PubMed HealthSearch

Biomedical subjects

F C Thomas

Publications and source records attributed to F C Thomas.

7 recordsLinked to original sources

Dot immunoperoxidase assay using monoclonal antibody for detection of bluetongue virus antigens.

A rapid, simple dot immunoperoxidase assay (DIPA) is described for visual detection and identification of bluetongue virus (BTV) antigens in samples of infected cell culture fluid. The assay was performed using nitrocellulose (NC) paper and 'dipsticks'. Dots of samples were adsorbed to the NC surface and the remaining non-specific binding sites were blocked with skim milk solution. BTV was detected with either of two murine monoclonal antibodies (4H4, 5G12) to the major group specific antigens of BTV, and the complex was reacted with a peroxidase conjugated anti-mouse immunoglobulin G (heavy- and light-chain specific). Positive reactions were easily visualized as brown spots after enzyme degradation of substrate containing H2O2 and diaminobenzidine (DAB). The DIPA was specific in detecting BTV in samples of cell culture fluid from baby hamster kidney (BHK-21) cells infected with U.S.A. isolates of the five BTV serotypes (2, 10, 11, 13 and 17) known to exist in the U.S.A., and South African isolates of 17 BTV serotypes (1-12, 14-16, 18 and 20), but not with two North American isolates of epizootic hemorrhagic disease of deer virus (EHDV) representing serotypes 1 and 2. Attempts to detect BTV directly in infected sheep blood cells and chick embryo tissue suspensions by DIPA were unsuccessful. Of 55 cell culture fluid samples examined from BHK-21 or Vero cell monolayers inoculated with 55 clinical specimens, propagated initially in embryonating chicken egg (ECE) 11 proved positive and 44 were negative by DIPA. The results were in complete agreement with the conventional ECE and tissue culture isolation systems. The DIPA appears to have potential application, especially as a 'dipstick' kit, for rapid and inexpensive laboratory diagnosis of bluetongue virus infection.

Animals

Gamma irradiation alters bluetongue virus protein antigen.

Bluetongue virus (BTV) antigen, prepared for a monoclonal antibody (MAb)-based competitive enzyme-linked immunosorbent assay (C-ELISA), was exposed to 1, 2, 3, 4, 5 and 6 Mrad of gamma irradiation. The major group-specific BTV protein (VP7) reactive with the Mab was altered at higher doses of radiation, as revealed by immunoblotting studies. As well, a reduction in immunoreactivity was noted when irradiated antigen was used in the ELISA.

Animals

Comparisons of some bluetongue virus isolates by plaque neutralization and relatedness tests.

Seven North American bluetongue virus isolates, cloned by plaquing, and sera to five of them were reacted in a plaque neutralization test. Using a paired controls system, each virus-serum reaction was studied in terms of the regression of percent neutralization on log serum dilution. Antigen-antibody interaction terms in the analysis of effective dose estimates were used to assess the relatedness of the virus isolates. The degree of cross reactivity formed a spectrum from virtually no evidence of unrelatedness to clear antigenic differences.

Antigens, Viral

A rapid plaque neutralization test for bluetongue virus.

A bluetongue virus plaque neutralization test, done in small tissue culture wells (2.0 cm2) using minimal antibody-virus contact time, was found to be of comparable sensitivity to more classical methods involving preincubation. By using the cell culture plates as serum dilution wells and adding cells directly to the virus-antibody mixture, a considerable saving in time is realized. Because of the small size of the wells, reagent cost and incubator space requirements are reduced making the test much more attractive for wide scale use, either as a screening test or one that yields dose-response lines.

Animals

Necrotizing encephalitis in skunks caused by Herpes simplex virus.

Herpes simplex virus was isolated from the brain of a wild skunk (Mephitis mephitis) which had clinical neurological disease. In the brain of this skunk and in brain of skunks inoculated intracerebrally, there were areas of necrosis in the grey matter of the cerebral cortex and to a lesser extent in the brain stem. Intranuclear inclusions occurred in neurons and glial cells with vascular cuffing by mononuclear cells and a few neutrophils. Skunks inoculated intravenously had extensive focal necrosis in the liver and adrenal glands.

Adrenal Glands

Transmissible gastroenteritis virus: plaques and a plaque neutralization test.

A plaquing system and plaque neutralization test in porcine thyroid cells were used to study different transmissible gastroenteritis isolates and hemagglutinating encephalomyelitis virus. Among transmissible gastroenteritis virus isolates, plaque size varied considerably and mixed size ranges sometimes occurred. The most recently isolated viruses produced smaller plaques than the laboratory viruses or hemagglutinating encephalomyelitis virus. All transmissible gastroenteritis virus isolates reacted in the plaque neutralization test with a transmissible gastroenteritis virus antiserum which showed no activity against hemagglutinating encephalomyelitis virus. Plaque neutralization results both from experimentally infected pigs and following a field outbreak demonstrated the reliability of this test and its greater sensitivity than the conventional tube test.

Animals

A comparison of some serological tests for bluetongue virus infection.

The plaque neutralization, complement fixation, and agar gel precipitin tests were compared by measuring bluetongue virus antibody in 137 serums from experimental animals (cattle and sheep) and suspected field reactors (cattle and deer). In general, the tests agreed well with each other. Plaque neutralization titers began earlier than the other two and went much higher than the complement fixation titers. Plaque neutralization titers usually peaked between two and three weeks after exposure and complement fixation titers from four to six weeks. The greater sensitivity of the plaque neutralization test allowed the detection of all complement fixation and agar gel precipitin reactors whereas occasionally the latter two tests failed to detect plaque neutralization reactors.

Agar