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Biomedical subjects

J F Evermann

Publications and source records attributed to J F Evermann.

At least 91 records · Page 5Linked to original sources

Seroprevalence of respiratory syncytial virus in free-ranging bighorn sheep.

Sera from 187 (42%) of 447 free-ranging bighorn sheep (Ovis canadensis) in 9 western states had antibody titers to respiratory syncytial virus (RSV). Titers were from 1:5 to 1:640, as determined by the standard virus neutralization test. Results of the survey indicated that RSV is widespread in free-ranging bighorn sheep populations and that RSV may be an important factor in the bighorn sheep pneumonia-complex.

Animal Population Groups↗

Natural variation of canine parvovirus.

Canine parvovirus was first recognized during 1978. Analysis of isolates collected since its emergence revealed that viruses circulating after 1980 were antigenically different from earlier isolates. Monoclonal antibodies clearly distinguished the two strains, some being specific for either the old or the new viruses. Restriction enzyme analysis of viral DNA's showed that the post-1980 viruses were similar to earlier isolates, but some restriction site differences were present in the new strain. These results suggest that the canine parvoviruses infecting dogs in the seven areas of the United States that were sampled derive from a variant virus that replaced the original strain during 1980.

Animals↗

Genetic basis for species vulnerability in the cheetah.

A population genetic survey of over 200 structural loci previously revealed that the South African cheetah (Acinonyx jubatus jubatus) has an extreme paucity of genetic variability, probably as a consequence of a severe population bottleneck in its recent past. The genetic monomorphism of the species is here extended to the major histocompatibility complex, since 14 reciprocal skin grafts between unrelated cheetahs were accepted. The apparent consequences of such genetic uniformity to the species include (i) great difficulty in captive breeding, (ii) a high degree of juvenile mortality in captivity and in the wild, and (iii) a high frequency of spermatozoal abnormalities in ejaculates. The species vulnerability of the cheetah was demonstrated by an epizootic of coronavirus-associated feline infectious peritonitis in an Oregon breeding colony in 1983. Exposure and spread of the coronavirus, which has a very low morbidity in domestic cats (approximately 1 percent), has decimated a heretofore productive and healthy captive population. The extreme genetic monomorphism, especially at the major histocompatibility complex, and the apparent hypersensitivity of the cheetah to a viral pathogen may be related, and provide a biological basis for understanding the adaptive significance of abundant genetic variation in outbred mammalian species.

Acinonyx↗

Isolation and identification of caliciviruses from dogs with enteric infections.

Caliciviruses were isolated from 7 dogs and 1 captured coyote with enteritis. There was a high fatality rate in dogs 4 to 16 weeks of age. The occurrence in these dogs of concurrent infection with known enteric pathogens such as Salmonella sp, canine parvovirus, canine coronavirus, and canine rotavirus did not allow making any conclusions regarding the pathogenicity of this newly recognized calicivirus. The caliciviruses were characterized by electron microscopy and were further identified as being closely related to feline calicivirus by immunoelectron microscopy with specific antibody.

Animals↗

Natural transmission of bovine leukemia virus in dairy calves by dehorning.

Gouge dehorning was evaluated as a mode of transmitting bovine leukemia virus in Holstein calves at a commercial dairy. Significantly (p less than 0.05) more calves dehorned by the gouge method developed antibodies to bovine leukemia virus, as measured by agar-gel immunodiffusion, three months after dehorning, than calves not dehorned. The field use of a blood-contaminated dehorning device resulted in transmission of bovine leukemia virus.

Animals↗

Effect of in vitro inoculation of bovine respiratory syncytial virus on bovine pulmonary alveolar macrophage function.

Viruses may predispose the respiratory tract to the development of secondary bacterial pneumonia by impairing functions of alveolar macrophages. The effects of bovine respiratory syncytial virus (BRSV) on selected functions of bovine pulmonary alveolar macrophages (PAM) were examined in vitro. Alveolar macrophages were obtained from nonsedated cattle, using a polypropylene tube passed intranasally into the lung. The PAM lavaged from the lung were allowed to adhere to glass coverslips or plastic tissue culture plates, and were exposed to BRSV for 2 hours. Control and BRSV-inoculated PAM were compared at intervals over a 72-hour period for their abilities to phagocytize and kill Staphylococcus epidermidis, rosette with and phagocytize antibody-coated sheep RBC (SRBC), phagocytize latex particles, and influence lysosomal enzyme activity. Challenge exposure with BRSV did not affect the ability of PAM to adhere and did not affect cell viability. There were numerical differences between control and BRSV-inoculated cell populations in phagocytosis and killing of S epidermidis, but these were not significant (P greater than 0.05). There was less than 5% difference in the abilities of control and BRSV-challenged PAM to phagocytize latex beads. When Fc-receptor-mediated phagocytosis of antibody-coated SRBC was compared with controls, BRSV-challenged PAM had significantly (P less than 0.05) impaired phagocytic function, which was maximal 72 hours after BRSV inoculation; the phagocytic impairment occurred in spite of normal Fc-receptor function, as determined by rosetting with antibody-coated SRBC.(ABSTRACT TRUNCATED AT 250 WORDS)

Acid Phosphatase↗

Properties of a respiratory syncytial virus isolated from a sheep with rhinitis.

A virus isolated from a yearling cross-bred ewe was identified as respiratory syncytial virus (RSV) by indirect immunofluorescence and by virus neutralization with bovine RSV antisera. The virus caused a mild conjunctivitis in 3-month-old lambs when inoculated alone. Although clinical signs of pneumonia were not observed, there was gross and microscopic evidence of pulmonary inflammation in the lungs of lambs inoculated with either the sheep RSV isolate alone or in conjunction with Pasteurella haemolytica. Lung lesions in the dual infection were more severe, with approximately 10% of the total lung mass affected. Lavage fluids from lambs inoculated with virus and bacteria contained approximately 3 times more inflammatory cells than from control lambs or lambs inoculated with virus only. The sheep RSV isolate was classified as a mild respiratory pathogen in lambs of this age. Speculations on the potential importance of this virus in interspecies transmission to cattle and goats were discussed.

Animals↗

Familial canine dermatomyositis: clinicopathologic, immunologic, and serologic studies.

Laboratory studies were performed on 3 Collies with familial canine dermatomyositis, 6 progeny from a breeding of 2 of the Collies (incross litter), and 4 progeny from the breeding of an affected Collie male and a normal Labrador Retriever (outcross litter). Hematologic abnormalities were leukogram changes consistent with inflammation, and, in 2 severely affected incross dogs, anemia of inflammatory disease. Serum muscle enzyme activities were not markedly increased. High concentrations of immune complexes and proportionally increased total immunoglobulin G were present in the sera of moderately and severely affected incross dogs. The same dogs had weakly positive direct Coombs' tests, and 1 affected outcross dog had a strongly positive direct Coombs' test. Rheumatoid factor was present in a severely affected incross dog. A few dogs had polyclonal globulin increases that were attributed to inflammation. Low antibody titers to canine calicivirus were present in 3 dogs and a low titer to canine coronavirus was present in 1 dog.

Animals↗

Seroprevalence of canine parvovirus in wild coyotes from Texas, Utah, and Idaho (1972 to 1983).

The prevalence of serum antibodies against canine parvovirus-2 (CPV-2), as measured by a standard hemagglutination-inhibition test, was determined in serum samples collected from 1,184 coyotes (Canis latrans) in Texas, Utah, and Idaho from 1972 to 1983. No evidence of parvoviral infection was found before 1979, after which seroprevalence rapidly increased to greater than 70% at all sites by 1982. There were minor differences in prevalence between age groups and among sites, but no consistent differences between sexes. The onset of CPV-2 seroprevalence in free-ranging coyotes coincided remarkably with the recognition of the clinical disease and seroprevalence in domestic dogs in the United States.

Age Factors↗

Natural infection of captive coyote pups with a herpesvirus antigenically related to canine herpesvirus.

Herpesviruses were isolated from captive coyote pups with ocular discharge and hepatomegaly. The viruses were shown to be antigenically related to canine herpesvirus on the basis of specific virus neutralization with canine herpesvirus antiserum. The epizootiology of the outbreak suggested that the herpesvirus was acquired by indirect contact with guard dogs being cared for by the same animal technicians who cared for the coyotes.

Animals↗

Clinical and pathologic features of parvoviral diarrhea in pound-source dogs.

From June 1980 through May 1982, 161 pound-source dogs that developed diarrhea while being used in research were evaluated to determine whether canine parvovirus (CPV) type 2 was the etiologic agent. Evaluation included notation of clinical signs, determination of serum CPV-specific immunoglobulin (Ig) M and IgG titers, virus isolation attempts, and histologic examination of tissues. Criteria for diagnosis of canine parvoviral enteritis were serum CPV-specific IgM antibodies, isolation of CPV from feces, and histologic evidence of intestinal crypt cell necrosis. Upon arrival, 67 clinically normal pound-source dogs were evaluated to determine the prevalence of fecal shedding of CPV and to determine their antibody titers to CPV. Parvovirus was not isolated from any of these dogs, although 76% had IgG antibodies and 3% had IgM antibodies. Of the 161 dogs with diarrhea, 40 (25%) had parvoviral enteritis. Of dogs with parvoviral enteritis, 71% had IgG antibodies and 68% had IgM antibodies. Canine parvovirus was isolated from 18 dogs. Serum IgG antibodies were found in 85% of dogs with diarrhea due to other causes. The geometric mean titer of IgG antibodies to CPV was not significantly different among the 3 groups. Clinical signs that appeared significantly (P less than 0.05) more often in dogs with parvoviral enteritis included bloody diarrhea, anorexia, fever (greater than or equal to 39.4 C), and leukopenia (WBC less than 6,000/mm3). Cases occurred throughout the year, without apparent seasonal variation. The duration between arrival and onset of diarrhea was significantly (P less than 0.05) shorter for dogs with parvoviral enteritis.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

A preliminary serological survey of viral antibodies in Peruvian sheep.

This study reports the sero-prevalence of viral infections in sheep in Peru. Serum samples were collected from 34 mature healthy rams located in 3 different geographic regions of the country (north, central and south). The sera were tested for antibodies to the following viruses: respiratory syncytial virus (RSV); parainfluenza 3 (PI-3) virus; bovine viral diarrhea/border disease (BVD/BD) virus; bovine herpesvirus 1 (BHV-1); bluetongue (BT) virus; ovine progressive pneumoniae (OPP) virus; bovine leukosis virus (BLV). The serological studies showed that 47% were positive for RSV; 82% for PI-3; 3% for BVD/BD virus; 49% for BT virus; 13% for OPP virus. Antibodies were not detected to bovine herpesvirus 1 or to bovine leukosis virus.

Animals↗

Serologic response of captive coyotes (Canis latrans Say) to canine parvovirus and accompanying profiles of canine coronavirus titers.

Fifty-five of 66 (83%) coyote pups from bitches vaccinated against canine parvovirus (CPV) were seropositive for CPV antibodies at birth. The CPV antibody titer in the pups declined with a half-life of 6.7 days until by the 8th week, only two of 41 (5%) pups were seropositive for CPV antibodies. At 8 wk, 41 of the pups were vaccinated against CPV (killed feline origin vaccine), but only one of 37 (3%) was positive for CPV antibodies at 11 wk. The 8-wk-old pups were either too young to respond to the CPV vaccine; they had sufficient undetectable, maternally-derived CPV antibodies to block active immunization; 3 wk was not a sufficient time for an immunological response from the pups; or the vaccine was poorly antigenic. Twenty of the 66 pups (30%) were seropositive for canine coronavirus (CCV) antibodies at birth, and all but three of the 20 were whelped from bitches that were also seropositive for CCV antibodies. Vaccination of females prior to whelping appeared to provide protection to their pups from CPV-induced mortality.

Animals↗

Pathogenicity studies of feline coronavirus isolates 79-1146 and 79-1683.

Two feline coronavirus isolates were characterized by their disease-causing potential in cats. The 79-1683 feline coronavirus isolate caused an inapparent-to-mild enteritis when given oronasally to specific-pathogen-free kittens and was not a cause of feline infectious peritonitis (FIP). Target tissues for the virus were the mature apical epithelium of the small intestine, mesenteric lymph nodes, tonsils, thymus, and (to a lesser extent) the lungs. Inoculated kittens shed high numbers of virus in their feces for 14 to 17 days, but remained infectious to susceptible kittens for longer periods of time, as evidenced by contact-exposure studies. Because the 79-1683 isolate induced only enteritis, it was designated feline enteric coronavirus (FECV) 79-1683. The 79-1146 feline coronavirus isolate induced effusive abdominal FIP in specific-pathogen-free kittens after oronasal and intraperitoneal inoculation. Clinical signs of disease appeared within 12 to 14 days in almost all inoculated kittens. Because this isolate caused FIP, it was designated FIP virus (FIPV) 79-1146. Cross-protective immunity was not induced by the various coronavirus infections. Kittens preimmunized with the UCD strain of FECV (FECV-UCD) or with FECV-79-1683 were not immune to infection with FIPV-79-1146. Likewise, kittens previously inoculated with FECV-79-1683 were not immune to infection with FIPV-UCD1. In fact, preexisting heterologous FECV-79-1683 immunity often accelerated and enhanced the severity of disease caused by inoculation with FIPV-UCD1.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗