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Biomedical subjects

M Feldmann

Publications and source records attributed to M Feldmann.

At least 289 records · Page 16Linked to original sources

Comparison of patterns of expression of tumour necrosis factor, lymphotoxin and interleukin-6 mRNA.

The expression of the mRNA encoding tumour necrosis factor, lymphotoxin and interleukin-6 by peripheral blood mononuclear cells was analysed. Unstimulated cells contained no detectable mRNA for these cytokines, however each mRNA was transiently expressed after stimulation with either the combination of phytohaemagglutinin and phorbol ester or the single stimulus of lipopolysaccharide. The dual stimulus yielded the stronger signal. The cytokine mRNA's had short half lives, but were stabilised following protein synthesis inhibition. Cyclosporin A completely blocked induction of lymphotoxin and partially inhibited induction of TNF and IL-6 mRNA. The features of regulation described in this paper suggest these genes belong within the "early" set of genes expressed following immune cell activation.

Cycloheximide↗

Effect of recombinant cytokines on glycolysis and fructose 2,6-bisphosphate in rheumatoid synovial cells in vitro.

Recombinant-derived human interleukin 1 (IL1) alpha and beta and interferon gamma (IFN-gamma) each produced similar increases in rheumatoid synovial cell (RSC) glycolysis, as judged by increased values for glucose uptake, lactate production and cellular fructose 2,6-bisphosphate [Fru(2,6)P2]. Measurement of Fru(2,6)P2 proved to be the most sensitive parameter for an assessment of glycolysis: IL1 alpha, IL1 beta and IFN-gamma all produced a 3-6-fold increase in this metabolite whereas tumour necrosis factor (TNF alpha) was far less effective. Prostaglandin E production was stimulated predominantly by IL1 alpha and IL1 beta rather than by IFN-gamma or TNF alpha. When combinations of cytokines were examined the addition of IFN-gamma with either IL1 alpha, IL1 beta or murine IL1 produced a synergistic increase in cellular Fru(2,6)P2. The three forms of IL1 increased Fru(2,6)P2 via the same pathway, whereas IFN-gamma acted via a different mechanism. The increase in Fru(2,6)P2 in subcultured RSC produced by addition of medium from a primary culture exceeded the maximal effects of any of the single cytokines studied, suggesting the presence of a mixture of cytokines in the primary RSC culture medium.

Arthritis, Rheumatoid↗

Excessive production of interleukin 6/B cell stimulatory factor-2 in rheumatoid arthritis.

High levels of interleukin 6 (IL 6/B cell stimulatory factor-2) were detected in synovial fluids from the joints of patients with active rheumatoid arthritis (RA). The cells found in freshly isolated synovial fluid constitutively expressed IL 6 mRNA. The synovial tissues obtained by joint biopsy were also found to produce IL 6 in vitro. Immunohistochemical analysis demonstrated that CD2+ T cells as well as CD20+ blastoid B cells in the synovial tissues produce IL 6. The data indicate that IL 6 is generated constitutively in RA and its overproduction may explain the local as well as the generalized symptoms of RA, since IL 6 can function as B cell growth and differentiation factor as well as hepatocyte-stimulating factor.

Antigens, CD20↗

Interleukin 1 (IL-1) and tumour necrosis factor synergise in the induction of IL-1 synthesis by human vascular endothelial cells.

We have demonstrated that recombinant interleukin 1 (IL-1) induces IL-1 alpha and IL-1 beta production by human vascular endothelial cells (EC) in vitro. The effect of IL-1 on EC was dose-dependent and not due to contamination by endotoxin or secondary to the production of tumour necrosis factor (TNF). Thymocyte co-mitogenesis was shown to be due to IL-1 by treating EC supernatants with neutralising antibodies specific for IL-1 alpha and IL-1 beta. Recombinant TNF alpha synergised with IL-1 in the induction of IL-1 secretion by EC. Synergy was particularly striking at concentrations of IL-1 and TNF which, when used alone, had no effect - 2 U/ml IL-1 with 10 U/ml TNF. Thus we provide more evidence that EC play an important role in the perpetuation or possibly even initiation of chronic inflammation by amplifying cytokine production initiated by small numbers of infiltrating leucocytes.

Dose-Response Relationship, Drug↗

T cells expressing gamma delta chain receptors in rheumatoid arthritis.

Whereas the majority of T cells use alpha and beta chains to form their T-cell receptor, a small minority of T cells, which do not express the CD4 or CD8 surface markers, use other chains termed gamma and delta to form their receptor. Flow cytometry was performed on cells isolated from the blood and synovial joints of patients with rheumatoid arthritis. Monoclonals which recognise the gamma and delta chains were used to compare the proportion of TCR gamma delta cells in these sites. Approximately half the patients had more TCR gamma delta in the joints than in their blood and one newly diagnosed patient had high numbers of TCR gamma delta cells in both blood and joints. In this preliminary study it is not possible to evaluate the role of these cells in the disease process, but it is of interest that in some RA patients there is an overabundance of both T cells that arise early in ontogeny (TCR gamma delta cells) and B cells that arise early in ontogeny, the CD5 B cell.

Antibodies, Monoclonal↗

Efficient propagation and cloning of human T cells in the absence of antigen by means of OKT3, interleukin 2, and antigen-presenting cells.

The analysis of T lymphocytes infiltrating tissues afflicted by autoimmune diseases may provide major clues towards understanding the pathogenesis of such diseases. Currently the best approach to studying heterogeneous populations such as T lymphocytes involves long-term culture and cloning. In order to grow and clone T lymphocytes, regular restimulation with the specific antigen is essential, otherwise growth will stop and/or specificity may be lost. In autoimmune diseases the antigens involved in triggering the immunological reaction of T cells are usually unknown. Therefore an alternative way of stimulating T lymphocytes without loss of specificity is clearly needed. Here we describe the cloning and expansion of antigen-specific T cell clones from the blood of a healthy donor to sizeable numbers of cells (greater than 10(8)) by means of anti-CD3 monoclonal antibody and recombinant IL-2. The results obtained showed that this approach can be used to clone and 'expand' T lymphocytes that retain antigen specificity over a prolonged period, in this case over 10 weeks. This technique has been used to clone and expand T lymphocytes infiltrating the affected tissues in a variety of autoimmune disorders such as Hashimoto's thyroiditis, Graves' disease, and rheumatoid arthritis, and is an efficient method of propagating T cells, by mimicking the antigenic stimulus.

Antibodies, Monoclonal↗

Pathogenetic relevance of HLA class II expressing thyroid follicular cells in nontoxic Goiter and in Graves' disease.

HLA class II expressing thyroid follicular cells are found not only in classical thyroid autoimmune diseases, such as Graves' disease, but also in presumably nonautoimmune thyroid disorders such as nontoxic goiter. In this study the immunostimulatory function of the HLA class II expressing thyroid follicular cells derived from patients with nontoxic goiter and with Graves' disease was compared by assessing their capacity to stimulate allogeneic and autologous peripheral blood mononuclear cells, as well as cultured intrathyriodal T lymphocytes. Proliferation of allogeneic peripheral blood mononuclear cells was stimulated by thyroid follicular cells from both nontoxic goiter and Graves' disease thyroids, thus demonstrating that thyroid follicular cells from both disorders are capable of presenting alloantigens. In contrast the proliferation of autologous peripheral blood mononuclear cells was more efficiently stimulated by thyroid follicular cells from Graves' disease than from nontoxic goiter. Cultured intrathyroidal T lymphocytes proliferated specifically in response to autologous HLA class II+ thyroid follicular cells in Graves' disease, but not in nontoxic goiter. The responses were dose dependent and HLA class II restricted. Thyroid autoantigen presentation by HLA class II expressing thyroid follicular cells thus only occurs in Graves' disease, suggesting that HLA class II expression on thyroid follicular cells is an essential feature, but by itself not sufficient for the induction of autoimmunity. Additional factors, the possible nature of which is discussed must also be involved.

Adult↗

Role of HLA class II and cytokine expression in rheumatoid arthritis.

HLA class II expression is notable in rheumatoid arthritis. We have investigated the mechanism of HLA class II regulation in the joints and found local synthesis, as judged by mRNA levels to be high. The role of antigen presentation in maintaining class II mRNA was explored, and blocking presentation by using monoclonal antibodies to HLA class II inhibited synthesis of mRNA for HLA-DR alpha chain. HLA class II expression is maintained by cytokines and so cytokine production in rheumatoid joints was investigated. It was chosen to use mRNA analysis by slot blotting as a screening assay, and the expression of many cytokines was detected. Levels of these were maintained in culture in the absence of extrinsic stimulation.

Antibody Formation↗

Interleukin-2 can prevent and reverse antigen-induced unresponsiveness in cloned human T lymphocytes.

The exposure of human T-cell clones to supra-immunogenic concentrations of peptide antigen in the absence of accessory cells induces antigen-specific unresponsiveness. Using this model we have investigated the ability of cytokines to modulate the induction of, or reversal of, T-cell tolerance. Our findings demonstrate that interleukin-2 (IL-2), but not interferon-gamma (IFN-gamma) or interleukin-1 (IL-1), is able to inhibit the induction of T-cell unresponsiveness in a dose-dependent fashion. Moreover, IL-2 was able to reverse established antigen-dependent T-cell unresponsiveness. In order to determine if modulation of IL-2 receptors is able to induce or abrogate unresponsiveness, the T cells were treated with anti-Tac antibody alone or together with tolerizing concentrations of antigen. Anti-Tac antibody was neither able to induce nor inhibit the induction of tolerance. The application of this model in the manipulation of immune responses is discussed here.

Antigens↗

The majority of the activated T cells in the blood of insulin-dependent diabetes mellitus (IDDM) patients are CD4+.

Twenty-five recently diagnosed insulin-dependent diabetic patients were screened for the presence of activated T lymphocytes using the anti-IL-2 receptor monoclonal antibody; thirteen had elevated levels of activated T lymphocytes. The activated cells were mostly confined to the CD4 subset, with the CD4/CD8 ratio in IL-2 receptor expressing cells averaging 5 +/- 1 (s.d.) compared with 1.3 +/- 0.3 for all T cells. In recent onset insulin-dependent diabetes blood there was no lack of CD4 CD45R+ (suppressor/inducer) T cells. The activated IL-2 receptor, expressing cells belonged to both CD4 subsets, 'helper inducer' (CD44B4) and 'suppressor inducer', (CD42H4).

Adolescent↗

Detection of activated T cell products in the rheumatoid joint using cDNA probes to Interleukin-2 (IL-2) IL-2 receptor and IFN-gamma.

Attempts to detect immune mediators in RA synovial fluids by bioassay or radioimmunoassay have yielded conflicting results, and so we have begun to analyse the complex immunological reactions occurring within the rheumatoid joint using recombinant DNA technology. High levels of Interleukin-2 (IL-2) and IL-2 receptor transcripts were found in the mononuclear cells of the rheumatoid lesions. Interferon gamma (IFN gamma) mRNA was also detected, although at lower level than IL-2. To investigate the possible relevance of IL-2 and IL-2 receptor mRNA expression to the chronicity of the disease, RA joint cells were cultured in the absence of any stimulus, and the duration of mRNA expression compared to that of blood mononuclear cells (PBM), optimally stimulated. IL-2 mRNA was found to persist in culture for many days, in contrast to its transient (less than 24 h) presence in stimulated PBM. IL-2 receptor expression was also prolonged. In contrast IFN gamma mRNA, present at biopsy in 10/12 RA samples, was found to increase significantly in vitro. These results suggest that persistent T cell activation is of importance in the pathogenesis of RA, and suggests that prolonged mediator production (IL-2 and IFN gamma) may be of importance. The elevation of IFN gamma mRNA in culture and its lower relative expression suggests that there are inhibitory immunoregulatory influences within the RA joint. To determine whether abnormal IL-2 mRNA expression may be due to a genetic defect in the region controlling IL-2 gene expression, Southern blotting analysis of genomic DNA was performed with a 5' flanking probe using normal, RA and systemic lupus erythematosis patients. No abnormalities were detected.

Arthritis, Rheumatoid↗

Regulation of clonal growth by anti-T-cell receptor antibody-directed lysis.

CD4 and CD8 T-cell clones were generated using the Mx9 monoclonal antibody (mAb), which recognizes the V beta 8 T-cell receptor (TcR) gene family. The interaction of these clones with the Mx9 antibody was analysed and all were found to be specifically stimulated to proliferate by plastic-adherent Mx9. In the presence of Mx9 or its F(ab')2 fragment, CD8+ Mx9+ clones were capable of specifically lysing the CD4+ Mx9+ T-cell clones. No lysis was seen of Mx9- T cells, or in the absence of the antibody. Conversely CD4+ Mx9+ T cells did not have lytic function. These results indicate that cross-linking of T cells via their antigen-specific receptors may initiate a unidirectional killing. Unlike previously reported lytic systems involving anti-TcR antibodies (e.g. anti-CD3), these results suggest that this mechanism may have an important physiological role in immune regulation. Anti-idiotypic antibodies have been shown to recognize T-cell receptors. These may exert profound immunosuppressive effects by inducing the lysis of the helper cells or B cells.

Cell Division↗

Heterogeneity of T cell receptor idiotypes in rheumatoid arthritis.

The nature of the T cell response in the rheumatoid synovium was investigated by using monoclonals MX9 and 42/1C1, which recognize the V beta 8 and V beta 5 T cell receptor gene families respectively. The blood and synovial T cells of ten patients with rheumatoid arthritis were compared. The majority (8/10) had different numbers of V beta 5 and V beta 8 cells in the joints from those in the blood, indicating that the T cells in the joints were not a sample of those in the blood. In three patients both V beta 5 and V beta 8 cells in the joint were augmented in number, suggesting that the T cells selectively retained in the joint were not members of a single clone, but derived from many clones. Some patients had increased levels of V beta 5 or V beta 8 alone in the joint indicating that heterogeneity existed between patients. These results are not consistent with the preferential or dominant use of a single V beta gene family in the T cells involved in the rheumatoid arthritic joints.

Arthritis, Rheumatoid↗

Interleukin-1 and tumour necrosis factor mRNA expression in rheumatoid arthritis: prolonged production of IL-1 alpha.

In rheumatoid arthritis there is a chronic immune and inflammatory reaction which can lead to the destruction of the diseased joint. Cytokine gene expression was studied in synovial cells using cDNA probes specific for human interleukin 1 (IL-1), -alpha and IL-1 beta, tumour necrosis factor (TNF), -alpha and TNF beta (lymphotoxin); protein molecules which induce cartilage degradation and bone resorption. In all cases studied, IL-1 mRNA was present in freshly isolated synovial cells from fluid or membrane. Compared to levels of IL-1 mRNA found in optimally activated normal blood mononuclear cells, the levels of IL-1 alpha mRNA were high in seven of the nine patients studied, whereas IL-1 beta mRNA, the dominant form in blood, was relatively lower. TNF alpha and TNF beta mRNA were also detected. Rheumatoid synovial cells, cultured without any stimulus, continued to express high levels of IL-1 alpha mRNA for up to 5 days, compared to the 24 h response of activated blood cells; IL-1 beta mRNA in culture was also prolonged. Cultures of rheumatoid joint cells produced IL-1 bioactivity, with roughly equal amounts of IL-1 alpha and beta, as assessed using neutralizing antibodies. TNF bioactivity was also detected which may be of importance as TNF induces the production of IL-1. The finding of these mediators produced in large amounts in active rheumatoid synovial cells suggests that mutually stimulatory cell interactions, mediated by these molecules, may be important in the chronic inflammation and tissue destruction in rheumatoid arthritis.

Arthritis, Rheumatoid↗