviral disease is recommended. Full article
(This article belongs to the Special Issue Feline Viruses and Viral Diseases 2.0)
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14 pages, 4640 KB  
Article
Role of Feline Coronavirus as Contributor to Diarrhea in Cats from Breeding Catteries
by Sandra Felten, Ute Klein-Richers, Stefan Unterer, Michèle Bergmann, Christian M. Leutenegger, Nikola Pantchev, Jörg Balzer, Yury Zablotski, Regina Hofmann-Lehmann and Katrin Hartmann
Viruses 2022, 14(5), 858; https://doi.org/10.3390/v14050858 - 21 Apr 2022
Cited by 21 | Viewed by 6089
Abstract
(1) Background: Feline coronavirus infection (FCoV) is common in multi-cat environments. A role of FCoV in causing diarrhea is often assumed, but has not been proven. The aim of this study was to evaluate an association of FCoV infection with diarrhea in multi-cat [...] Read more.
(1) Background: Feline coronavirus infection (FCoV) is common in multi-cat environments. A role of FCoV in causing diarrhea is often assumed, but has not been proven. The aim of this study was to evaluate an association of FCoV infection with diarrhea in multi-cat environments. (2) Methods: The study included 234 cats from 37 catteries. Fecal samples were analyzed for FCoV RNA by reverse transcriptase quantitative polymerase chain reaction (RT-qPCR). Potential co-infections were determined by applying a qPCR panel on different potential enteropathogens and fecal flotation. A fecal scoring system was used to categorize feces as diarrheic or non-diarrheic. (3) Results: Of the 234 cats included, 23 had diarrhea. The prevalence of FCoV infection was 87.0% in cats with and 58.8% in cats without diarrhea. FCoV infection was significantly associated with diarrhea (Odds Ratio (OR) 5.01; p = 0.008). In addition, presence of Clostridium perfringens α toxin (OR 6.93; p = 0.032) and feline panleukopenia virus (OR 13.74; p = 0.004) were associated with an increased risk of diarrhea. There was no correlation between FCoV load and fecal score. FCoV-positive cats with co-infections were not more likely to have diarrhea than FCoV-positive cats without co-infections (p = 0.455). (4) Conclusions: FCoV infection is common in cats from catteries and can be associated with diarrhea. Full article
(This article belongs to the Special Issue Feline Viruses and Viral Diseases 2.0)
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18 pages, 1239 KB  
Article
Family Member, Best Friend, Child or ‘Just’ a Pet, Owners’ Relationship Perceptions and Consequences for Their Cats
by Esther M. C. Bouma, Marsha L. Reijgwart and Arie Dijkstra
Int. J. Environ. Res. Public Health 2022, 19(1), 193; https://doi.org/10.3390/ijerph19010193 - 24 Dec 2021
Cited by 80 | Viewed by 19701
Abstract
Describing the relationship with one’s cat in human terms might reflect an underlying anthropomorphic view of the relationship which might be associated with an owner’s behavior towards their cat and the cat’s living environment. Owners self-categorized the relationship with their cat as either [...] Read more.
Describing the relationship with one’s cat in human terms might reflect an underlying anthropomorphic view of the relationship which might be associated with an owner’s behavior towards their cat and the cat’s living environment. Owners self-categorized the relationship with their cat as either a ‘member of the family’, ‘as a child’, ‘best friend’, or ‘a pet animal’. The extent to which owner- and cat-related factors influence these four relationship descriptions are examined in survey data of approximately 1800 cat owners. Differences in outdoor access, care during absence of the owner, and access to the bedroom are examined between the four relationship perceptions. The owner’s age and household composition, ideas about their cat’s equality, support, and dependency, and whether their cat is a pedigree were significantly associated with relationship description and explained 46% of the variance. Owners who perceive their cat as a child or best friend see their cat as loyal, empathetic, equal to family, and dependent on them for love and care. Their cats are less often left in the care of others, are allowed more often in the bedroom and have less often (unrestricted) outdoor access. Moreover, cats perceived as children are more likely to live in a multi-cat household. Our results provide insight in the factors that are related to different (anthropomorphic) perceptions of the human–cat relationship and how perceptions relate to the living environment of cats. Full article
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11 pages, 286 KB  
Article
Intestinal Parasites and Fecal Cortisol Metabolites in Multi-Unowned-Cat Environments: The Impact of Housing Conditions
by Xavier Blasco, Xavier Manteca, Manel López-Béjar, Anaïs Carbajal, Joaquim Castellà and Anna Ortuño
Animals 2021, 11(5), 1300; https://doi.org/10.3390/ani11051300 - 30 Apr 2021
Cited by 6 | Viewed by 4401
Abstract
Housing conditions were assessed in different unowned multi-cat management models in order to evaluate their impact on the occurrence of intestinal parasites and fecal cortisol metabolite (FCM) levels. Fresh stool fecal samples were collected from rescue shelters, catteries and feline colonies for coprological [...] Read more.
Housing conditions were assessed in different unowned multi-cat management models in order to evaluate their impact on the occurrence of intestinal parasites and fecal cortisol metabolite (FCM) levels. Fresh stool fecal samples were collected from rescue shelters, catteries and feline colonies for coprological analyses in order to detect intestinal parasite patency and fecal cortisol metabolites. A questionnaire provided information about the facilities, management and housing conditions of cats, including information about dog exposure, enclosure size, environment enrichment and changes to group composition. Overall, intestinal parasite infection was detected in 58.2% of fecal samples collected. The occurrence of intestinal parasites detected in free-roaming cats was 82.2%, mainly due to helminth infection. The parasite infection rate was 57.3% in rescue shelters and 34.6% in catteries. In confined cats, protozoa infection was more likely detected in rescue shelters than in catteries (RR = 2.02 (1.30–3.14), p = 0.0012). Although the FCM values were very variable between cats, the enclosure size and parasite infection were correlated with the average FCM. A small enclosure size was correlated with high fecal cortisol metabolites (p = 0.016). Protozoa-positive samples showed higher FCM levels than negative samples (p = 0.0150). High dog exposure was statistically associated with protozoa infection (p = 0.0006). The results indicated that improving housing, especially in terms of floor space and avoiding dog exposure, reduces stress and can thus be applied to make control strategies in multi-unowned-cat environments more efficient, especially when cats are confined. Full article
(This article belongs to the Section Companion Animals)
13 pages, 789 KB  
Article
Correlation of Feline Coronavirus Shedding in Feces with Coronavirus Antibody Titer
by Sandra Felten, Ute Klein-Richers, Regina Hofmann-Lehmann, Michèle Bergmann, Stefan Unterer, Christian M. Leutenegger and Katrin Hartmann
Pathogens 2020, 9(8), 598; https://doi.org/10.3390/pathogens9080598 - 22 Jul 2020
Cited by 42 | Viewed by 8098
Abstract
Background: Feline coronavirus (FCoV) infection is ubiquitous in multi-cat households. Responsible for the continuous presence are cats that are chronically shedding a high load of FCoV. The aim of the study was to determine a possible correlation between FCoV antibody titer and frequency [...] Read more.
Background: Feline coronavirus (FCoV) infection is ubiquitous in multi-cat households. Responsible for the continuous presence are cats that are chronically shedding a high load of FCoV. The aim of the study was to determine a possible correlation between FCoV antibody titer and frequency and load of fecal FCoV shedding in cats from catteries. Methods: Four fecal samples from each of 82 cats originating from 19 German catteries were examined for FCoV viral loads by quantitative reverse transcriptase polymerase chain reaction (RT-qPCR). Additionally, antibody titers were determined by an immunofluorescence assay. Results: Cats with antibodies were more likely to be FCoV shedders than non-shedders, and there was a weak positive correlation between antibody titer and mean fecal virus load (Spearman r = 0.2984; p = 0.0072). Antibody titers were significantly higher if cats shed FCoV more frequently throughout the study period (p = 0.0063). When analyzing only FCoV shedders, cats that were RT-qPCR-positive in all four samples had significantly higher antibody titers (p = 0.0014) and significantly higher mean fecal virus loads (p = 0.0475) than cats that were RT-qPCR-positive in only one, two, or three samples. Conclusions: The cats’ antibody titers correlate with the likelihood and frequency of FCoV shedding and fecal virus load. Chronic shedders have higher antibody titers and shed more virus. This knowledge is important for the management of FCoV infections in multi-cat environments, but the results indicate that antibody measurement cannot replace fecal RT-qPCR. Full article
(This article belongs to the Special Issue Feline Infectious Peritonitis)
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16 pages, 1369 KB  
Article
Environmental Contamination and Hygienic Measures After Feline Calicivirus Field Strain Infections of Cats in a Research Facility
by Andrea Monika Spiri, Marina Luisa Meli, Barbara Riond, Imogen Herbert, Margaret J. Hosie and Regina Hofmann-Lehmann
Viruses 2019, 11(10), 958; https://doi.org/10.3390/v11100958 - 17 Oct 2019
Cited by 23 | Viewed by 8610
Abstract
Feline calicivirus (FCV) can cause painful oral ulcerations, salivation, gingivitis/stomatitis, fever and depression in infected cats; highly virulent virus variants can lead to fatal epizootic outbreaks. Viral transmission occurs directly or indirectly via fomites. The aim of this study was to investigate the [...] Read more.
Feline calicivirus (FCV) can cause painful oral ulcerations, salivation, gingivitis/stomatitis, fever and depression in infected cats; highly virulent virus variants can lead to fatal epizootic outbreaks. Viral transmission occurs directly or indirectly via fomites. The aim of this study was to investigate the presence and viability of FCV in the environment after sequential oronasal infections of specified pathogen-free cats with two FCV field strains in a research facility. Replicating virus was detected in saliva swabs from all ten cats after the first and in four out of ten cats after the second FCV exposure using virus isolation to identify FCV shedders. In the environment, where cleaning, but no disinfection took place, FCV viral RNA was detectable using RT-qPCR on all tested items and surfaces, including cat hair. However, only very limited evidence was found of replicating virus using virus isolation. Viral RNA remained demonstrable for at least 28 days after shedding had ceased in all cats. Disinfection with 5% sodium bicarbonate (and IncidinTM Plus) and barrier measures were effective in that no viral RNA was detectable outside the cat rooms. Our findings are important for any multicat environment to optimize hygienic measures against FCV infection. Full article
(This article belongs to the Special Issue Feline Viruses and Viral Diseases)
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