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Biomedical subjects

R Grunow

Publications and source records attributed to R Grunow.

At least 19 recordsLinked to original sources

A novel screening ELISA and a confirmatory Western blot useful for diagnosis and epidemiological studies of tularemia.

A novel enzyme-linked immunosorbent assay (ELISA) and a confirmatory Western blot (WB) to detect human antibodies against Francisella tularensis were evaluated. The ELISA was based on partially purified lipopolysaccharide (LPS), the WB on whole antigen of F. tularensis. Positive WB showed a typical LPS ladder. Sensitivity and specificity of the ELISA, as assessed in 104 positive sera and 1149 'normal' sera from healthy young adults, were 99.0% and 97.1% respectively. Sensitivity of the WB was close to 100%, whereas specificity was 99.6%. Antibodies against the LPS of F. tularensis were detected in four of the 'normal' sera in both ELISA and WB. The assays were further evaluated using sera of individuals from Norway, Sweden and Kosovo suspected to be infected in tularemia outbreaks. Results revealed that the combination of ELISA and WB is suitable for laboratory confirmation of tularemia as well as for large-scale epidemiological studies.

Antibodies, Bacterial↗

Generation of mouse polyclonal and human monoclonal antibodies against Bacillus anthracis toxin.

High titer antisera against the protective antigen (PA) from Bacillus anthracis were generated immunizing Balb/c mice two times intraperitoneally with PA in combination with lipopeptide adjuvant P3CSK4. The sera were able to protect the mouse macrophage cell line J774A.1 from an anthrax toxin challenge. We also tested the blood of anthrax vaccine-immunized persons for PA- and lethal factor (LF)-specific antibodies. An increased titer was found after three immunizations, and the sera were also able to protect the mouse macrophage cell line from a toxin challenge. For the preparation of human monoclonal antibodies, we used peripheral blood lymphocytes. After in vitro stimulation using PA or synthetic peptides derived from PA, B lymphocytes were immortalized by PEG fusion with the human mouse heteromyeloma cell line CB-F7. We obtained several clones producing high amounts of PA-specific immunoglobulin (Ig).

Adjuvants, Immunologic↗

Serodiagnosis of human plague by a combination of immunomagnetic separation and flow cytometry.

BACKGROUND: Plague is a severe, highly communicable bacterial disease caused by Yersinia pestis. It is still endemic in more than 20 countries worldwide. Although known as a devastating disease for centuries, laboratory confirmation of clinical suspected cases is still problematic. No standardized and internationally approved test system is commercially available. The aim of this study was the introduction and evaluation of a combination of immunomagnetic separation and flow cytometry for the serodiagnosis of human plague. METHODS: Paramagnetic polystyrene beads were coated with purified F1 capsular antigen (F1 CA) and reacted with sera from plague patients, from 26 laboratory personnel vaccinated against plague and from 102 healthy blood donors (HBD). After incubation with fluorescein isothiocyanate-conjugated anti-human rabbit IgG, particle-associated fluorescence was detected by flow cytometry. RESULTS: Anti-F1 CA antibodies could be demonstrated in all patients with bacteriologically confirmed plague and in 22 sera (84.6%) from vaccinees. Only one serum in the HBD group showed a weakly positive reaction. The total assay time was less than 2 h. CONCLUSIONS: Compared with a recently published combination of an anti-F1 CA enzyme-linked immunosorbent assay (ELISA) and immunoblot, the new assay showed the same sensitivity as the ELISA and almost the same specificity (99.0 versus 100%) as the immunoblot. Allowing a rapid, reliable, and quantitative analysis, immunomagnetic separation combined with flow cytometry might replace both conventional immunoassays.

Antibodies↗

A procedure for differentiating between the intentional release of biological warfare agents and natural outbreaks of disease: its use in analyzing the tularemia outbreak in Kosovo in 1999 and 2000.

The events of 11 September and the subsequent anthrax outbreaks in the USA have opened the world's eyes to the threat posed by terrorist groups, criminal organizations and lone operators who will stop at nothing to achieve their goals. The open or covert use of pathogens and toxins as biological warfare agents can no longer be ruled out. Against this background, the appearance of an unusual disease must be studied in order to clarify whether it is a natural or artificially caused occurrence. This issue was recently raised in discussions with local representatives and relief organizations during a tularemia epidemic in Kosovo from October 1999 to May 2000. This paper will present a procedure which attempts to use certain criteria to identify or rule out the use of biological warfare agents in the event of an unusual outbreak of disease. Data and findings gathered by routine epidemiologic and microbiological studies often provide only an indirect answer to this problem. For this reason, various criteria were formulated and points allocated to represent their importance, allowing us to deduce in a semiquantitative manner the degree of possibility of an artificial genesis of outbreaks. The significance and characterization of each criterion are discussed. An analysis of the tularemia epidemic in Kosovo based on the procedure described here indicates that a deliberate release of the causative agent of tularemia, Francisella tularensis, as a biological warfare agent is doubtful. In this paper, an approach is described to discriminate between the intentional use of biological warfare agents and natural outbreaks of infectious diseases. The developed model is flexible and considers the political, military and social analysis of the crisis-afflicted region, the specific features of the pathogen, and the epidemiologic and clinical characteristics of the epidemic.

Animals↗

Field detection of Francisella tularensis.

A field investigation was undertaken following an outbreak of water-borne tularemia in Northern Norway. Francisella tularensis bacterial cellular components were analysed by rapid immunochromatography (RI)-testing, enzyme-linked immunosorbent assay (ELISA) and polymerase chain reaction (PCR). Water from 1 reservoir, fed from a rapid stream, tested negative. From another reservoir, 2 of a chain of 3 wells tested negative. The third well, at the end of the chain, contained lemming (Lemmus lemmus) carcasses and gave ample proof of F. tularensis contamination. We concluded that the origin of the outbreak was dead, infective lemming carcasses in the water sources. For the various sampling materials, the RI-test proved itself particularly handy and versatile, compared with the ELISA and the PCR.

Chromatography↗

Detection of Francisella tularensis in biological specimens using a capture enzyme-linked immunosorbent assay, an immunochromatographic handheld assay, and a PCR.

The early detection of Francisella tularensis, the causative agent of tularemia, is important for adequate treatment by antibiotics and the outcome of the disease. Here we describe a new capture enzyme-linked immunosorbent assay (cELISA) based on monoclonal antibodies specific for lipopolysaccharide (LPS) of Francisella tularensis subsp. holarctica and Francisella tularensis subsp. tularensis. No cross-reactivity with Francisella tularensis subsp. novicida, Francisella philomiragia, and a panel of other possibly related bacteria, including Brucella spp., Yersinia spp., Escherichia coli, and Burkholderia spp., was observed. The detection limit of the assay was 10(3) to 10(4) bacteria/ml. This sensitivity was achieved by solubilization of the LPS prior to the cELISA. In addition, a novel immunochromatographic membrane-based handheld assay (HHA) and a PCR, targeting sequences of the 17-kDa protein (TUL4) gene of F. tularensis, were used in this study. Compared to the cELISA, the sensitivity of the HHA was about 100 times lower and that of the PCR was about 10 times higher. All three techniques were successfully applied to detect F. tularensis in tissue samples of European brown hares (Lepus europaeus). Whereas all infected samples were recognized by the cELISA, those with relatively low bacterial load were partially or not detected by PCR and HHA, probably due to inhibitors or lack of sensitivity. In conclusion, the HHA can be used as a very fast and simple approach to perform field diagnosis to obtain a first hint of an infection with F. tularensis, especially in emergent situations. In any suspect case, the diagnosis should be confirmed by more sensitive techniques, such as the cELISA and PCR.

Antibodies, Monoclonal↗

CD80 and CD86 costimulatory molecules on circulating T cells of HIV infected individuals.

The expression of CD80 and CD86 costimulatory molecules, typical for antigen presenting cells (APC), was measured on circulating T cells of 20 HIV-infected individuals and of 11 HIV-negative healthy controls. The CD80 and CD86 molecules were present on both circulating T subsets of HIV-infected individuals (mean of CD80 expression within CD4+ T cells [CD80/CD4]: 5.0%; and CD86/CD4: 2.6%; CD80/CD8 4.1% and CD86/CD8: 2.7%) and were associated with HLA-DR expression. Some CD80 and CD86 expression was also found in normal controls, and only the expression of CD86 was significantly (P < 0.05) increased on CD4 + and CD8 + T cells of HIV-infected individuals. The expression of CD28 was decreased on T cells of HIV-infected individuals and was negatively correlated to the expression of HLA-DR and CD86 (mean CD28 within CD3+T cells: HIV+ 29.5%, HIV - 67.6%; correlation coefficient, - 0.75 and - 0.71, respectively). The more the disease proceeds, the less CD28 and the more DR and CD86 are found on circulating T cells. This suggests that during HIV infection T cells themselves develop an antigen presenting phenotype by upregulating expression of HLA-DR, CD86 and CD80 molecules.

Adult↗

Association of syncytium-inducing phenotype of HIV-1 with CD4 cell count, viral load and sociodemographic characteristics.

OBJECTIVES: To study whether syncytium-inducing (SI)/non-SI (NSI) phenotype of HIV-1 is associated with CD4+ lymphocyte count, plasma HIV RNA level, clinical stage and sociodemographic characteristics in antiretroviral-naive HIV-1-infected patients. DESIGN: Cross-sectional analysis of single centre cohort study data. METHODS: SI/NSI phenotype was determined using a cocultivation assay using patients' peripheral blood mononuclear cells and MT2 cells. Standard procedures were used for CD4+ cell counts and viral load measurements in plasma. Univariate and multivariate analyses of association of CD4+ cell counts, viral load, clinical stage, age, sex and mode of HIV transmission were performed. RESULTS: In univariate analysis, SI phenotype was significantly associated with lower CD4+ cell counts, higher HIV RNA plasma levels, symptomatic HIV disease, male sex and age 32-36 years (middle tercile). In multivariate analysis, only lower CD4+ cell counts were associated with SI phenotype (odds ratio per increase of 100 x 10(6)/l, 0.54; 95% confidence interval, 0.38-0.78). CONCLUSIONS: HIV-1 SI phenotype was associated with lower CD4+ cell counts but not with higher plasma viral load, clinical stage or sociodemographic variables.

Adolescent↗

Development and characterization of a murine monoclonal antibody reactive with a 64 kDa somatic antigen of Burkholderia cepacia.

Monoclonal antibodies (MAbs) to Burkholderia cepacia were produced from mice immunized with inactivated whole-cell antigen. For screening of resulting MAbs an enzyme-linked immunosorbent assay (ELISA) was used. A stable hybridoma cell line (BC-2) producing specific antibodies to a 64 kDa somatic antigen from B. cepacia was established. In ELISA and immunoblotting analysis the MAb BC-2 recognized all tested strains of B. cepacia whereas no cross-reaction with 32 Pseudomonas aeruginosa strains was found. From a wide range of other bacteria only strains of the species Burkholderia mallei, Burkholderia pseudomallei, and Burkholderia gladioli showed cross-reactions. The MAb BC-2 will be used to develop a diagnostic assay for the identification of B. cepacia and B. gladioli, important agents of nosocomial infections in immunocompromised patients suffering especially from cystic fibrosis (CF).

Animals↗

Anergy induction in human CD4+ T-cell clones by stimulation with soluble peptides does not require cell proliferation and is accompanied by elevated IL4 production.

The stimulation of activated T cells with soluble peptides or peptide-pulsed T-APC in the absence of professional APC can anergize peptide-specific T cells. Here, we studied human T cell clones (TCCs) that either proliferate (T-responder) or do not proliferate (T-nonresponder) to activated T cells as antigen-presenting cells (APC) and investigated the efficacy of anergy induction in these two types of TCCs. The TCCs were specific to the p30 peptide from tetanus toxoid and secreted either a Th0- or a Th1-like cytokine pattern. To induce anergy, the TCCs were first stimulated by addition of the peptides directly to the cell cultures without additional APC (T-APC). Anergy was detected by restimulating these TCCs on professional B-APC. The proliferation, production of cytokines (IL2, IFN-gamma, IL4, IL5, IL10), and the cytotoxicity were measured after the first and second stimulation and compared with nonanergized control cells. Priming of TCCs by T-APC (anergy induction) resulted in an elevated production of IL4. This cytokine shift was also seen in the T-nonresponder TCC despite no induced proliferation. Th1-like TCCs retained their cytotoxicity after anergy induction. In contrast to cells first activated by B-APC, the restimulation of TCCs primed by T-APC lead to a drastic reduction of proliferation and cytokine production for both T-responder and T-nonresponder TCCs. The functional down-regulation of TCCs mediated by soluble peptides could be overcome by addition of IL2, but not by IL1 or IL4. We concluded that the induction of T-cell anergy does not require cell proliferation.

Antigens↗

Inhibition of syncytia-inducing (SI) virus by autologous serum from HIV-1-infected individuals.

BACKGROUND: Progression from HIV infection to AIDS is often accompanied or even predicted by a switch of the virus to a more pathogenic or syncytia-inducing (SI) phenotype concomitant with the development of HIV variants escaping neutralizing antibodies. OBJECTIVE: Here we studied the capacity of sera to neutralize autologous SI-HIV or the laboratory strain III(B) and compared these data to the viral load in HIV-1-infected patients. METHODS: The SI phenotype of HIV was detected by co-cultivation of peripheral blood mononuclear cells (PBMCs) with MT2 cells in 112 patients stratified by their CD4 cell counts. Sera at dilutions of 1 : 15 and 1 : 75 were added to MT2 co-cultures with autologous PBMCs as well as with HIV-1/IIIB-infected H9 cells to study the inhibitory capacity. The p24 antigenemia was detected by enzyme-linked immunosorbent assay (ELISA) and the circulating HIV RNA was determined using the polymerase chain reaction (PCR). RESULTS: The SI virus was detected in PBMCs from 31/65 patients with < or = 200 CD4+ cells, 8/28 patients with 201-499 CD4+ cells, and 1/19 patients with > or = 500 CD4+ cells. Sera from 16/40 patients inhibited the autologous SI-HIV. In sera from patients with < or = 200 CD4+ cells, p24 antigen could be detected in 17/34 (50%) patients with non-syncytia-inducing (NSI) phenotype and in 7/19 (37%) patients carrying SI-HIV without serum inhibition. In contrast, all 12 sera with inhibitory activity to the autologous SI-HIV were negative for p24 antigen. A similar tendency was seen in patients with higher CD4+ T-cell counts. The mean load of circulating HIV RNA did not differ among groups of patients. Independently of their neutralizing activity to the autologous SI virus, the majority of sera were able to neutralize the laboratory HIV-1/III(B). CONCLUSIONS: While most of the patients' sera neutralized the laboratory HIV-1/III(B) strain, only some sera were able to inhibit the autologous SI-HIV. In these cases, the detectable SI-HIV may still be controlled by the immune system in vivo, which is consistent with a low p24 antigenemia.

Journal Article↗

[Characterization of chick embryo fibroblast culture--overview of its effectiveness as a hybridoma cell].

The use of culture supernatant (added in a final concentration of 25% v/v) from chicken embryonal fibroblasts (CEF) for stimulation of established hybridoma cell lines has been shown. The proliferative effect on hybridoma cells from different origins was heatproof and was possible with a reduced serum part (FCS) in the culture medium. After a chromatografic separation the supernatant sections were tested and the positive effect was much lower in comparison to the total conditioned media.

Animals↗

Monoclonal antibodies to p24-core protein of HIV-1 mediate ADCC and inhibit virus spread in vitro.

BACKGROUND: Certain antigens of the HIV-1, e.g., gp120-envelop proteins, can be expressed on the membrane of HIV-infected cells. Little is known about the membrane expression of other HIV-antigens and their interaction with specific antibodies. OBJECTIVE: To develop murine monoclonal antibodies (mAbs) to the p24-core protein of HIV-1 and to characterise their binding sites and biological activities on HIV-infected T cells. METHODS: Monoclonal antibodies were developed from mice hyperimmunised with a recombinant p24-core protein from HIV-1. Two mAbs were epitope-mapped on overlapping peptides and characterised for their reactivity with non-fixed HIV-infected T cells by immunofluorescence staining and flow cytometric analysis. Their biological activities were studied for antibody-dependent cellular cytotoxicity (ADCC) and suppression of viral spread in vitro. RESULTS: The epitopes of two selected mAbs were located on the amino terminal region of p24 in the regions 147-152 aa and 178-187 aa, respectively. The antibodies were able to react with living HIV-1 infected cells. The expression of the antigens was time-dependent after the infection of certain cell lines by HIV-1. The mAbs mediated a strong HIV-1-specific ADCC and were able to delay the spread of HIV-1 for about 6 days in cell cultures. CONCLUSIONS: Certain epitopes of the p24-core protein of HIV-1 can be expressed on living, HIV-infected T cells and are recognised by specific antibodies. Such antibodies can destroy infected cells by ADCC or delay the virus spread, and therefore, should be considered in immunisation strategies against HIV.

Journal Article↗

A cell surface ELISA for the screening of monoclonal antibodies to antigens on viable cells in suspension.

To simplify the screening of monoclonal antibodies to different human T cell surface molecules a live cell enzyme-linked immunosorbent assay (cell ELISA) has been established and optimized. The assay was performed in 96-well plates. By using living human T lymphocytes in suspension surface modification by fixation or insolubilization of the cells was avoided. Several parameters influencing sensitivity and specificity were studied. About 150 ng/ml of mouse monoclonal antibodies to cell surface antigens could be detected when using 5 x 10(4) cells per well and a 1/1000 dilution of the anti-mouse IgG-alkaline phosphatase conjugate. This sensitivity permitted the primary screening of cell specific antibodies from hybridoma supernatants. The same detection limit was obtained in flow cytometric analysis. If required, the sensitivity of the cell ELISA could be increased using higher cell numbers and conjugate concentration. When analysing different cell lines with selected antibodies the cell ELISA was found to be as sensitive and specific as the fluorescence assay. The assay was applied to the screening of supernatants from hybridomas developed against human T helper cell clones and the detection of V beta specificities of T cell clones.

Antibodies, Monoclonal↗

Reduced number of Langerhans cells in oral mucosal washings from HIV-1 seropositives.

In order to elucidate mucosal immunity in HIV-1 seropositive individuals, we investigated oral mucosa washings from 20 HIV-1 seropositive patients for the presence of Langerhans cells (LC) and HIV-1 antigen-positive cells, and compared the results with those obtained from 20 HIV-1 seronegative healthy individuals. Monoclonal antibodies directed against CD1a, HLA-DR, CD3, and p24 were used to identify LC, T cells and HIV-1 core-antigens, respectively. In oral mucosa washings from HIV-1 seropositive patients there was a significant reduction in the number of CD1a+ cells as compared with the healthy subjects. HIV-1 antigen-positive cells were not detected. The reduction of LC in oral mucosa washings from HIV-1 seropositive patients is probably associated with HIV-1 infection. The frequent occurrence of oral mucosal disorders in HIV-1 infected patients may in part be caused by a reduced LC-number and/or function.

AIDS-Related Opportunistic Infections↗