Patterns of feline coronavirus infection and fecal shedding from cats in multiple-cat environments

Характерные особенности инфицирования кошачьим коронавирусом и выделения вируса с фекалиями у кошек в условиях содержания нескольких кошек
Janet E. Foley, Niels C. Pedersen, Amy Poland, Jeff Carlson
1997-05-01

fecal viral sheddingfeline coronavirusfeline enteric coronavirusmultiple-cat environmentsreverse transcriptase-PCR
OBJECTIVE: To determine, by use of a reverse transcriptase-polymerase chain reaction (RT-PCR) test, patterns of fecal shedding of feline coronavirus among cats. DESIGN: Prospective observational study. ANIMALS: 275 purebred cats from 6 private catteries and 40 specific-pathogen-free (SPF) laboratory-reared cats. PROCEDURE: 40 SPF cats were experimentally inoculated with crude fecal extract containing feline enteric coronavirus (FECV). Fecal and plasma samples were collected every 4 days and evaluated by use of RT-PCR and indirect immunofluorescence assays, respectively, to correlate RT-PCR results with fecal infectivity and to determine patterns of FECV shedding and anti-FECV IgG production in acutely infected cats. The 275 cats in private catteries were monitored for 1 year. Fecal and blood samples were collected every 1 to 3 months and assayed by use of RT-PCR and serologic tests to determine patterns of coronavirus shedding and cofactors for high frequency shedding. RESULTS: Results of the RT-PCR test in SPF cats were directly correlated with fecal extract infectivity. Overall, 370 of 894 (41%) fecal samples collected from cattery and shelter cats contained infectious levels of coronavirus. Of 121 cats from which multiple samples were collected, 11 never shed virus and 35, 65, and 10, respectively, shed virus with low, moderate, and high frequency. High frequency shedding was associated with age and cattery of origin, but not with sex or concurrent disease. Stress associated with parturition and lactation did not induce shedding in queens. Kittens did not shed coronavirus before they were 10 weeks old, even when nursed by shedding mothers. CLINICAL IMPLICATIONS: A large proportion of cats in multiple-cat environments shed coronavirus at any given time, but most undergo cycles of infection and shedding, recovery, and reinfection. Infection is acquired from chronically shedding cats and from infectious cats undergoing transient primary infection. Chronically shedding cats cannot be identified on the basis of antibody titer or signalment, but must be identified on the basis of the results of serial fecal RT-PCR tests.
1
Among 121 repeatedly sampled cats, 11 never shed virus; shedding frequency was low in 35, moderate in 65, and high in 10 cats.
2
High-frequency coronavirus shedding was associated with age and cattery of origin, but not sex or concurrent disease.
3
In cattery and shelter cats, 370 of 894 fecal samples (41%) contained infectious levels of coronavirus.
4
Most cats appeared to undergo cycles of infection and shedding, recovery, and reinfection, with infection acquired from chronically shedding or transiently infected cats.
5
Parturition and lactation-related stress did not induce shedding, and kittens did not shed coronavirus before 10 weeks of age even when nursed by shedding mothers.
6
RT-PCR results in experimentally infected SPF cats directly correlated with fecal coronavirus infectivity.

Feline coronavirus infection and fecal shedding in cats from multiple-cat environments, including private catteries and SPF laboratory-reared cats

Patterns, frequency, infectivity, duration, and cofactors of feline coronavirus fecal shedding, along with infection, recovery, and reinfection dynamics

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1997-05-01
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Janet E. Foley
Niels C. Pedersen
Amy Poland
Jeff Carlson
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