Search PubMed⌕ Search

Biomedical subjects

B Dupont

Publications and source records attributed to B Dupont.

At least 271 records · Page 15Linked to original sources

M241 (CD1) expression on B lymphocytes.

The human thymus leukemia-like antigens (CD1a-c) consist of three similar glycoproteins found on subpopulations of normal thymocytes, T cell acute leukemias, and cutaneous dendritic cells. The CD1c antigen recognized by the M241 monoclonal antibody was detected on the circulating mononuclear cells of three children with severe combined immunodeficiency disease (SCID). Two-color immunofluorescence analysis demonstrated that M241 expression (43 to 95%) was limited to cells expressing the B cell-restricted antigens B4 (CD19), B1 (CD20), and surface immunoglobulin. To confirm M241 expression on normal cells of the B lineage rather than aberrant expression limited to SCID B cells, its expression was demonstrated serologically and biochemically on purified B cells from spleen, tonsil, and peripheral blood. Parallel analyses with monoclonal antibodies NA1/34 and 4A76 demonstrated that the CD1a and CD1b molecules were negative on all B cells that were studied. It has been hypothesized that the CD1 molecules represent the human counterpart of the murine thymus leukemia antigens due to their similar size, limited tissue distribution, and association with beta 2-microglobulin. This study suggests that a subset of CD1 antigens detected by M241 (CD1c) may represent a human analog of a murine Qa antigen due to its extended distribution on normal peripheral B cells.

Antibodies, Monoclonal↗

Autocytotoxic and autosuppressor T-cell lines generated from autologous lymphocyte cultures.

Limiting dilution analyses have demonstrated both the generation and suppression of autocytotoxic cells following in vitro stimulation with autologous peripheral blood mononuclear leukocytes (PBL). Therefore, in order to isolate and characterize the autocytotoxic lymphocytes, interleukin 2-dependent cell lines were derived from autologous mixed lymphocyte microcultures. The cell lines were screened for cytolytic activity against autologous phytohemagglutinin-activated lymphoblasts, autologous and allogeneic B-lymphoblastoid cell lines (B-LCL), and the natural killer target K562. Of 189 cell lines analyzed, 26 demonstrated cytotoxicity against autologous target cells. Cell surface phenotyping of all cell lines indicated that they were of T lymphocyte lineage. Two autocytotoxic T-cell clones were subsequently derived in similar fashion. Cell lines were also screened for autoregulatory activity. Two cells lines were identified that inhibited the generation of autocytotoxicity. Neither of the autoregulatory lines was capable of directly lysing an autocytotoxic line, suggesting that these autosuppressor cells exert their inhibitory effect by a mechanism other than direct lysis of the autocytotoxic effector cell. These findings indicate that through the application of limiting dilution analysis and in vitro cell culture techniques, autocytotoxic and autosuppressor lymphocyte populations can be isolated and utilized to analyze the cellular interactions involved in maintaining self-tolerance.

Autolysis↗

Galactomannan antigenemia and antigenuria in aspergillosis: studies in patients and experimentally infected rabbits.

Purified galactomannan (GM) from Aspergillus fumigatus was used in both a radioimmunoassay and an enzyme-linked immunoassay for antigen detection. Results of the two tests seemed interchangeable. By one or both assays, GM was detected in serum from four of 12 rabbits lethally infected with A. fumigatus in concentrations ranging from 108 to 356 ng/ml. Serum antigen was detected in only two of 12 patients with invasive aspergillosis. Results of assay for GM in urine were far more encouraging. Urinary GM was detectable throughout the course of lethal aspergillosis in all 16 rabbits, in concentrations of 24-1,900 ng/ml. Urine from seven of 13 patients with invasive aspergillosis had GM concentrations of 1-83 ng/ml. Antigen excretion roughly paralleled extent of disease.

Animals↗

Receptor-mediated clearance of Aspergillus galactomannan.

The fate of radiolabeled Aspergillus fumigatus galactomannan was studied after intravenous injection into rabbits and rats. At 1 hr, the liver contained 35% of the injected dose in rabbits and 30% in rats. Excretion of galactomannan into the urine, measured in rabbits, was another major catabolic route and accounted for 35% of the dose by 24 hr. Immunization of rabbits increased hepatic uptake and decreased urinary excretion. Hepatic uptake in unimmunized rats could be decreased by Saccharomyces cerevisiae mannan, alpha-methyl mannoside, and N-acetylglucosamine, known inhibitors of the macrophage mannose receptor. Autoradiography showed hepatic radiolabeled galactomannan to be concentrated in Kupffer cells, which express the mannosyl receptor for glycoproteins. Macrophage mannosyl receptors may constitute a general mechanism for clearing fungal mannans from the bloodstream.

Acetylglucosamine↗

Enzyme-linked immunosorbent-assay (ELISA) for IgG in bagasse workers' sera: comparison with counter-immunoelectrophoresis.

An enzyme-linked immunosorbent-assay (ELISA) for the detection of antibodies against Thermoactinomyces sacchari associated with bagassosis has been described and compared with the counter-immunoelectrophoresis (CIE) assay in forty-five bagasse workers; twenty-six of whom had symptoms consistent with bagassosis, and ten who were normal blood-bank donors. The ELISA was more sensitive than CIE in detecting antibodies against the double dialysis antigen used. There was a significantly (P less than 0.05) greater number of ELISA-positive individuals (82%) than those who were precipitin positive (60%). Results of the ELISA also gave a significantly better correlation (P less than 0.05) with the clinical diagnosis (88%) than did the precipitin test results (58%). The ELISA was useful in quantitating antibodies in the sera. The symptomatic group of bagasse workers did not have significantly higher titres in the ELISA than the group of exposed but asymptomatic subjects. We conclude that the ELISA is a sensitive and specific test, which is readily available and widely applicable for the detection of immunization in bagasse workers.

Antibodies, Bacterial↗

Entry of ketoconazole into Candida albicans.

To define characteristics that determine the entry of ketoconazole (KTZ) into Candida albicans cells, we studied the uptake of [3H]KTZ. The cells rapidly and markedly concentrated the drug: 30% of the final 80-fold intracellular concentration was attained in less than 1 min, and greater than 60% was attained in 10 min. Penetration of [3H]KTZ at an extracellular concentration higher than 0.1875 microM (0.1 microgram/ml) occurred by a simple diffusion mechanism. At lower concentrations, accumulation of the drug was an active, energy-requiring process, dependent at least in part on glycolysis, and pH dependent (optimal pH, 6.6). The active transport system had a high binding affinity (Km = 50 nM) and a high maximum velocity of uptake (Vmax = 1.4 mumol min-1 10(-7) cells). It was not possible to displace intracellular [3H]KTZ with high concentrations of unlabeled KTZ or other antifungal agents. These findings suggest that KTZ is rapidly taken up, highly concentrated, and tightly bound to cellular components of C. albicans.

Candida albicans↗

Analysis of prostaglandin E2 effect on T lymphocyte activation. Abrogation of prostaglandin E2 inhibitory effect by the tumor promotor 12.0 tetradecanoyl phorbol-13 acetate.

We have investigated the inhibitory potential of prostaglandin E2 (PGE2) with respect to intracellular messengers implicated in the signaling system of T-lymphocyte activation pathway. Using the fluorescent indicator Quin 2, it is demonstrated that PGE2 inhibits the increase in cytosolic-free calcium concentration [Ca2+]i. Reconstitution of calcium mobilization in the presence of PGE2 by the calcium ionophore A23187 results in a partial restoration of both interleukin 2 (IL2) production and cell proliferation and has no effect on the inhibition of transferrin receptor expression. In contrast, the treatment of cell cultures with the tumor promotor 12.0 tetra decanoyl phorbol-13-acetate (TPA) abrogates the suppressor activity of PGE2. When T lymphocyte stimulation is provided by the combination of A23187 and TPA, the PGE2 inhibitory effect does not occur. These data also indicate that the down regulation of transferrin receptor by PGE2 is proximal to protein kinase C activation and is not associated with decreased expression of the functional IL2 receptor.

Calcimycin↗

Relevance of autocytotoxic and autoregulatory lymphocytes in the maintenance of self tolerance.

The state of self tolerance may well be an amalgam of many processes including (but not necessarily limited to) clonal deletion and specific suppressor cell networks. Cells with autoaggressive potential are clearly present in the blood of healthy individuals and have been implicated in diseases states. Given the critical importance of maintaining self tolerance, it is not at all surprising that several mechanisms appear to play a role in this process. Attempts to harness and manipulate these various mechanisms in order to prevent allograft rejection or to treat autoimmune diseases should prove to be exciting areas of investigation in the years ahead.

Animals↗

Graft rejection in recipients of T-cell-depleted HLA-nonidentical marrow transplants for leukemia. Identification of host-derived antidonor allocytotoxic T lymphocytes.

Clinical trials with bone marrow depleted of donor T lymphocytes indicate that both the incidence and severity of graft-versus-host disease (GVHD) in patients undergoing bone marrow transplantation (BMT) for treatment of leukemia are greatly reduced. However, there has been a concurrent increase in the incidence of graft rejection, particularly among recipients of HLA-nonidentical marrow grafts. In order to investigate the nature of graft failure, peripheral blood mononuclear cells (PBMC) present at the time of graft failure have been characterized by phenotypic and functional analyses in 5 recipients of HLA-nonidentical marrow grafts. Rejection of HLA-nonidentical marrow grafts was associated with the emergence of host-derived T lymphocytes in all 5 patients. In 3 of these patients, the cells could be tested directly for cell-mediated cytotoxicity. Antidonor cytotoxicity was detected in each of these 3 patients. In one patient the target specificity of the cytotoxic lymphocytes was identified as the donor class I HLA antigen, HLA-B7. None of the patient PBMC mediated cytotoxicity against the natural killer cell target K562.

Bone Marrow Transplantation↗

[2 new cases of rhinoentomophthoromycosis diagnosed in the Central African Republic (review of the literature)].

After a historical account and review of the published literature on rhinoentomophthoromycosis, we report two recently recognized cases in Central African Republic. The first case was a 32 year-old "peuhl" woman with typical facial deformation that gave her a "hippopotamus-woman" aspect. The second case was a 53 year-old man with lesions that were less typical and limited to one half of the face only. In both cases, hypodermic nodules were palpable and it is likely that inoculation occurred by scratching of a skin lesion. The woman originates from a savanna region whereas the second patient is from a forest area. In both cases, culture were positive for Conidiobolus coronatus. Treatment with itraconazole was instituted for both patients.

Adult↗

Complexity of the supertypic HLA-DRw53 specificity: two distinct epitopes differentially expressed on one or all of the DR beta-chains depending on the HLA-DR allotype.

The supertypic HLA-DRw53 specificity is associated with three allelic class II specificities defined by alloantisera: HLA-DR4, -DR7, and DRw9. The present study demonstrates the complexity of this supertypic DR specificity by comparing two DRw53-related determinants defined by the monoclonal antibodies PL3 and 109d6. For every HLA-DR4 cell line tested, both monoclonal antibodies were found to bind to the same subpopulation of DR molecules. This PL3+, 109d6+ DR subpopulation is also found on most, but not all, DR7+ cell lines with a beta-chain pattern that is identical to the beta-chain pattern of the PL3+, 109d6+ subpopulation on DR4 cell lines. However, some DR7+ cells which carry the HLA haplotype Bw57, DR7, DRw53, DQw3 were also found which completely lack the expression of the 109d6 determinant, but continue to express the PL3 determinant and some of the DRw53 determinants recognized by alloantisera. This results from the fact that the PL3 determinant is expressed on all of the DR molecules found on DR7 cells, including the distinct subpopulation of molecules that carry the HLA-DR7 determinant recognized by the monoclonal antibody SFR16-DR7. This PL3+, SFR16-DR7+ subpopulation does not carry the 109d6 determinant, demonstrating that the PL3 and 109d6 DRw53-related determinants are distinct and can be expressed on a different number of DR molecules, depending on the allotype of the cells. Blocking studies were also performed by using these monoclonal antibodies with alloreactive HLA-DR7-specific cytotoxic T cell clones. In these studies, the T cell-defined HLA-DR7 determinants were found to be carried by the same subpopulation of DR molecules recognized by the HLA-DR7-specific monoclonal antibody and not carried by the DR molecules recognized by 109d6. The DR7+ cell lines which do not express the 109d6 determinant also fail to express another supertypic determinant recognized by the monoclonal antibody IIIE3 carried on this molecule. Furthermore, no additional allelic forms of this unique DR beta-chain were found associated with the nonpolymorphic DR alpha-chain on these cells, suggesting that this DR beta-chain gene is not expressed. These cells also behave as homozygous typing cells for the Dw11 subtype of DR7 in HLA-D typing in the mixed lymphocyte culture assay. This suggests that the lack of expression of a specific class II gene may contribute additional genetic polymorphism within the known HLA-DR allotypes.

Alleles↗

A common pathway for T lymphocyte activation involving both the CD3-Ti complex and CD2 sheep erythrocyte receptor determinants.

T lymphocyte activation with monoclonal antibodies directed against the CD2 (T,p50) sheep red blood cell receptor antigen and against CD3 (T,p19,29) has been investigated. Co-stimulation of purified T lymphocytes with anti-CD3 (SP34) and anti-CD2 (9-1), which detects a unique epitope on the CD2 molecule, results in T cell activation and cell proliferation. Each antibody alone is unable to mediate this effect. Co-stimulation of purified T cells with two different anti-CD2 antibodies, 9-1 and 9.6, which detect two different epitopes on the CD2 molecule, are also mitogenic. In contrast, the combination of anti-CD3 (SP34) and anti-CD2 (9.6) cannot induce T cell activation. These data suggest that the CD2 epitope defined by the 9-1 antibody is functionally important for T cell activation via the CD3/Ti complex. Furthermore, it is demonstrated that anti-CD3 (SP34) induces epitopic modulation of the CD2 molecule, resulting in enhanced expression of the CD2, 9-1 epitope. This epitope modulation of the CD2 (9-1) epitope by anti-CD3 (SP34) occurs instantaneously at 4 degrees C and in the presence of NaN3. The functional interaction between CD3 and CD2 occurs in spite of any evidence of complex formation between these two molecules. These data suggest that the T cell differentiation antigens CD3 and CD2 are jointly involved in antigen-specific T cell activation. The data are consistent with a model for antigen-specific T cell activation involving both the CD3/Ti complex and subsequent activation of the CD2 complex T cell activation by co-stimulation with anti-CD3 (SP34) and anti-CD2 (9-1) is substantially enhanced by the addition of exogenous, purified interleukin 1 (IL 1). These data would suggest that the CD2 complex, as well as the putative IL 1 receptor, are involved in separate and complementary receptor-ligand interactions, resulting in the amplification of antigen-specific T cell responses.

Animals↗