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Biomedical subjects

B Fleischer

Publications and source records attributed to B Fleischer.

At least 181 records · Page 10Linked to original sources

Proliferative response of synovial fluid and peripheral blood mononuclear cells to arthritogenic and non-arthritogenic microbial antigens and to the 65-kDa mycobacterial heat-shock protein.

Cellular immune responses to microbial antigens have been implicated in the pathogenesis of some forms of arthritis including reactive arthritis, Reiter's syndrome, ankylosing spondylitis and rheumatoid arthritis. We investigated the proliferative T cell responses of paired peripheral blood (PB) and synovial fluid (SF) mononuclear cells (MC) to so-called arthritogenic bacteria (Yersinia enterocolitica and Salmonella typhimurium), to control antigens, such as Candida albicans, mumps virus and purified protein derivative, to the recombinant mycobacterial 65-kDa heat-shock protein (hsp 65) and the mitogen phytohemagglutinin (PHA) in 16 patients with different inflammatory rheumatic diseases. The [3H]thymidine uptake of unstimulated cells (medium control) as well as the proliferative response to the different antigens tested was markedly increased in SFMC irrespective of the underlying rheumatic disease. In contrast, mitogenic stimulation was decreased in SFMC. The proliferative response to the hsp 65 correlated significantly with the responses to Yersinia, Salmonella and Candida. These results may reflect an enhanced function of SF antigen-presenting cells, different functional properties and subset distributions of PB and SF T cells with a preferential accumulation of helper-inducer/memory T cells or a maintenance of an ongoing immune response by T cells cross-recognizing self epitopes such as epitopes located on the hsp 65. Thus, care should be taken in the interpretation of SF T cell responses to microbial antigens as diagnostic tools in arthritis.

Antigens, Bacterial↗

Absence of Epstein-Barr virus-specific, HLA class II-restricted CD4+ cytotoxic T lymphocytes in infectious mononucleosis.

Cytotoxic T lymphocytes (CTL) with the CD4+ phenotype that recognize major histocompatibility complex (MHC) class II antigens are detectable very frequently in cultures of human alloreactive or virus-specific T cells. The significance of these CD4+ CTL for an immune reaction in vivo is not clear. Since Epstein-Barr virus (EBV) transformed B cells express HLA-class I and class II antigens equally well both CD8+ and CD4+ CTL should be stimulated during an acute EBV infection. We analysed the MHC specificity and the phenotype of EBV-specific CTL from patients with infectious mononucleosis (IM). When tested directly without any previous culture, T cells from patients in the acute phase of IM showed specific MHC-restricted cytotoxicity against the autologous B cell line. Addition of a HLA class I specific monoclonal antibody (MoAb) but not of a HLA class II specific MoAb resulted in a complete blocking of the lytic activity. Cell sorting revealed that the entire cytotoxic activity was present in the CD8+ fraction whereas no specific CTL were detectable in the CD4+ fraction. The absence of cytotoxicity in CD4+ cells was not due to a lack of activation of these cells since both CD8+ and CD4+ cells were activated in situ, showing spontaneous growth in interleukin-2 (IL-2) and expressing the activation marker TP103. Frequency estimation revealed that 1/300-1/600 CD8+ but only 1/2000-1/4000 CD4+ T cells gave rise to a specific CTL colony after 10 days. If CD4+ colonies were tested repeatedly for cytotoxicity we found that CD4+ CTL acquired their cytotoxicity during in vitro culture. In addition, we isolated EBV-specific CD4+ T cell clones able to lyse their stimulator cells in the presence but not in the absence of lectin, even after a long period of culture. Taken together our results show that cytotoxicity mediated by CD4+ T cells does not play a role in an anti-viral immune response.

Antigens, Viral↗

Salmonella-reactive synovial fluid T-cell clones in a patient with post-infectious Salmonella arthritis.

From a patient with reactive arthritis following Salmonella typhimurium enteritis, synovial fluid T-lymphocytes were cloned and expanded in vitro. Seven out of 74 clones showed a marked proliferative response to antigens of heat-killed Salmonella typhimurium with autologous T-cell-depleted peripheral blood mononuclear cells as antigen-presenting cells. The Salmonella-reactive clones were of the CD4+ phenotype, antigen-induced proliferation could be inhibited by a monoclonal antibody to HLA class II. One clone recognized both Salmonella and Campylobacter jejuni antigens in the proliferation assay. The multiclonality of Salmonella-reactive synovial fluid T-cells indicates that the microorganisms have been present, at least transiently, within the affected joint and thus recruited specific T-lymphocytes that might initiate synovitis.

Adult↗

Clonal analysis of infiltrating T lymphocytes in liver tissue in viral hepatitis A.

The pathogenic mechanism leading to liver tissue injury in hepatitis caused by hepatitis A virus is unclear. We have randomly established T-cell clones from liver biopsies from four patients with hepatitis A. A total of 578 clones was phenotypically analysed. During the acute phase of the disease CD8+ clones dominated over CD4+ clones, whereas in a biopsy taken late after onset of clinical syndromes more CD4+ than CD8+ clones were obtained. Interestingly, in a patient with a second exacerbation of the disease, more than 20% of all clones had the CD3+ WT31- CD4- CD8- 'NK-like' phenotype. All CD8+ clones had cytotoxic activity and approximately 50% of all CD8+ clones showed specific cytotoxicity against autologous fibroblasts infected with hepatitis A virus. The CD8+ cells also produced IFN-gamma in response to these target cells. Variable IFN-gamma production was observed with all types of T-cell clones. These results suggest that the liver injury in hepatitis A is not caused by a viral cytopathogenic effect but is due to an immunopathological reaction of sensitized cytotoxic T lymphocytes against infected hepatocytes. In addition, these studies show an enrichment of CD4-8-T-cell receptor alpha beta-chain-negative T lymphocytes at the site of an inflammation and suggest a role of these cells in an anti-viral reaction.

Acute Disease↗

[Large bullous lung emphysema--bronchial asthma: surgical intervention in the stage of respiratory decompensation].

In the presence of large-bullae transformation of the lung parenchyma, resection of bullae may be indicated in the individual case, also in the stage of respiratory decompensation with generalised respiratory failure and right heart failure. The indication for this may be urgent, and the operation may even lead to a long-term improvement in pulmonary function. Two cases histories are presented to illustrate this.

Asthma↗

T lymphocyte activation by staphylococcal enterotoxins: role of class II molecules and T cell surface structures.

The enterotoxins produced by Staphylococcus aureus (SE) are the most potent mitogens known. Triggering of proliferation or cytotoxicity by SE requires the presence of MHC class II molecules on accessory or target cells. In this study we have investigated the role of HLA class II molecules in the activation of human T cells by SE and the nature of the target structure on the responding T lymphocyte for SE. This dependence on class II molecules is not due to an immunological "recognition" of SE since there is no restriction by polymorphic determinants of HLA molecules and since even xenogeneic class II molecules can reconstitute the human T cell response to SE. Furthermore, HLA class II-positive but not -negative cells absorb the mitogenic activity from SE solutions and significant binding of 125I-labeled SE can be demonstrated to class II-positive but not to class II-negative cells. Enterotoxin molecules react directly with T cells since they cause an increase in cytosolic Ca2+ concentration similar to anti-CD3 mAb. This increase is abrogated by prior modulation of the TCR/CD3 complex. Antibodies to CD2, CD3 and the TCR that block antigen-specific activation also block T cell activation by SE. Moreover, preincubation of purified resting accessory cell-free T cells with SE leads to modulation of the TCR/CD3 complex. Taken together these data indicate that SE interact selectively with HLA class II molecules on accessory or target cells and with a TCR-associated structure on the T cell.

Animals↗

MG-160. A novel sialoglycoprotein of the medial cisternae of the Golgi apparatus [published eeratum appears in J Biol Chem 1989 Mar 5;264(7):4264].

A monoclonal antibody (mAb 10A8), derived from mice immunized with fractions of the Golgi apparatus from rat brain neurons, was exploited to isolate and partially characterize a novel glycoprotein of 160 kDa apparent molecular mass which was localized by immunoelectron microscopy in medial cisternae of the Golgi apparatus of neurons, glia, pituitary cells, and rat pheochromocytoma (PC 12). The yield of immunoaffinity purified protein was 0.9 microgram/g of rat brain and represented 3% of the Golgi protein; the protein contained asparagine-linked carbohydrates and sialic acid and N-acetylglucosamine residues; unreduced protein had a greater electrophoretic mobility (130 kDa) consistent with the presence of intrachain disulfide bonds. The bulk of the glycoprotein resided within the membrane and/or luminal face of the Golgi cisternae. After extraction with Triton X-114, the glycoprotein was found in both aqueous and detergent phases. The monoclonal antibody did not inhibit the activities of Golgi enzymes or the uptake of nucleotide sugars by intact Golgi vesicles. The findings indicate that the 160-kDa glycoprotein is a specific constituent of medial Golgi cisternae. The results of this study lend support to the hypothesis that the distributions of glycosyltransferases in the Golgi apparatus are cell specific, since in neurons this sialic acid containing glycoprotein is found in medial rather than in trans and/or in the trans Golgi reticulum cisternae, where sialyltransferases have been localized in other cells. Alternatively, resident neuronal Golgi sialoglycoproteins may acquire sialic acid in trans elements of the apparatus and then shuttle back in medial cisternae.

Adrenal Gland Neoplasms↗

Embryonic neural cell adhesion molecules on human natural killer cells.

The neural cell adhesion molecules (NCAM) are surface glycoproteins that were first described in brain tissue. NCAM mediate adhesion in a variety of cell-cell interactions. In the present study we show that the so-called "embryonic" NCAM, i.e., the highly polysialylated forms of these proteins, are expressed on natural killer cells and some CD3+ cells in man. Homotypic binding of NCAM, believed to be of importance for cell-cell adhesion in neural tissues, appears not to be essential for NK cell-mediated killing. Yet, NCAM might be involved in NK cell migration, homing or related functions.

Antibodies, Monoclonal↗

Molecular cloning of the translocation breakpoint in T-ALL 11;14 (p13;q11): genomic map of TCR alpha and delta region on chromosome 14q11 and long-range map of region 11p13.

Using chromosome walking techniques, overlapping lambda and cosmid clones from the T cell receptor alpha (TCR alpha) region have been isolated; these span the entire J alpha region and parts of the TCR delta gene. Molecular analysis of the acute childhood leukemia cells (T-ALL) 8511 revealed a rearrangement on one chromosome 14 in J alpha 58 kb 5' of C alpha; this does not result in production of alpha message. The translocation was identified 90 kb 5' of C alpha at the previously identified J delta 2 element. A probe derived from the 5' region of the translocation breakpoint hybridized to DNA from a mouse-human cell hybrid containing chromosome 11 as the only human chromosome. This probe was used to isolate cosmid clones from chromosome 11. Several rare cutting restriction enzyme sites were found in close vicinity to the translocation breakpoint, and a long-range map spanning 1000 kb of chromosome region 11p13 was established. Analysis of the DNA from 15 cases of sporadic and familial Wilms' tumor did not reveal any changes, indicating that the translocation breakpoint does not reside in this gene.

Blotting, Southern↗

Selective effect of nerve growth factor on some Golgi and lysosomal enzyme activities of rat pheochromocytoma (PC12) cells.

Treatment with neuronal growth factor (NGF) results in the growth of neuronal processes by PC12 cells and a concomitant 70% increase in the area of the Golgi apparatus. To define the observed morphologic changes in biochemical terms, we investigated the effect of NGF treatment on some Golgi and lysosomal enzyme activities of PC12 cells. Enzyme activities characteristic of the Golgi apparatus, lysosomes, plasma membranes, mitochondria, and endoplasmic reticulum were measured in cell homogenates, in post-mitochrondrial supernatants, and in Golgi-enriched fractions from control and from NGF-stimulated PC12 cells. Treatment of PC12 cells with NGF did not change the level of the Golgi activity of UDPGal:GlcNAc galactosyltransferase while that of CMP-sialic acid:lactosylceramide sialyltransferase was increased three- to fivefold in all fractions studied. For lysosomal enzymes, NGF treatment resulted in a two- to threefold higher level of arylsulfatase activity compared to either acid phosphatase or acid alpha-mannosidase activities. These results indicate that there is a selective increase of at least one Golgi and one lysosomal activity as a result of NGF stimulation of PC12 cells. Both of these enzymes are involved in glycolipid metabolism. It is possible that the dramatic morphologic changes observed during NGF-induced differentiation of PC12 cells are associated not only with increased synthesis in the Golgi apparatus of plasma membrane components such as gangliosides, but also with increased degradation in lysosomes of other plasma membrane components such as sulfatide.

Acid Phosphatase↗

A previously unrecognized large fraction of cytotoxic lymphocyte precursors is present in CD4+ human peripheral blood T cells.

We describe a limiting dilution (LD) culture system in which cell sorter-purified CD4+ (and CD8+) peripheral blood T cells are cocultured with irradiated, anti-CD3 mab-producing OKT3 hybridoma cells. Under these conditions, one out of 2-3 CD4+ (and CD8+) T cells is induced to clonal proliferation. In striking contrast to previously described LD culture systems, every growing CD4+ cell clone displayed cytotoxic activity when tested in a lectin-facilitated 51Cr release assay against P815 target cells. This contrasts with the development of cytotoxic CD4+ T cells in alloantigen-stimulated LD cultures, where only one out of 15-20 proliferating CD4+ cells killed P815 in the presence of PHA, and one out of 300-500 proliferating CD4+ cells displayed alloantigen-specific cytotoxic activity. Furthermore, we have established antigen-specific proliferating CD4+ T cell clones which do not exert antigen-specific cytotoxicity but can be cytotoxic when crosslinked to target cells via lectin or monoclonal antibody (anti-CD3, anti-TCR). Our results show that a previously unrecognized large fraction (at least 30-50%) of all peripheral blood CD4+ T cells can give rise to cytotoxic effector cells. The mode of CD4+ T cell activation (OKT3 hybridoma versus alloantigen) thus determines whether the intrinsic cytotoxic capacity of CD4+ T cells is functionally activated or not.

Antigens, Differentiation, T-Lymphocyte↗

Bacterial toxins as probes for the T-cell antigen receptor.

A variety of microorganisms produce substances with suppressive or stimulating effects on cells of the immune system; these products also influence the pathogenesis of these diseases. A number of microorganisms produce toxins with mitogenic potential for T cells of many species, and in this article Bernhard Fleischer discusses how these toxins may be useful tools to improve understanding of the structure and function of the T-cell antigen receptor.

Animals↗

Liver-derived cytotoxic T cells in hepatitis A virus infection.

An autologous in vitro model was developed to analyze the immunologic cause of liver tissue injury during hepatitis A virus (HAV) infection. Human T lymphocytes infiltrating the livers of two patients with acute HAV infection were isolated from liver biopsy cores, cloned, and expanded in vitro. Procedures using a cell culture system with HAV-infected autologous skin fibroblasts demonstrated that 42% and 53% of the liver-infiltrating CD8+ clones were HAV-specific and that they kill HAV-infected skin fibroblasts in a human leukocyte antigen-restricted manner. Data show virus-specific killing by liver-infiltrating T lymphocytes in man and support the hypothesis that liver cell injury in acute HAV infection is mediated by HAV-specific CD8+ T lymphocytes and is not caused by a cytopathic effect of the virus itself.

Adult↗

A 12-year comparison of hospitalized veterans' attitudes toward smoking and smoking cessation.

A 48-item questionnaire designed to measure attitudes toward smoking and interest in smoking cessation was administered to 76 male patients hospitalized at the New Orleans VA Medical Center and the results were compared to three previous administrations of the same instrument 4, 8, and 12 years earlier. With the exception of age, most of the responses were similar to those on the previous administrations. Significant differences were found in the number of veterans over 62, the number of smokers who have been unable to quit for more than a week, those stating that they need assistance to stop smoking, and those indicating that they would participate in treatment to help them stop smoking. It appears that the aging VA patient population contains a large number of patients who are unable to stop smoking on their own and who feel they need assistance to stop smoking. Implications for VA policy are discussed.

Attitude to Health↗