Search PubMed⌕ Search

Biomedical subjects

M Feldmann

Publications and source records attributed to M Feldmann.

At least 253 records · Page 14Linked to original sources

Cells with dendritic morphology and bright interleukin-1 alpha staining circulate in the blood of patients with rheumatoid arthritis.

Freshly isolated peripheral blood mononuclear cells (PBMC) from 10 healthy volunteers, 28 patients with rheumatoid arthritis (RA), eight patients with osteoarthritis, and five patients with ankylosing spondylitis were examined for interleukin-1 alpha (IL-1 alpha) and interleukin-1 beta (IL-1 beta) production using monoclonal antibodies and an indirect immunofluorescent method. In freshly isolated PBMC from healthy controls very few cells were stained for either IL-1 type. All 20 RA patients who were not receiving parenteral gold therapy had PBMC staining for IL-1 alpha. In these patients, up to 7.5% of PBMC showed bright IL-1 alpha staining (range 1.2-7.5%). No IL-1 beta staining was seen. These IL-1 alpha-staining cells had a dendritic morphology and the percentage of cells staining correlated well with levels of C-reactive protein, an index of disease activity in these RA patients. Significantly fewer IL-1 alpha-staining cells were present in the peripheral blood of RA patients receiving gold therapy and in the blood of patients with osteoarthritis and ankylosing spondylitis. These IL-1 alpha-containing cells, circulating in the blood of RA patients and correlating with disease activity have not been previously described. These results support the idea that IL-1 alpha plays an important role in the pathogenesis of rheumatoid inflammation.

Adult↗

CD4+ T-cell clones from autoimmune thyroid tissue cannot be classified according to their lymphokine production.

In order to define whether CD4+ T cells from autoimmune and non-autoimmune thyroid tissue could be classified according to their mediator production, lymphokine production was studied in 63 thyroid-derived CD4+ T-cell clones from four patients with Graves' disease, one with Hashimoto's thyroiditis, and one with non-toxic goitre (9-12 clones per patient). The production of interleukin 2 (IL-2), gamma interferon (IFN-gamma), tumour necrosis factor alpha (TNF-alpha), lymphotoxin (LT), interleukin 6 (IL-6) and transforming growth factor beta (TGF-beta) was assessed at the mRNA level by slot-blot analysis in unstimulated clones as well as after activation with monoclonal anti-CD3 (OKT3) and IL-2. No lymphokine production was found in unstimulated clones, whereas 56% of the clones produced all six lymphokines simultaneously after stimulation. In the remaining 44% usually not more than one lymphokine was missing from the complete panel. Lymphokine mRNA concentrations varied between different clones and different patients, but, in this small sample, not between the diseases from which the clones were originated. There was a significant correlation between IL-6, LT, and IL-2 mRNA levels and T-cell helper function, which was estimated by the stimulation of thyroid microsomal autoantibody production using autologous peripheral B cells. TGF-beta and IFN-gamma mRNA expression was unrelated to T-cell help. The results demonstrate that intrathyroid T cells from autoimmune and non-autoimmune thyroid disorders cannot be classified according to their lymphokine production, unlike some results with in vitro-induced mouse T-cell clones, where two populations, Th1 and Th2, have been described. Single T cells are capable of producing a whole panel of lymphokines and thus are capable of triggering a multitude of different processes.

CD4-Positive T-Lymphocytes↗

Specific interactions between a human CD4+ clone and autologous CD4+ bifunctional immunoregulatory clones.

The cellular communications between a human CD4+ clone and autologous CD4+ clones induced with the first clone are described. The autoreactive clones proliferated after stimulation with the inducer clone, but not after stimulation with autologous clones expressing irrelevant specificities. The inducer clone markedly lost its ability to interact with the autoreactive clones after the modulation of its T-cell receptor. The proliferation of the autoreactive clones stimulated with the inducer clone was blocked by anti-DR monoclonal antibody. Collectively, these findings indicate that the autoreactive clones recognize idiotypic-like determinants on the receptor of the inducer clone in conjunction with DR antigen. The regulatory activity of the autoreactive clones was assayed by co-cultivation with their target inducer clone. The autoreactive clones were not committed to a single program, they could either suppress or enhance the proliferation of the target cells depending on the state of activation of the target cells. Activated target cells were suppressed whereas non-activated cells were enhanced. It is predicted that antagonistic cytokines released from the autoreactive clones exert differential effects on the target clone.

Animals↗

Epidermal growth factor and transforming growth factor-alpha suppress HLA class II induction in human thyroid epithelial cells.

Inappropriate expression of HLA class II by human thyroid epithelial cells (thyrocytes) occurs in autoimmune thyroid diseases where it may contribute to the pathogenesis. Several substances have been found to induce or up-regulate thyrocyte HLA class II expression in vitro. The present investigations show that the induction of HLA class II in human thyrocytes cultured with interferon (IFN)-gamma can be partially suppressed by exposure of the thyrocytes to epidermal growth factor (EGF): this occurs when the thyrocytes are treated with the two reagents simultaneously and also when the exposure to EGF is before or after that with IFN-gamma. Concentrations of EGF at least as low as 0.1 ng/ml show this inhibitory effect, which can be over-ridden by very high concentrations of IFN-gamma. Thyrocyte HLA class II expression stimulated by thyroid-stimulating hormone (TSH) (in the presence or absence of IFN-gamma) is also suppressed by EGF. Transforming growth factor-alpha (TGF alpha), which is structurally related to EGF and interacts with the same cell surface receptor, has a similar inhibitory activity on the induction of thyrocyte HLA class II expression. The existence of substances which can down-regulate, as well as those which can up-regulate, thyrocyte HLA class II expression raises the possibility that the occurrence of such expression in vivo may be determined by the balance between factors with opposing modulatory effects.

Cells, Cultured↗

Cytokine production in the rheumatoid joint: implications for treatment.

Cytokines are protein mediators that play a part in inflammation, the immune response, cell growth, repair, and fibrosis. All of these are continuing processes in active rheumatoid arthritis (RA), and so it would be expected that many cytokines would be actively produced in RA joints. Here, the molecular strategies devised to study the possible role of cytokines in the pathogenesis of RA, are reviewed and some of the initial results described. The relative abundance of various cytokines is 'catalogued' and then attention is turned to an attempt to discover which cytokines are of major importance in the pathogenesis. Neutralising antibodies to cytokines were used for that purpose, and it was found that tumour necrosis factor alpha (TNF alpha) is one of the major signals regulating the production of interleukin-1 in the RA, but not in the osteoarthritic joint. To understand further the dynamics of the cytokine network localisation of the cytokine producing cells by immunostaining--for example, TNF alpha, is currently being established.

Arthritis, Rheumatoid↗

Regulation of expression of human IL-1 alpha and IL-1 beta genes.

IL-1 gene expression was investigated in human blood mononuclear cells. IL-1 alpha and IL-1 beta mRNA were induced with LPS or TNF. Kinetic measurements on Northern blots revealed that these stimuli elicited qualitatively similar changes in IL-1 mRNA levels, and that expression of IL-1 mRNA was transient. IL-1 beta mRNA was the predominant mRNA species and remained elevated for somewhat longer than IL-1 alpha mRNA. TNF and IFN-gamma synergized to induce both species of IL-1 mRNA and IL-1 bioactivity. Transcriptional control, as measured by nuclear run on assays, partly determines the greater levels of IL-1 beta mRNA because the rate of IL-1 beta transcription was greater than that of IL-1 alpha. Cycloheximide (CHX) was able to induce IL-1 mRNA but did not induce transcription of either IL-1 gene. When added to cultures pretreated with TNF or LPS, CHX superinduced IL-1 mRNA, but IL-1 transcription was not increased. If added simultaneously CHX blocked TNF-induced IL-1 gene transcription, suggesting that TNF may induce factors required for IL-1 gene transcription. CHX increased the stability of both IL-1 alpha and IL-1 beta mRNA, demonstrating the existence of a post-transcriptional form of control. In half-life experiments IL-1 beta mRNA was more stable than IL-1 alpha mRNA, indicating that post-transcriptional control also contributes to the greater steady state levels of IL-1 beta. Taken together, the available evidence suggests IL-1 alpha and IL-1 beta mRNA are regulated differentially at both the transcriptional and post-transcriptional level.

Cycloheximide↗

Inhibitory effect of TNF alpha antibodies on synovial cell interleukin-1 production in rheumatoid arthritis.

The effect of tumour necrosis factor (TNF alpha) antibodies on synovial cell interleukin-1 (IL-1) production was investigated in 7 patients with rheumatoid arthritis and in 7 with osteoarthritis. Synovial cell IL-1 production was significantly reduced by anti-TNF alpha antibody in cultures from patients with rheumatoid arthritis, but antilymphotoxin antibody did not have this effect (except in 1 culture). In cultures from patients with osteoarthritis spontaneous IL-1 production was low, despite high concentrations of TNF alpha, and IL-1 production was not inhibited by anti-TNF alpha antibody. In rheumatoid arthritis, TNF alpha may be the main inducer of IL-1, and anti-TNF alpha agents may be useful in treatment.

Adult↗

Human T cell clones present antigen.

Two human T cells clones are described which react with influenza virus hemagglutinin type H3 and synthetic peptides of H3 when presented by PBMC APC. Both T cell clones also responded to peptide Ag in the absence of additional APC suggesting that T cells can simultaneously present and respond to Ag. T cell clones could only present peptide Ag and not an appropriate strain of inactivated whole influenza virus thus indicating an inability to process Ag conventionally. Peptide presentation by T cells was dose dependent, restricted by MHC class II Ag and was dependent on the number of Ag presenting T cells per culture. Experiments with nested peptides showed that the same epitope was recognized in the presence and absence of PBMC APC. No Ag or IL-2 from the propagation procedure was carried over into assays and two-color fluorescence-activated cell sorter analysis of each clone detected no contaminating cells with the phenotype of monocytes, macrophages or B cells; in each T cell clone, all cells expressing MHC class II Ag co-expressed CD3. These date therefore provide strong evidence that human T cell clones can simultaneously present and respond to appropriate forms of Ag.

Amino Acid Sequence↗

The detection by immunofluorescence of distinct cell populations producing interleukin-1 alpha and interleukin-1 beta in activated human peripheral blood.

An immunofluorescent staining method using specific monoclonal antibodies was used to detect IL-1 alpha and IL-1 beta in individual cells in stimulated human peripheral blood. No staining was seen in unstimulated cells but intense, maximal staining of approximately 5% of the cells was seen 20-24 h after activation with PHA/PMA. The large irregularly shaped stained cells were surrounded by smaller unstained cells with lymphocyte-like morphology. By 44 h post activation a few cells only showed weak staining. The staining pattern was different for the two molecules studied, with a granular pattern for IL-1 alpha staining and diffuse cytoplasmic staining for IL-1 beta. Staining post-activation could be abolished by preincubation of the monoclonal antibody with the appropriate recombinant IL-1, but not by pre-incubation with the other IL-1 type. When both anti-IL-1 alpha and anti-IL-1 beta were used together two populations of cells were identified; one had the granular staining as seen with anti-IL-1 alpha alone and the other had the diffuse staining pattern as seen with anti-IL-1 beta. The percentage of cells showing bright staining with anti-IL-1 alpha and anti-IL-1 beta together was approximately equal to the sum of the percentage of cells staining for IL-1 alpha or IL-1 beta alone. This study demonstrates a method for the detection of individual IL-1 alpha- and IL-1 beta- producing cells and suggests that in activated human peripheral blood IL-1 alpha and IL-1 beta are produced by separate populations of cells.

Antibodies, Monoclonal↗

Modulation of cytokine production by transforming growth factor-beta.

Transforming growth factor-beta 1 (TGF-beta 1) is one of a family of polypeptides involved in the regulation of cell growth and differentiation. The effects of human rTGF-beta 1 on the production of IL-1 and TNF by activated PBMC were studied. The addition of TGF-beta 1 alone caused an increase in the levels of mRNA for IL-1 alpha, IL-1 beta, and TGF-alpha. This was due to increased transcription rather than enhanced mRNA stability. The induced mRNA were of the appropriate size as assessed by Northern blotting. However, the mRNA did not appear to be translated into protein, inasmuch as the translation products of IL-1 beta and TNF-alpha were not detected by RIA or ELISA. Furthermore, in experiments utilizing a neutralizing antibody to TGF-beta 1, we were unable to unmask IL-1 biologic activities and unable to detect TNF biologic activity in the WEHI 164 cytotoxicity assay. TGF-beta inhibited in a dose-dependent manner the induction of IL-1 beta by LPS or TNF but not by PHA and PMA. Similarly, LPS induction of TNF-alpha was blocked by TGF-beta, whereas induction of PMA and PHA was completely resistant. TGF-beta 1 did not increase PGE2 secretion or cause elevated intracellular cAMP; thus, the inhibitory effects of TGF-beta 1 seem not to be mediated by PGE2 or cAMP, which have both been implicated in post-transcriptional control of cytokine gene expression. These findings suggest a dual role for TGF-beta 1 in the regulation of cytokine production at both transcriptional and translational levels.

Adjuvants, Immunologic↗

Increased expression of HLA-DQ antigens by interstitial cells and endothelium in the synovial membrane of rheumatoid arthritis patients compared with reactive arthritis patients.

We investigated cellular phenotypes and expression of class II major histocompatibility complex antigens on endothelium and cellular infiltrates in synovium from patients with rheumatoid arthritis (RA) or reactive arthritis, using an indirect immunoperoxidase technique. The RA specimens showed synovial lining layer hypertrophy and several focal accumulations of lymphocytes, both of which were absent in the reactive arthritis synovium. The percentage of cells expressing monocyte/macrophage markers was significantly higher in RA specimens. The percentages of cells expressing B and T cell markers were similar in both diseases. There was no significant difference in the expression of HLA-DR or DP by endothelium in the 2 diseases, but a marked increase in expression of HLA-DQ by endothelium was observed in the RA synovium versus that from patients with reactive arthritis. This overexpression of HLA-DQ was also seen in the interstitial cells of RA patients compared with reactive arthritis patients. In the reactive arthritis synovium, a significant population of cells (30%) was noted to be HLA-DR positive, and negative for macrophage and lymphocyte markers. Some of these cells had a dendritic morphology. The coexpression of HLA-DQ and HLA-DR may play an important role in antigen presentation and disease chronicity in RA.

Adult↗

Mechanism of immune complex-mediated damage: induction of interleukin 1 by immune complexes and synergy with interferon-gamma and tumor necrosis factor-alpha.

The ability of immune complexes derived from patients with type II mixed essential cryoglobulinemia to trigger the production of interleukin 1 (IL 1) was investigated. Immune complexes containing either IgM/IgG or IgA/IgG aggregates were shown to induce IL 1 production in human peripheral blood monocyte-enriched populations. Interferon-gamma alone did not induce detectable IL 1, but increased the IL 1 production induced by the immune complexes. Tumor necrosis factor-alpha, which is a potent inducer of IL 1, also enhanced IL 1 production following stimulation with suboptimal doses of the immune complex. The findings suggest that immune complexes may induce inflammation partly due to their capacity to induce the synthesis of IL 1.

Antigen-Antibody Complex↗

Interleukin 7 (murine pre-B cell growth factor/lymphopoietin 1) stimulates thymocyte growth: regulation by transforming growth factor beta.

The effects of interleukin 7 (IL7) previously known as murine pre-B cell growth factor/lymphopoietin 1 on the growth of murine thymocytes was investigated. In the presence of a suboptimal dose of phytohemagglutinin, IL7 induced a dose-dependent increase in thymocyte proliferation which was comparable to that induced by IL1. Additionally IL7 was shown to synergize with a suboptimal dose of IL1 to enhance thymocyte proliferation. Thymocyte proliferation induced by IL7, like that induced by IL1, was inhibited when either recombinant transforming growth factor (TGF) beta 1 or beta 2 were added at the initiation of culture. Interestingly, IL7-driven thymocyte proliferation was considerably less susceptible to inhibition by TGF-beta 1 or TGF-beta 2 than that induced by IL1. Taken together these results suggest IL7 may activate distinct populations of thymocytes and/or act through a pathway distinct from that utilized by IL1.

Animals↗

Comparative and combined effects of transforming growth factors alpha and beta, interleukin-1 and interferon-gamma on rheumatoid synovial cell proliferation, glycolysis and prostaglandin E production.

Enhanced cell proliferation, glycolysis and prostaglandin E production are all characteristic features of rheumatoid synovial tissue. The interrelationships of these three cellular parameters have been examined using rheumatoid synovial fibroblasts and their responses to specific cytokines in vitro. Transforming growth factor alpha (TGF alpha) caused a more than threefold increase in synovial cell proliferation whilst transforming growth factor beta (TGF beta), interleukin-1 alpha (IL-1 alpha) and interferon-gamma (IFN-gamma) produced only marginal changes. The combined addition of IL-1 alpha with TGF beta resulted in an enhanced proliferative response comparable with that produced by TGF alpha. Glycolysis, estimated by glucose utilisation and measurements of the glycolytic regulatory metabolite fructose 2,6-bisphosphate was significantly stimulated by TGF beta, IL-1 alpha and IFN-gamma, but less so by TGF alpha. Prostaglandin E production was significantly increased by IL-1 alpha to an extent much greater than that produced by TGF alpha or TGF beta, although the combined addition of IL-1 alpha with either TGF alpha or beta resulted in a synergistic increase in PGE production, a response partly diminished by the addition of IFN-gamma. These findings suggest that the extent to which a cytokine stimulates glycolysis is not consistently related to its mitogenicity, and that cytokine combinations which stimulate high levels of PGE production (a growth inhibitor) will not necessarily be associated with a reduced rate of cellular proliferation in cultured, adherent, rheumatoid synovial fibroblasts.

Biological Factors↗

The development of an epileptogenic focus. A case study with 99mTc-HMPAO SPECT.

A patient is described who developed complex partial seizures with secondary generalization 3 years after a severe viral encephalitis with a CT and EEG identified lesion in the left insular cortex and its surrounding structures. When the seizures first occurred CT and MRI as well as repeated interictal conventional EEG recordings were entirely normal. Single photon emission computed tomography (SPECT), however, revealed an area of increased 99mTc-hexamethyl propyleneamine oxime (HMPAO) uptake in the left insular cortex. After anticonvulsive therapy the seizures and the SPECT findings disappeared. 99mTc-HMPAO SPECT is a highly sensitive method for the demonstration of functional alterations in brain tissue. It can improve diagnosis of epilepsy and may provide additional information to monitor anticonvulsive therapy.

Adult↗

MS: a localized immune disease of the central nervous system.

The precise role of T cells in multiple sclerosis (MS) remains to be defined. No MS-specific antigen has been found. The autoimmune hypothesis for MS rests on immune changes seen in the spinal fluid and brain and on the demonstration, in an experimental animal model, that T cells raised to myelin basic protein transfer demyelination. In this review, Virginia Calder and colleagues focus on recent studies suggesting that in MS, the initial T-cell response occurs within the central nervous system and that the blood poorly reflects this immune activity. This contrasts with the animal model, experimental allergic encephalomyelitis, where the initial immune response is peripheral.

Central Nervous System↗