1.Clinical evaluation of a rapid diagnostic test kit for detection of canine coronavirus
Seung Jae YOON ; Kyoung Won SEO ; Kun Ho SONG
Korean Journal of Veterinary Research 2018;58(1):27-31
Canine coronavirus is a single-stranded RNA virus that causes enteritis in dogs of any age. Coronaviral enteritis is seldom definitively diagnosed, since it is usually much less severe than many other types of enteritis and is self-limiting. Conventional diagnostics for the canine coronaviral enteritis such as polymerase chain reaction (PCR), virus isolation, and electron microscopic examination are inappropriate for small animal clinics due to the complicated experimental processes involved. Therefore, a commercially available lateral flow test kit based on chromatographic immunoassay techniques was tested to evaluate its performance as a first-line diagnostic test kit that could be used in clinics. The coronavirus antigen test kit detected canine coronavirus-infected dogs with 93.1% sensitivity and 97.5% specificity. The detection limit of the test kit was between 1.97 × 10⁴/mL and 9.85 × 10³/mL for samples with a 2-fold serial dilution from 1.25 × 10⁶ TCID₅₀ (TCID₅₀, 50% tissue culture infectious dose). Additionally, the test kit had no cross-reactivity with canine parvovirus, distemper virus, or Escherichia coli. Overall, the commercially available test kit showed good diagnostic performance in a clinical setting, with results similar to those from PCR, confirming their potential for convenient and accurate use in small animal clinics.
Animals
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Coronavirus
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Coronavirus, Canine
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Diagnostic Tests, Routine
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Distemper
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Dogs
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Enteritis
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Escherichia coli
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Immunoassay
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Limit of Detection
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Parvovirus, Canine
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Polymerase Chain Reaction
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Reagent Kits, Diagnostic
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RNA Viruses
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Sensitivity and Specificity
2.Detection of canine respiratory coronavirus from dogs with respiratory disease.
Sunhwa HONG ; Hak Yong LEE ; Okjin KIM
Journal of Biomedical Research 2015;16(1):19-22
Canine respiratory coronavirus (CRCoV) is commonly associated with canine kennel cough worldwide. Clinically infected dogs present coughing, sneezing, and nasal discharge. Severe infections may progress to pneumonia. Through serological surveys, CRCoV has been identified as a worldwide pathogen found in the respiratory tracts of dogs suffering from mild or severe respiratory disease. In this study, three dogs were obtained from a dog kennel. Over the previous 5 days, the dogs showed coughing, sneezing, and nasal discharge. To detect the etiologic pathogen, we performed multiplex RT-PCR (mRT-PCR) to amplify the genes encoding canine influenza virus matrix protein, canine distemper virus nucleocapsid protein, and CRCoV spike protein. Dot blotting was achieved with a CRCoV-specific probe. Nasal-secreting CRCoV was detected by the 442 bp CRCoV-positive PCR reaction in the nasal swabbing samples from dogs. Further, CRCoV-positive reactions by dot blot hybridization were detected in the nasal swabbing samples from dogs. In conclusion, we detected CRCoV in kenneled dogs with respiratory disease in Korea. Multiplex RT-PCR was able to detect successfully CRCoV infection in dogs. We suggest that mRT-PCR would be useful and effective for monitoring CRCoV infection in various kinds of dogs.
Animals
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Coronavirus*
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Cough
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Distemper Virus, Canine
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Dogs*
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Korea
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Nucleocapsid Proteins
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Orthomyxoviridae
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Pneumonia
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Polymerase Chain Reaction
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Respiratory System
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Sneezing
3.Isolation and identification of a canine coronavirus strain from giant pandas (Ailuropoda melanoleuca).
Feng Shan GAO ; Gui Xue HU ; Xian zhu XIA ; Yu Wei GAO ; Ya Duo BAI ; Xiao Huan ZOU
Journal of Veterinary Science 2009;10(3):261-263
Two giant pandas (Ailuropoda melanoleuca) died of unknown causes in a Chinese zoo. The clinical disease profile suggested that the pandas may have suffered a viral infection. Therefore, a series of detection including virus isolation, electron microscopy, cytobiological assay, serum neutralization and RT-PCR were used to identify the virus. It was determined that the isolated virus was a canine coronavirus (CCV), on the basis of coronavirus, neutralization by canine anti-CCV serum, and 84.3% to 100% amino acid sequence similarity with CCV. The results suggest that the affected pandas had been infected with CCV.
Amino Acid Sequence
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Animal Diseases/*virology
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Animals
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Animals, Zoo/*virology
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Coronaviridae Infections/*veterinary/virology
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Coronavirus, Canine/genetics/*isolation & purification
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Fatal Outcome
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Female
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Male
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Molecular Sequence Data
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Sequence Alignment
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Sequence Homology, Amino Acid
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Ursidae/*virology
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Viral Proteins/chemistry
4.M gene analysis of canine coronavirus strains detected in Korea.
Seok Young JEOUNG ; So Yun ANN ; Hyun Tae KIM ; Doo KIM
Journal of Veterinary Science 2014;15(4):495-502
The purpose of this study was to investigate the genetic features of canine coronavirus (CCV) strains detected in Korea. M gene sequences obtained for isolates from 22 dogs with enteritis over a 5-year period were evaluated. Sequence comparison revealed that the 22 Korean CCV strains had an 87.2 to 100% nucleotide homology. Comparing to the typical reference CCV strains (type II), the nucleotide sequence of Korean strains had homology ranged from 86.3% to 98.3% (89.1% to 99.2% for the amino acid sequence) and 87.7% to 97.8% (92.4% to 100% for the amino acid sequence) when compared to FCoV-like CCV strains (type I). Three amino acid variations in the M gene were characteristic for the Korean CCV strains. Phylogenetic analysis demonstrated that the 22 Korean CCV strains belonged to four typical CCV clusters (i.e., a unique Korean CCV cluster, a type II and transmissible gastroenteritis virus cluster, an intermediate cluster between type I and II, and a type I cluster). This study was the first to identify genetic differences of the M gene from Korean CCV strains and provided a platform for molecular identification of different Korean CCV strains.
Amino Acid Sequence
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Animals
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Coronavirus Infections/epidemiology/*veterinary/virology
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Coronavirus, Canine/*isolation & purification
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Dog Diseases/*epidemiology/virology
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Dogs
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Female
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Male
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Molecular Sequence Data
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Phylogeny
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Polymerase Chain Reaction/veterinary
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Republic of Korea/epidemiology
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Reverse Transcriptase Polymerase Chain Reaction/veterinary
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Viral Matrix Proteins/*genetics/metabolism