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Biomedical subjects

A Ridderstad

Publications and source records attributed to A Ridderstad.

At least 19 recordsLinked to original sources

Interference of eukaryotic signalling pathways by the bacteria Yersinia outer protein YopJ.

Upon contact with bacteria, eukaryotic cells activates a slurry of defence mechanisms via distinct signalling transduction pathways. However, some bacteria have evolved strategies to escape or inhibit these host defence systems. We have recently shown that the bacteria Yersinia pseudotuberculosis, which encodes the Yersinia outer protein (YopJ) appears to inhibit the activation of NF-kappaB by preventing the phosphorylation of IkappaB. In a subsequent series of experiments it has also been shown that YopJ blocks the phosphorylation of the p38 MAP kinase. Here the regulatory function of YopJ on eukaryotic signal transduction is discussed.

Bacterial Proteins↗

Kinetics of establishing the memory B cell population as revealed by CD38 expression.

In this report, we detail changes in the expression of CD38 on murine B cells during the course of a T cell-dependent immune response. CD38 is expressed on all naive B cells but is down-regulated on isotype-switched B cells from both the germinal centers (GCs) and the foci of Ab-forming cells which arise during the first weeks of the response. The down-regulation on GC B cells, however, is reversible since Ag-specific IgG1 B cells with high levels of CD38 are apparent by 2 wk postimmunization. These cells have characteristics that resemble recirculating memory B cells, in that they are small and bind low levels of peanut agglutinin. Such characteristics indicate that the restoration of CD38 levels is coincidental with the transition from GC to memory B cell. Using this observation, we plotted the development of the memory population and the demise of the GC reaction as a function of time after immunization. Our results indicate that the GC reaction ceases gradually over many weeks rather than suddenly, which corresponds with the formation of the memory B cell population. Furthermore, by segregating memory B cells and GC B cells, it was possible to assess the in vitro survival characteristics of each compared with naive B cells. These experiments demonstrated that memory B cell survival in vitro was comparable with naive B cell survival but less than the survival seen for bcl-2-transgenic B cells, whereas GC B cell survival, as expected, was very poor. Hence, by resolving murine Ag-specific memory B cells and GC B cells, we have been able to quantify the development of the memory B cell population.

ADP-ribosyl Cyclase↗

IgG2b inducing factor from rheumatoid arthritis synovial fluid synergizes with transforming growth factor-beta in promoting IgG2b antibody production in mouse B lymphocytes.

Rheumatoid arthritis synovial fluid (RA-SF) contains a distinct biological activity that selectively induces IgG2b production in LPS-activated murine B blasts. This IgG2b inducing factor (IgG2bIF) acts directly on purified LPS-activated B blasts from normal and Bruton's tyrosine kinase-defective CBA/N mice. In order to test the possibility that TGF-beta and IgG2bIF in RA-SF act in concert to induce IgG2b production, anti-TGF-beta monoclonal antibodies and RA-SF were added to LPS-activated CBA B blasts, which led to a marked reduction of IgG2b-producing cells. This result indicates that TGF-beta and IgG2bIF in RA-SF synergize in the induction of IgG2b production. TGF-beta antibodies do not inhibit IgG2b production in CBA/N B blasts, further substantiating our earlier notion that CBA/N B blasts have a higher endogenous production of TGF-beta after LPS stimulation, which might be responsible for the aberrant reactivity in btk deficient CBA/N mice. RA-SF is able to reconstitute the deficient IgG1 response in LPS- and IL-4-stimulated CBA/N B blasts. Addition of antibodies against TGF-beta had only a marginal effect on the IgG1 response, indicating that the reconstitution is mediated by another factor(s), which is present in RA-SF.

Animals↗

B cell memory in xid mice is long-lived despite reduced memory B cell frequency.

Brutons tyrosine kinase (Btk) deficient xid mice have a diminished primary T cell dependent immune response, resulting in a reduced memory B cell frequency. Boosting at 35 days post primary immunization, however, generates a normal secondary immune response, indicating a functional memory B cell compartment. The longevity of B cell memory appears to depend on both the presence of antigen and expression of cell survival genes such as bcl-2. Since there is a natural decay in the number of memory B cells over time and since xid B cells have been demonstrated to have reduced Bcl-2 levels, we aimed at determining whether B cell memory of xid mice would be long-lasting. This report demonstrates that memory B cell precursors are detectable in xid mice more than 100 days after primary immunization. Furthermore, a secondary immune response of normal magnitude and kinetics can be generated in xid mice at 150 days after primary immunization indicating that B cell memory is long-lived in xid mice. Thus, although survival of B cell memory is presumably dependent on immunoglobulin (Ig)-mediated interaction with antigen, this interaction does not depend solely on signalling through Btk.

Animals↗

Xenograft rejection of porcine islet-like cell clusters in immunoglobulin- or Fc-receptor gamma-deficient mice.

The aim of the present study was to evaluate the role of xenoreactive antibodies in islet-like cell cluster (ICC) xenograft rejection. For this purpose, normal mice, mice with a targeted disruption of the Fc-receptor (FcR) gamma-chain, or the membrane exon of the immunoglobulin mu-chain gene, were transplanted with fetal porcine ICC under the kidney capsule. Mice lacking the FcR gamma have no functional FcR for IgG or IgE. Mice with disruption of the immunoglobulin mu-chain cannot produce antibodies, because B cell development is arrested at the stage of preB cells. All animals, irrespective of recipient group, readily rejected the ICC xenograft. Analyses of the pattern of cellular infiltration revealed only minor dissimilarities between the different experimental groups. Xenograft destruction was evident on day 6 after transplantation, and a large number of mononuclear cells were found to be evenly distributed throughout the ICC graft. The majority of the infiltrating cells were large, macrophage-like cells expressing the macrophage-specific phenotype marker F4/80. CD3-positive T lymphocytes were found to be mainly accumulated in the peripheral parts of the ICC xenograft. This study has demonstrated that xenoreactive antibodies are not crucial to ICC xenograft rejection in the pig-to-mouse model.

Animals↗

The xid mutation diminishes memory B cell generation but does not affect somatic hypermutation and selection.

In this study, we examine the relationship between primary and secondary T cell-dependent immune responses using the response of xid mice to the hapten (4-hydroxy-3-nitrophenyl)acetyl (NP) as an experimental model. The reduced serologic primary immune response of xid mice was demonstrated to be caused by a substantially decreased Ab-forming cell (AFC) generation. Furthermore, the germinal center reaction in the primary xid immune response was diminished and the frequency of NP-specific memory B cells prior to secondary immunization was reduced 10-fold. Despite the poor primary response of xid mice, secondary exposure to Ag generated a response that was qualitatively and quantitatively equal to that of wt mice. The number of IgG1 AFCs in spleen and bone marrow increased equally in both groups, as did the proportion of AFCs secreting high affinity Ab in both locations. The extent and distribution of somatic mutations in the V(H) genes of xid secondary response B cells was also found to be normal, indicating that the xid gene product is not critical for the processes that result in affinity maturation. Thus, although xid mice generate memory B cells of normal phenotype but at a substantially lower frequency, this does not limit the magnitude of the secondary response. Therefore, our results imply that the reduced memory B cell frequency in xid mice is still above some threshold value necessary for a normal secondary immune response.

Animals↗

Xenograft rejection of porcine islet-like cell clusters in normal and natural killer cell-depleted mice.

Fetal porcine islet-like cell clusters (ICC) were transplanted under the renal capsule of normoglycemic normal or athymic (nu/nu) C57BL/6 mice. Control animals were implanted with allogeneic minced kidney tissue from C57BL/Ks mice. The animals were killed 6 or 14 days after transplantation and the grafts were processed for flow cytometric analyses or immunohistochemistry. Xenograft destruction was evident in normal mice on day 6 after transplantation. The majority of infiltrating cells were macrophage-like cells expressing the F4/80 antigen. Lymphocytes expressing the CD3 antigen were in minority and mainly located in the peripheral parts of the ICC xenograft. The frequency and distribution of CD4+ cells were found to resemble those of the CD3+ cells. A large number of infiltrating cells, including several macrophage-like cells, expressed the Thy 1.2 antigen. Flow cytometry of infiltrating cells in the ICC xenograft revealed that approximately half of the cells expressing the F4/80 antigen also expressed Thy 1.2 and/or CD4. No cells were found expressing both the F4/80 and CD8 antigens. Both the F4/80 single-positive and the F4/80, CD4 double-positive cells were found to be larger and more granular than the CD4 single-positive cells. No co-expression of CD4 or Thy 1.2 with the F4/80 antigen was detected on cells infiltrating allogeneic tissue grafts. Moreover, a relative large number of cells (approximately 15%) in the xenograft expressed the NK 1.1 antigen as determined by flow cytometry. The role of natural killer (NK) cells in islet xenograft rejection was further evaluated in mice depleted of NK cells, using intraperitoneal injections of the monoclonal antibody NK 1.1. The simultaneous inoculation and subsequent growth of the NK cell-sensitive beta 2-microglobulin-deficient mutant, C4.4-25-, lymphoma cell line EL-4 served as an in vivo control of NK cell depletion. However, all NK cell-depleted mice rejected the ICC xenograft. In contrast, athymic mice permanently accepted the porcine ICC xenograft but, readily rejected the NK cell-sensitive lymphoma cell line. Taken together, ICC xenograft rejection in mice seems to be T cell dependent, as evidenced in the nude mice model, while the main effector cell appears to be a macrophage with a unique phenotype.

Animals↗

Differential sensitivity to transforming growth factor (TGF)-beta of CBA and of CBA/N B cells demonstrates that the IgG2b inducing factor in synovial fluid from rheumatoid arthritis patients is not identical to TGF-beta.

Synovial fluid from patients with rheumatoid arthritis (RA-SF) contains in vivo produced cytokines and inflammatory mediators, including a factor that induces IgG2b production of lipopolysaccharide (LPS) preactivated murine B lymphocytes. In order to determine the mechanism by which RA-SF acts on LPS activated mouse B cells, CBA/N mice were used as an experimental model. The X-linked immunodeficiency of these mice is caused by a point mutation in the Bruton's tyrosine kinase (btk) gene. We have earlier shown that RA-SF can reconstitute the CBA/N B cell deficiency in vitro and in vivo, with regard to IgG2b production after LPS stimulation. Since transforming growth factor (TGF)-beta has been suggested to be a switch factor for IgG2b, we aimed at investigating the role of TGF-beta in our experimental system. We found that TGF-beta could not mimic the effect of RA-SF on CBA spleen cells. A small increase of IgG2b secretion was observed with spleen cells from normal CBA mice, whereas Ig secretion of all isotypes was suppressed in CBA/N spleen cells treated with TGF-beta at any concentration. Neutralizing antibodies against TGF-beta suppressed the response of CBA B cells, whereas the response by CBA/N B cells was enhanced by the same antibody preparation. Here we also show that the abnormal B cell responsiveness to TGF-beta, typical of CBA/N, co-segregates with the btk mutation in male (CBA x CBA/N)F2 spleen cells. This was determined by allele specific PCR recognizing the identified base substitutions of the btk gene, typical of the two strains. We propose that RA-SF contains a factor, separate from TGF-beta, that is involved in the differentiation of IgG2b expressing cells.

Agammaglobulinaemia Tyrosine Kinase↗

Human IgG rheumatoid factors and RF-like immune complexes induce IgG1 rheumatoid factor production in mice.

The synovial fluid of patients with rheumatoid arthritis (RA) was found to contain IgG and/or IgG-containing immune complexes (ICs) that stimulated an intense antibody formation when injected into mice of certain strains, notably of NZ background. The response was characterized by high and sustained levels of IgG1 antibodies with rheumatoid factor (RF) activity. In the study described, we investigated whether it is the antibodies with RF activity in the synovial fluid, that are responsible for stimulation of mouse RF in vivo. Different mouse strains were injected with synovial fluid from a seropositive RA patient (RA-SF), with human monoclonal antibodies with RF activity, with a human non-RF monoclonal antibody or with different preformed RF-like antibody-antibody (Ab-Ab) ICs. The experimental mice were monitored subsequently for IgG1 RF production. IgG1 RF antibodies were found in all strains (NZB, BALB/c and CBA) injected with Ab-Ab ICs formed at equivalence, but only in NZB using RA-SF or human monoclonal antibodies with RF activity. Optimal production of IgG1 RF by Ab-Ab ICs required the integrity of Fc and F(ab)'2 portions respectively of the antibodies; soluble and truncated ICs were less effective. Further studies demonstrated that the IgG1 RF response was not simply the result of a specific immune response against human IgG, since humoral immunity against human IgG was induced only when combined with an efficient adjuvant. During a typical adjuvant-associated primary response specific antibodies of IgM, IgG1 and IgG2a isotypes were found, i.e. quite different from the selective IgG1 response induced by RF-like containing immune complexes. This conclusion is substantiated further by the clear differences in responses to IgG containing fraction obtained from RA-SF in NZ mice compared to other strains. Our findings argue for a different type of reaction leading to the selective IgG1 response and might aid in elucidating the mechanisms for chronic production of antibodies with RF activity in patients with RA.

Animals↗

Protein-G binding material from synovial fluid of rheumatoid arthritis patients induces unorthodox autoantibodies (IgG1 rheumatoid factor) in NZB, NZW and (NZB x NZW)F1 mice.

Our previous studies have demonstrated that injection of rheumatoid arthritis (RA) synovial fluid (SF) induces a marked increase mainly of IgG1 antibody-producing cells in autoimmune disease prone (NZB x NZW)F1 mice but not in CBA mice. In the present study, the in vivo effect of RA-SF on autoantibody production was tested in different strains of mice. Injection of RA-SF induced the production of unorthodox autoantibodies (IgG1 rheumatoid factor, RF) in young (NZB x NZW)F1 mice as well as in their parental strains NZB and NZW, but not in normal mice (CBA) or in mice with severe combined immunodeficiency, indicating that the response is not caused by a conventional immune response against RA-SF material. IgG1 RF production was rapidly induced and reached high levels already on day 7 and lasted for more than 90 days. The induction of IgG1 RF was not the result of polyclonal activation, since RA-SF did not stimulate the production of other antibodies, such as autoantibodies against double-stranded DNA, bromelain-treated mouse red blood cells, myosin, transferrin, cytochrome c, thyroglobulin or myoglobin or antibodies reactive with the hapten TNP. To elucidate the identity of the active substance in RA-SF, responsible for IgG1 RF production, bound and unbound material of RA-SF, eluted from a protein-G column was injected into (NZB x NZW)F1 mice. Only the protein-G binding material was active, indicating that the effect is mediated by autoantibodies or immune complexes in the synovial fluid. Further studies demonstrated that identical concentrations of protein obtained from a pool of normal human IgG or SF from seronegative RA and non-RA arthritides patients did not contain the same activity.

Animals↗

Selective presence of IgG2b inducing factor in synovial fluid of patients with rheumatoid arthritis.

The factor, that we have defined and called IgG2b inducing factor, in synovial fluid of rheumatoid arthritis patients (RA-SF) has previously been well characterized both in vitro and in vivo revealing that RA-SF induces a significantly higher IgG2b antibody production in LPS activated murine spleen cells. This activity was separated from the hitherto identified cytokines or factors in RA-SF. In this study we have compared the IgG2b inducing activity in RA-SF with synovial fluid from patients with non-RA arthritides. Here we show that the IgG2b inducing activity is significantly enriched in patients with RA compared to patients with non-RA arthritides and it is not found in healthy, post-traumatic, control groups. We do not yet know the implications of this finding for the disease progress of rheumatoid arthritis, but we believe that the identification of this B cell differentiation factor might elucidate the mechanism leading to hyperactivation of B cells in rheumatoid arthritis.

Animals↗

Partial biochemical characterization and purification of IgG2b inducing factor as a new cytokine from synovial fluid of patients with rheumatoid arthritis.

Rheumatoid arthritis synovial fluid (RA-SF) contains a novel biological activity, which selectively induces IgG2b antibody production in lipopolysaccharide (LPS)-activated mouse spleen cells in vitro and in vivo. Our previous studies have shown that this activity is not functionally identical to other well-known cytokines and interleukins. In this study we demonstrate the partial purification and biochemical characterization of the IgG2b inducing activity in RA-SF. Biochemical characterization revealed that the IgG2b inducing activity in RA-SF has the following properties: it is a protein, sensitive to pH > 11 and < 4, which is precipitated by 50% of saturated ammonium sulphate and has a molecular weight of 50-70 kDa; it binds to Cibacron-blue and heparin and its activity is not mediated by immunoglobulins or immune complexes, which are present in RA-SF. Biochemical characteristics of the IgG2b inducing activity also differ from other cytokines and interleukins. The term IgG2b inducing factor is proposed for this novel activity.

Arthritis, Rheumatoid↗

Specific and non-specific autoreactive immunity.

Most autoimmune diseases are HLA-associated which supports the notion that they are dependent upon specific immune activation of a limited set of T cell clones. Findings which imply that induction of autoimmune reactivity probably does not differ from normal immune responses are discussed. The possibility of transferring autoimmune disease using T cell clones indicates that target structures for auto-immune attack are also present in healthy individuals. In the present article, it is argued that autoimmune reactions and immunity against nominal conventional antigens in principle are effected and regulated by similar mechanisms. It is assumed that persistent tissue damage occurs if immune attack is directed against tissues that cannot be regenerated, such as in diabetes, or are only slowly reconstituted, such as in rheumatoid arthritis. Normal immune responses are regulated by various inflammatory mediators and cytokines/interleukins. The joint of patients with rheumatoid arthritis is discussed as a model for propagation of immune reactions and tissue destruction in autoimmune disease. Of the different cytokines which are present in the synovial fluid or produced by cells in the synovial tissue, most are presumed to have originated in macrophages/monocytes such as IL-1, IL-6, IL-8, TNF-alpha and TGF-beta. Even so, T cells are believed to have an important role for the continued reactivity associated with autoimmune disease. This discrepancy can be explained in different ways. T cell products might escape detection because they are short-lived, they are immediately consumed or they are produced only during short time intervals.(ABSTRACT TRUNCATED AT 250 WORDS)

Arthritis, Rheumatoid↗

Rheumatoid arthritis synovial fluid enhances T cell effector functions.

Rheumatoid arthritis is a chronic autoimmune joint disease of unknown etiology. T cells are believed to be important in the pathogenesis of rheumatoid arthritis since they infiltrate the joints and express several activation markers, such as MHC class II and IL-2R. In this study we have elucidated the effect on freshly isolated T cells of rheumatoid arthritis synovial fluid (RA-SF), which contains in vivo produced cytokines and enzymes. The mouse mixed lymphocyte culture (MLC) has been used as a model and specific cytotoxicity was evaluated against 51Cr-labelled sensitive target cells. Studies have shown that RA-SF contains a B cell differentiation activity that can cross-react between the human and murine species. Here we have shown that the addition of RA-SF strongly potentiates cytotoxic activity as well as lymphokine production by allogeneic activated effector T cells. The enhanced cytotoxicity induced by RA-SF was found to be due to a combined effect of increased cytotoxic T lymphocyte (CTL) precursor frequency, measured by limiting dilution analysis, and a more efficient killing on a per cell basis. Kinetic studies show that RA-SF must be added within 48 h after initiation of the MLC, otherwise the effect is lost. The target cell specificity of RA-SF was studied, using enriched CD4+ or CD8+ responder cells in the MLC. It was found that RA-SF could act directly on the CD8+ cells and potentiate their development to cytotoxic effector cells: this activity was not found when CD4+ responder cells were used instead. RA-SF could, on the other hand, greatly enhance IL-2 production by CD4+ responder cells. We suggest that B and T cell activity in RA-SF is important in the propagation of chronic inflammation in the joints of patients with rheumatoid arthritis.

Animals↗

Relationship between IgG2b-inducing activity in rheumatoid arthritis synovial fluid and other well-known cytokines and inflammatory mediators.

In the present study, we sought to identify the T cell-replacing factor which selectively induces IgG2b antibody formation in lipopolysaccharide-activated mouse spleen cells in vitro and in vivo, and which is present in the synovial fluid (SF) of rheumatoid arthritis (RA) patients. The protein A plaque assay was used to measure IgM, IgG1, IgG2b, and IgG3 plaque-forming cells. An enzyme-linked immunosorbent assay was used to measure interleukin-6 (IL-6) levels in RA SF. We found that IgG2b induction by RA SF is not caused by IL-6, IL-1, or any other inflammatory cytokines or mediators, such as transforming growth factor beta, platelet-derived growth factor, nerve growth factor, fibroblast growth factor, epidermal growth factor, elastase, collagenase, and phospholipase A2. IgG2b-inducing factor in RA SF has unique biological properties compared with those of the interleukins and inflammatory mediators known to be present in RA SF.

Antibodies, Anti-Idiotypic↗

Cytokines in rheumatoid arthritis.

Joints with rheumatoid arthritis are a site for chronic inflammation involving T cells, B cells, macrophages and dendritic cells. When these cells interact cytokines are likely to be produced. The presence of different cytokines in the synovial fluid of patients with rheumatoid arthritis has been studied and the macrophage derived cytokines such as IL-1, IL-6, TNF-alpha, TGF-beta and PDGF have usually been detected in large quantities, whereas T cell produced cytokines (IL-2, IL-4, IFN-gamma) are absent or present in small quantities. IL-1, IL-6 and TNF-alpha have several functions which suggest that they participate in the chronic disease process of rheumatoid arthritis, such as increasing production of eicosanoid, collagenase and prostaglandin E2. Many synovial B cells are activated and produce large amounts of immunoglobulins. We searched for a B cell stimulatory activity in rheumatoid synovial fluid and found a B cell differentiation and helper activity. Cytokines in the joints of patients with rheumatoid arthritis seem central for the propagation of the disease process. Specific intervention in cytokine production or in its effects might help to relieve symptoms in rheumatoid patients.

Arthritis, Rheumatoid↗