PubMed Health⌕ Search

Biomedical subjects

C J Burrell

Publications and source records attributed to C J Burrell.

At least 73 records · Page 4Linked to original sources

Use of recombinant hepatitis delta antigen in diagnostic assays for HDV antibody.

The gene encoding the hepatitis delta virus (HDV) structural antigen (HD Ag) was inserted into a Rous sarcoma virus expression vector and the recombinant plasmid used to direct the synthesis of recombinant HD Ag (rHD Ag) in a continuous hepatoma cell line. A competitive radioimmunoassay for serum antibody to HDV using rHD Ag was developed and was found to be equally suitable for diagnostic purposes to a radioimmunoassay using infected liver-derived HD Ag. Similarly, rHD Ag was shown to be serologically equivalent to liver-derived HD Ag within the limit of the blocking titrations performed. The rHD Ag-positive cell line was also used in an indirect immunofluorescence assay to detect anti-HD. Similar titres of anti-HD were detected by both radioimmunoassay and immunofluorescence and identical samples were positive for anti-HD by either assay. In a sample of prison inmates with high prevalence of both HBV and HDV, anti-HD was confined almost exclusively to those with persistent HBV infection and not to those in whom HBV infection had cleared. The availability of rHD Ag will permit wider development of diagnostic anti-HD assays, and the use of two such assays is presented in this study.

Antigens, Viral↗

Serological analysis of duck hepatitis B virus infection.

A radioimmunoassay was developed to detect duck hepatitis B virus surface antigen and antibody; viraemia (DHBV DNA or DHBsAg) was detected in all ducks inoculated within 3 weeks post-hatch, and persistent infection developed in 93% of birds in this group. In contrast, only 80% and 60% of ducks inoculated 4- and 6-weeks post-hatch respectively developed viraemia, and approximately 70% of the viraemic ducks became carriers. Markers of viraemia were undetected in ducks inoculated 8 weeks post-hatch and in uninfected controls. A typical anti-DHBs seroconversion developed subsequently in 2 of 4 birds that showed transient viraemia, and antibody also developed in 3 of 7 ducks inoculated 4-8 weeks post-hatch that showed no viraemia. However, gene amplification by the polymerase chain reaction demonstrated DHBV DNA in ducks from the latter group suggesting that the antibody did not result from passive vaccination. Thus, increased resistance to infection develops with increasing age that may be related to several factors including host immunity. This model may help elucidate similar age-related features of human hepatitis B virus infections.

Animals↗

Adverse effects of aspirin, acetaminophen, and ibuprofen on immune function, viral shedding, and clinical status in rhinovirus-infected volunteers.

A double-blind, placebo-controlled trial was conducted to study the effects of over-the-counter analgesic/antipyretic medications on virus shedding, immune response, and clinical status in the common cold. Sixty healthy volunteers were challenged intranasally with rhinovirus type 2 and randomized to one of four treatment arms: aspirin, acetaminophen, ibuprofen, or placebo. Fifty-six volunteers were successfully infected and shed virus on at least 4 days after challenge. Virus shedding, antibody levels, clinical symptoms and signs, and blood leukocyte levels were carefully monitored. Use of aspirin and acetaminophen was associated with suppression of serum neutralizing antibody response (P less than .05 vs. placebo) and increased nasal symptoms and signs (P less than .05 vs. placebo). A concomitant rise in circulating monocytes suggested that the suppression of antibody response may be mediated through drug effects on monocytes and/or mononuclear phagocytes. There were no significant differences in viral shedding among the four groups, but a trend toward longer duration of virus shedding was observed in the aspirin and acetaminophen groups.

Acetaminophen↗

Stable expression of hepatitis delta virus antigen in a eukaryotic cell line.

The gene encoding the hepatitis delta virus structural antigen (HDAg) was linked to a neomycin resistance gene in a retrovirus expression vector, and human HepG2 cells were transfected with the recombinant plasmid. A stable cell line was cloned that expressed HDAg in the nuclei of 100% of cells, in a pattern indicating a close relationship with cell nucleoli. Analysis of partially purified recombinant HDAg by HPLC showed an Mr in the range of 7 x 10(5) to 2 x 10(6), which appeared to contain conformation-dependent epitopes, whereas the density of the antigen was 1.19 g/ml by equilibrium centrifugation in caesium chloride, and in rate zonal centrifugation it sedimented with a value of 50S, close to that of particulate hepatitis B virus surface antigen. Immunoblotting demonstrated a single polypeptide with an Mr of 24K which corresponded to the smaller of the two HDAg-specific polypeptides present in infected sera. The recombinant HDAg polypeptide was shown to be a RNA-binding protein with specificity for both genomic and antigenomic species of hepatitis delta virus RNA.

Antigens, Viral↗

Intravascular ultrasound imaging and three-dimensional modeling of arteries.

In this article, we describe the reconstruction of arterial structures using solid modeling. The alternative approaches to three-dimensional modeling are discussed and the voxel space system we use for intra-arterial imaging, based on ultrasonic data, is described. The complete three-dimensional ultrasonic imaging system comprising a purpose-built, catheter-mounted ultrasound probe, ultrasonic transceiver, and computer system is presented. This system has been used to recreate three-dimensional computer models of arterial sections in vitro and in vivo. Examples to illustrate the power and flexibility of voxel space modeling in terms of postprocessing and software manipulation are given. Preliminary work on tissue differentiation, using arterial models and color coding of the image, and three-dimensional presentation of flow data is included.

Arteries↗

Evaluation of the Becton Dickinson Directigen test for respiratory syncytial virus in nasopharyngeal aspirates.

A premarket trial of the Becton Dickinson Directigen respiratory syncytial virus membrane-based enzyme immunoassay compared the test with virus isolation for the detection of respiratory syncytial virus in 583 nasopharyngeal aspirates. After modification, the Directigen test showed a sensitivity of 83% and a specificity of 90%. It offers the potential for an efficient bedside test--without the need for any equipment--for the diagnosis of respiratory syncytial virus infection and requires only a 0.25-ml sample volume. However, for optimum reliability, freezing-thawing of samples and access to a confirmatory test were shown to be necessary.

Adolescent↗

Seroconversion after administration of measles vaccine to central Australian Aboriginal children at nine months of age.

A simple procedure for examining the seroconversion rates to measles vaccines in outlying communities is described; this involves the storage and transportation of dried-blood samples on filter paper, which is followed by the detection of measles-specific antibodies by means of a commercially-available immunofluorescence assay. Among 82 susceptible central Australian Aboriginal infants who were vaccinated at nine months of age, 76 (93% [95% confidence limits, 84.9%-96.6%]) children demonstrated seroconversion as a result of the vaccine, which is a figure that is similar to those that have been reported from some developing countries. The implications for a measles-vaccination policy are discussed.

Age Factors↗

Comparison of five enzyme immunoassays, electron microscopy, and latex agglutination for detection of rotavirus in fecal specimens.

Five different enzyme immunoassays, electron microscopy, and latex agglutination (Slidex; bioMerieux) were compared for the rapid detection of human rotavirus in fecal specimens. The enzyme immunoassay using rotavirus polyclonal antiserum (Dakopatts) with simple in-house modifications was shown by the use of confirmatory tests to be the most sensitive and specific procedure.

Feces↗

Virus-liver cell interactions in duck hepatitis B virus infection. A study of virus dissemination within the liver.

Thirty-five 1-day-old Pekin-Aylesbury ducks were inoculated intravenously or intraperitoneally with duck hepatitis B virus, and the time-course of infection was examined by Southern-blot, dot-blot, and in situ hybridization and by immunohistochemistry. Randomly scattered single infected hepatocytes were first seen on days 1 and 2 after inoculation and by day 3 occurred as single cells, pairs, and groups of 5-10 adjoining cells. From day 4 after inoculation all hepatocytes were positive for duck hepatitis B surface antigen and deoxyribonucleic acid. Duck hepatitis B virus deoxyribonucleic acid levels in liver extracts and serum increased logarithmically from days 2 to 3 to a plateau by days 4 to 5 after inoculation. Infected and control birds showed no significant differences during the first 7 days in terms of liver histology, hepatocyte morphology, or mitotic activity. It was concluded that (a) virus gains access to randomly distributed hepatocytes without first replicating in other cell types, and then begins disseminating to adjacent cells following anatomic boundaries; (b) markers of infection in liver and serum show reproducible kinetics, thus making this in vivo system amenable to further quantitative study; and (c) hepatocytes in this system are highly permissive to virus replication without the development of significant cytopathology.

Animals↗

Duck hepatitis B virus DNA in liver, spleen, and pancreas: analysis by in situ and Southern blot hybridization.

Tissues from a 10-week-old Pekin duck, experimentally infected at 1 day of age with duck hepatitis B virus (DHBV), were examined for the presence of replicative levels of DHBV DNA by in situ and Southern blot hybridization. Hepatocytes, pancreatic lymphoid follicle, exocrine, and endocrine cells, and splenic mononuclear cells all contained DHBV DNA localized predominantly to the cytoplasm of infected cells. Duck hepatitis B surface antigen distribution in the same tissues correlated well with the presence of DHBV DNA in many of these cells. In hepatocytes and pancreatic islet cells, 60% of DHBV DNA was present as single-stranded DNA, indicating the likelihood of ongoing virus replication in these cell types and providing further evidence that hepadnavirus DNA replication occurs largely within the cell cytoplasm. In contrast, DHBV in mononuclear cells within splenic germinal centers was wholly double-stranded, suggesting that limited, if any, DHBV DNA replication was occurring in this cell type. These data provide further information about the pathogenesis and cell-specific sites of DHBV infection.

Animals↗

Histological aspects of in situ hybridization. Detection of poly(A) nucleotide sequences in mouse liver sections as a model system.

This study examined the detection of cellular poly(A) sequences in mouse liver sections by in situ hybridization using a 3H-labelled poly(dT) probe. Parameters examined included possible losses of target poly(A) sequences from sectioned cells, access of probe to target sequences, section thickness, hybridization conditions, autoradiographic efficiency, specific activity of probes and specificity of reaction. An improved protocol was devised that resulted in good preservation of histological detail in sectioned tissue blocks, and a calculated hybridization efficiency of 50%-100%. With the use of probes of defined sequence, the protocol should allow detection of unique mRNA sequences within single cells with an estimated sensitivity of 6-12 unique mRNA molecules per sectioned cell.

Animals↗

Production of a monoclonal antibody to human interferon-alpha (IFN-alpha) and its use to identify IFN-alpha-producing cells in virus infection in vivo.

A monoclonal antibody to human interferon-alpha (IFN-alpha) was produced using affinity-purified IFN-alpha, that reacted with recombinant human IFN-alpha 2, but not with IFN-alpha 1, IFN-alpha M1 or IFN-beta. Indirect immunofluorescence using this monoclonal (designated 6C3) and anti-IFN-alpha polyclonal antibodies identified cells expressing IFN-alpha. After Sendai virus induction of normal human buffy-coat cells the proportion of monocytes and lymphocytes expressing IFN-alpha rose progressively from 0% to 50% and 34% respectively, preceding peak IFN-alpha titres in the culture supernatants. Around 80-90% of polymorphs were IFN-alpha-positive using both antisera, with or without IFN induction, although very little IFN bioactivity was released to the supernatant of polymorph cultures after IFN induction. Sections of hepatitis B virus infected human liver tissue showed foci of IFN-alpha-positive infiltrating mononuclear cells and (to a lesser extent) fibroblasts in patients who had active cirrhosis and evidence of virus replication. These findings suggest that polymorphs constitutively express IFN-alpha 2 related antigenic activity, whose biological activity is at present unknown; and demonstrates the identification of IFN-alpha-expressing cells in sections of tissue undergoing natural virus infection.

Antibodies, Monoclonal↗

Taxonomic classification of human hepatitis B virus.

Sufficient data have accumulated to permit the ICTV Study Group on the Nomenclature of Hepatitis Viruses to recognize human hepatitis B virus as a member of a unique group of viruses and to classify it, together with a number of related animal viruses, into a new family called the Hepadnaviridae. Over the past decade, the International Committee on Taxonomy of Viruses (ICTV) has been active in the development of a classification system for viruses. The majority of viruses infecting vertebrate hosts have been classified into families and genera on the recommendations of the Vertebrate Virus Subcommittee (VVSC). In June 1980, the VVSC authorized the formation of an ad hoc Study Group on the Nomenclature of Hepatitis Viruses under the Chairmanship of Dr. Ian D. Gust. This paper represents the first report of the Study Group on the Taxonomic Classification of Human Hepatitis B Virus.

Animals↗

Widespread presence of cytoplasmic HBcAg in hepatitis B infected liver detected by improved immunochemical methods.

Cytoplasmic and cell membrane associated hepatitis B core antigen (HBcAg) were found to be more widespread within infected liver using indirect immunofluorescence on frozen sections than with the widely used direct immunofluorescence method. Fixation of frozen sections with carbon tetrachloride improved tissue histology without reducing the sensitivity of antigen detection. In tissue blocks fixed with formalin or ethanol-acetic acid, detection of HBcAg was reduced in comparison with frozen sections, and many cells containing low concentrations of (usually cytoplasmic and membranous) HBcAg could not be identified even using indirect immunofluorescence or peroxidase-antiperoxidase reactions. In contrast, intracellular hepatitis B surface antigen (HBsAg) was well detected in fixed sections, but membrane associated HBsAg was not detectable after fixation.

Cell Nucleus↗

Cytoplasmic (but not nuclear) hepatitis B virus (HBV) core antigen reflects HBV DNA synthesis at the level of the infected hepatocyte.

Hepatitis B virus (HBV) core antigen (HBcAg) detected by the peroxidase-antiperoxidase technique was present in the nucleus and cytoplasm of some infected hepatocytes but only in the cytoplasm of other hepatocytes. When cells expressing HBcAg were examined by in situ hybridization for the presence of HBV DNA, the intracellular level of cytoplasmic HBV replicative intermediate DNA correlated with the level of cytoplasmic HBcAg, but not with the presence or absence of nuclear HBcAg. This suggests that nuclear HBcAg may not be directly involved in hepadnavirus replication.

Cell Nucleus↗