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Modulation of T3 antigen in systemic lupus erythematosus (SLE).

One of the first steps in the T cell activation is modulation of T3-Ti complex from the cell membrane. This process was studied in patients with SLE by immunofluorescence staining and measured in a cell sorter. The modulation of T3 antigen was impaired in a number of patients. The mitogen-induced proliferation was also decreased in these cases, but decreased blast transformation occurred also with efficient modulation. Pretreatment of normal T lymphocyte with sera from patients with decreased modulation caused only moderate inhibition of T3 antigen modulation. Modulation in vitro was not influenced by steroids.

Antibodies, Monoclonal↗

Modulation of the anti-acetylcholine receptor response and experimental autoimmune myasthenia gravis by recombinant fragments of the acetylcholine receptor.

Myasthenia gravis (MG) is a neuromuscular disorder of man caused by a humoral response to the acetylcholine receptor (AChR). Most of the antibodies in MG and in experimental autoimmune myasthenia gravis (EAMG) are directed to the extracellular portion of the AChR alpha subunit, and within it, primarily to the main immunogenic region (MIR). We have cloned and expressed recombinant fragments, corresponding to the entire extracellular domain of the AChR alpha subunit (H alpha1-210), and to portions of it that encompass either the MIR (H alpha1-121) or the ligand binding site of AChR (H alpha122-210), and studied their ability to interfere with the immunopathological anti-AChR response in vitro and in vivo. All fragments were expressed as fusion proteins with glutathione S-transferase. Fragments H alpha1-121 and H alpha1-210 protected AChR in TE671 cells against accelerated degradation induced by the anti-MIR monoclonal antibody (mAb)198 in a dose-dependent manner. Moreover, these fragments had a similar effect on the antigenic modulation of AChR by other anti-MIR mAb and by polyclonal rat anti-AChR antibodies. Fragments H alpha1-121 and H alpha1-210 were also able to modulate in vivo muscle AChR loss and development of clinical symptoms of EAMG, passively transferred to rats by mAb 198. Fragment H alpha122-210 did not have such a protective activity. Our results suggest that the appropriate recombinant fragments of the human AChR may be employed in the future for antigen-specific therapy of myasthenia.

Adoptive Transfer↗

Expression and regulation of the porcine CD44 molecule.

The expression and regulation of porcine CD44 were studied under various experimental conditions and in the context of lymphocyte differentiational and functional status. The CD44 molecule was subject to antigenic modulation by the anti-CD44 mAbs to different degrees depending on the type of cross-linking reagent and could be induced to shed from the cell surface. The reexpression of CD44 on papain-denuded lymphocytes was heterogeneous, as about half of the cells failed to resynthesize the molecule after prolonged culture, whereas the rest of the cells had a high turnover. Stimulation of lymphocytes by mitogens caused prolonged, dose-dependent elevation of the expression of CD44. Expression of CD44 on lymph node cells was found to be correlated with the expression of CD2 and sIgM. A CD2-CD4-sIgM-CD44-MHC Class IIhiCD45+ cell subset was identified, which was present in small numbers in lymph nodes but was enriched in gut-associated lymphoid tissues. In the thymus, CD44 expression seemed to be correlated with the differentiation status of thymocytes. In general, the expression of CD44 in the lymphoid tissues tested appeared to be related to their level of cell migration capacity.

Animals↗

Down-regulation of cell surface CD4 molecule expression induced by anti-CD4 antibodies in human T lymphocytes.

Antigenic modulation was defined as the down-regulation of a cell surface antigen expression induced by exposure to specific antibody. We investigated the modulation of CD4 surface expression in human peripheral blood lymphocytes incubated in vitro with anti-CD4 monoclonal antibodies (mAbs). Modulation of surface CD4 was achieved at 37 degrees C, but not at 4 degrees C, with five different murine anti-CD4 mAbs of IgG1 and IgG2a subclasses, with different epitope specificities. Modulation was dose dependent with a maximum at nonsaturating mAb concentration. It was reversible upon culture in mAb-free medium. It was accelerated and amplified in the presence of monocytes or after cross-linking of anti-CD4 mAbs. It could be induced with solid phase anti-CD4 mAbs, but not with soluble F(ab')2 fragments. Its magnitude was identical on all CD4+ lymphocytes. It was associated with a moderate down-regulation of CD2 and CD3 but not of CD8 and HLA class I surface expression. Modulation was slightly augmented by addition of inhibitors of the endosome/lysosome pathway but not by protein synthesis inhibitors. The anti-CD4 mAb initially bound to cell surface was no longer detectable after 24 hr of culture. Most of surface CD4 proteins complexed with antibody were rapidly internalized and transiently replaced by CD4 from an intracytoplasmic pool and then no longer were expressed. CD4 mRNA was moderately decreased in cells incubated with anti-CD4 mAb while beta-actin and beta 2-microglobulin mRNAs remained at stable levels. It was concluded that down-regulation of CD4 surface expression induced by anti-CD4 mAb concerned only a part of CD4 molecules and was associated with a decreased synthesis. The delay required to achieve maximal modulation is likely to reflect exhaustion of the intracytoplasmic recycling pool of CD4 molecules.

Animals↗

Techniques used to define human MHC antigens: serology.

The classical, routine test employed for definition of HLA antigens expressed in humans (tissue typing) is the complement-mediated cytotoxicity assay developed by Terasaki and McClelland in the early 1960s. In both healthy persons and patients, the assay target cells are usually lymphocytes obtained from peripheral blood, but when typing cadaver donors, splenic or lymph node lymphocytes can be used. HLA-A, B, Cw (class I) antigens are expressed on all nucleated cells while HLA-DR, DQ (class II) are restricted to B lymphocytes and immune activated cells. Tissue typing has been achieved using culture cells from amniocentesis and typing of cell lines is possible with small modifications to the standardised cytotoxicity assay. Usually, target cells are incubated under oil with typing antisera at 22 degrees C in a 60- or 72-well Terasaki tray. After 30 min rabbit serum is added as a source of complement. After a further 60 min incubation the test is stained. A positive reaction results in target cell death. There are local variations to this test. Automation of the assay is now commonplace, from reagent dispensing to automated reading of finished assay. The use of antibody-coated magnetisable microspheres has enabled separation of pure B lymphocyte samples for class II typing and has reduced incubation times through antigen modulation. It is possible to define antibodies to HLA antigens in the same assay using target cells with known HLA phenotypes.

Complement System Proteins↗

Clinical and immunologic observations in patients with AIDS-related complex treated with IMREG-1.

An immunomodulator, IMREG-1, derived from human leukocyte dialysates exerts a variety of effects on the cell-mediated immune system, including acceleration and amplification of delayed hypersensitivity to recall antigens, modulation of gamma-interferon production in response to antigen, and enhanced expression of the p55 portion of the receptor for interleukin-2 on CD4+ cells. On the basis of initial studies of IMREG-1 in patients with AIDS-Related Complex (ARC), a multicenter randomized, double-blind, placebo controlled trial of this agent was carried out. The results indicate that patients who received IMREG-1 had a lower risk of progression to frank AIDS than those who received placebo. A decline in the rate of reduction of numbers of CD4+ cells, as well as fewer symptoms were also observed in patients who received IMREG-1 as compared with placebo.

AIDS-Related Complex↗

MHC class I antigen processing regulated by cytosolic proteolysis-short cuts that alter peptide generation.

Cytotoxic T lymphocyte (CTL)-mediated immune responses rely on the efficiency of MHC class I ligand generation and presentation by antigen presenting cells (APCs). Whereas the abnormal expression of MHC molecules and transporters associated with antigen processing (TAPs) are commonly discussed as factors that modulate antigen presentation, much less is known about possible regulatory mechanisms at the level of proteolysis responsible for the generation of antigenic peptides. The ubiquitin-proteasome system is recognized as the major component responsible for this process in the cytosol and its activity can be regulated by cytokines, such as IFN-gamma. However, new evidence suggests the involvement of other proteases that can contribute to cytosolic proteolysis and therefore, to the quality and quantity of antigen production. Here, we review recent findings on an increasing number of proteolytic enzymes linked to antigen presentation, and we discuss how regulation of cytosolic protease activities might have implications for immune escape mechanisms that could be used by tumor cells and pathogens.

Animals↗

A unique human B lymphocyte antigen defined by a monoclonal antibody.

We produced a hybridoma designated 4G7 from a mouse immunized with chronic lymphocytic leukemia cells. The 4G7 hybridoma secretes an IgG1 antibody that is specific for normal and malignant B lymphocytes. Using dual color immunofluorescence staining, this antibody reacted with all immunoglobulin-positive cells but no T cells in normal peripheral blood. There was no detectable 4G7 antigen on monocytes, platelets, red cells, granulocytes, or phytohemagglutinin-activated T cells. When PBL were depleted of 4G7 positive cells and stimulated with pokeweed mitogen, secreted immunoglobulin levels fell to less than 10% of control values on Day 5 and less than 1% of control on Day 7. This antibody was reactive with 155 of 176 B lineage neoplasms on which it was screened. Thirty-five cases of myeloid or T-lymphoid malignancy were negative. Our studies show that the 4G7 antigen modulates in the presence of excess antibody. Free 4G7 antigen was not found circulating in human serum. The cell surface antigen identified by 4G7 was sensitive to pronase proteolysis but resistant to trypsin and chymotrypsin digestion. A comparison of 4G7 with other known B-cell antibodies indicates that the 4G7 antigen has not been previously identified. This antibody is of use for the identification of normal B lymphocytes, the study of B-cell differentiation, and the characterization of lymphoid malignancies.

Animals↗

Therapeutic potential of monovalent monoclonal antibodies.

One therapeutic use for monoclonal antibody technology is the elimination of categories of unwanted cells by virtue of their distinct cell surface antigens. The efficiency of cell destruction by complement lysis or opsonization depends on a number of factors such as antibody specificity and isotype as well as certain properties of the target antigen. In some instances cells can escape destruction by redistributing and eventually losing the antigen-antibody complexes from their surface. This process, known as antigenic modulation, generally depends on bivalent antibody binding. Starting from the observation that rabbit antisera can be made more effective at killing tumour cells if they are first rendered univalent by limited proteolysis, we have now prepared a number of monovalent rat monoclonal antibodies to human cell-surface antigens. We find that these antibodies are no longer able to bring about modulation of their target antigens and have an enhanced facility for lysis with human complement. These special properties should greatly increase the therapeutic potential of monoclonal antibodies.

Agglutination↗

Lead, a major environmental pollutant, is immunomodulatory by its differential effects on CD4+ T cells subsets.

Studies were undertaken to address the necessity of B-T cell contact for the enhancement of B cell differentiation caused by the heavy metal lead (Pb). Membrane segregated cultures were used so that the influences of direct B-T cell contact and T cell factors on B cell differentiation could be independently evaluated. B-T cell contact was not absolutely required for Pb's enhancement of B cell maturation to antibody forming cells (AFCs); however, enhancement of the AFC response by Pb was optimal when B-T cell interactions were allowed. These results were corroborated by use of anti-L3T4 (mouse CD4) to block CD4+ T cell-B cell interaction. Blockade of B-T cell contact with anti-L3T4 did not inhibit the enhancement of the AFC response by Pb. Additional experimentation showed that Pb enhanced the AFC response and Ig production in the presence of antigen-specific T cell help, suggesting that Pb enhances B cell differentiation by augmenting cognate help rather than by inducing a response to Pb-altered-self. In studies employing antigen-specific T cell clones, Pb was found to differentially modulate antigen presentation to TH1 versus TH2 T cell clones, in that TH1 activation was inhibited and TH2 activation was enhanced by Pb.

Animals↗

Transitional cell carcinoma of the bladder. Differences between primary tumour and following relapses.

The presence of tumour-associated antigens in bladder carcinomas has been shown in leucocyte migration inhibition and lymphocyte stimulation using formalin-treated autologous tumour cells as antigen. The treatment of patients with an in vitro produced specific transfer factor enhances their reactivity in these tests. However, when tumour cells from relapses were substituted for those of the primary tumour, the reactivity previously observed was abolished. An antigenic modulation and/or a polymorphic expression of bladder tumour-associated antigens in secondary tumours is suggested and might be responsible for some immunological escapes.

Antigens, Neoplasm↗

Evidence that nonlymphoid tissue injury in acute graft-versus-host disease is limited to epithelial cells aberrantly expressing MHC antigens.

To explore the relationship between aberrant MHC antigen expression and tissue injury in acute graft-versus-host disease, we performed a sequential histological and immunohistochemical analysis of multiple tissues in acute GVHD generated across complete MHC and multiple minor H incompatibilities in the rat. Two patterns of MHC antigenic modulation were recognized. Aberrant MHC class I and class II antigen expression occurred simultaneously on the epithelial cells of nonlymphoid target tissues early in acute GVHD. This coincided with a lymphoproliferative phase that preceded nonlymphoid tissue injury. The extent of epithelial class II antigen induction predicted the extent of subsequent histological injury. Changes in MHC class II antigen expression were also seen on nonepithelial cells. Interstitial dendritic cells (IDCs) expressing recipient MHC class II antigens increased in both target and nontarget tissues during early GVHD. Recipient class II antigens were also induced on large numbers of microglialike cells in the brain and Kupffer cells in the liver. However, tissue injury did not follow MHC class II antigen induction on nonepithelial cells. These findings are consistent with a role for aberrant epithelial MHC antigen expression in nonlymphoid tissue injury in acute GVHD.

Animals↗

Altered tumor growth in vivo after immunization of mice with antitumor antibodies.

A comparison has been made between the growth patterns of two spontaneously appearing mammary adenocarcinomas in murine bone marrow radiation chimeras and in mice preimmunized with monoclonal antibodies (MAb) detecting embryo-associated antigenic determinants. A correlation was seen between the ability of the embryo-immunized chimeras to produce cytotoxic antibody to the tumors, as assessed by an antibody-dependent cellular cytotoxic assay, and the permissiveness of the mice for growth of a tumor transplant. In addition, mice deliberately preimmunized with cytotoxic MAb (antibody-dependent cellular cytotoxic assay) allowed more rapid growth specifically of that tumor earlier found to be most sensitive to the MAb used for immunization. By comparing the changing antigenic phenotype of tumor cells serially passaged through different immunized, nonimmunized mice, evidence was found suggesting that immunization could cause either antigen modulation of transferred tumor cells or a (transient) selective advantage to antigenically discrete subpopulations within the heterogeneous tumor population. Finally, we have studied the growth pattern of tumor cells transplanted into mice immunized with rabbit antibodies directed against the murine MAb. In this case, tumor growth was slowed preferentially for the tumor reactive with the specific MAb, and again, predictable changes in the antigenic spectrum of tumor cells harvested from these animals were observed. Our overall findings are interpreted in terms of the involvement of networks of antibodies reacting with embryo-associated antigens in the regulation of growth of the murine mammary adenocarcinomas studied.

Adenocarcinoma↗

[A bispecific monoclonal antibody with versatile adaptor mediating different cytotoxicities].

Bispecific monoclonal antibody (bsMAb), secreted by hybrid-hybridoma, has an intact 1g molecule construction with dual antigen binding specificities. bsMAb has several advantages over conventional conjugate in tumor targeting therapy: (1) The damage to both antibody and tumoricidal agents due to chemical crosslinking can be avoided. (2) The antigen modulation can be decreased due to monovalence binding of bsMAb with target antigen. (3) The binding affinity between Fc fragment of bsMAb with heterogenous heavy chains and Fc receptor is decreased, so that nonspecific distribution and side effects can be reduced. (4) The bsMAb can pretarget to tumor site, increasing the T/NT ratio and cytotoxicity. In the present study, A bsMAb with versatile adaptor was designed. In this bsMAb, one arm could react with gastric cancer-associated antigen, and the other with a hapten TNP. The bsMAb could mediate different tumoricidal agents crosslinked to TNP. A variant hybridoma 3H11-HAT(s) secreting McAb against gastric cancer was fused with spleen cells of mice immunized with KLH-TNP. After screening and subcloning, 10 hybrid-hybridomas were obtained, which secreted antibodies against both gastric cancer target cells BGC823 and BSA-TNP. By using special bridge method, only hybrid-hybridomas 6A3 (gamma 2b, mu), and 1G7 (gamma 2b, gamma 2b) were confirmed to secrete bsMAb. Further experiments showed that the bsMAb 6A3 and 1G7 could mediate different cytotoxicities, for example, Ricin-TNP, MMC-HSA-TNP and ADM-BSA-TNP. This system is useful for evaluating different tumoricidal agents in bsMAb targeting therapy, and has potential value in clinics.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Modulation of antigen-antibody complexations by immunoglobulins.

In this investigation, the modulating effects of non-immune human IgG and rheumatoid factors (RFs) on antigen-antibody complexations were studied. Non-immune human IgG, as well as RF, were found to inhibit the binding of antigen to specific antibodies of both human and rabbit origin. In addition, human immunoglobulins were also able to modify the composition of preformed antigen-antibody complexes. The effects were detected by immunological methods in two different antigen-antibody systems (human serum albumin-rabbit anti-HSA and tetanus toxoid-human anti-TT). Changes in biological activities could be followed by employing enzymes (glucose-6-phosphate dehydrogenase and human placental alkaline phosphatase) as antigens. The outcome of the effects was found to be dependent on the ratio of antigen to antibody, the antigen-binding properties of the antibody and its origin, and on the properties of the immunoglobulins added. The observed changes could not be explained only by the presence of specific antibodies in the immunoglobulin preparations. The ability of immunoglobulins to modulate antigen-antibody complexations may provide a rationale for the large amounts of non-specific immunoglobulins in the circulation by preventing premature precipitation and promoting the elimination of antigenic molecules.

Albumins↗

Prolonged allograft survival but no tolerance induction by modulating CD28 antibody JJ319 after high-responder rat heart transplantation.

BACKGROUND: Allograft rejection depends on T cell immune responses requiring antigen recognition and costimulatory signals through accessory T cell receptors, including CD28. Inhibition of CD28 signaling with a CTLA-4-immunoglobulin (Ig) fusion protein has resulted in immunosuppression and occasional T cell anergy in mouse transplant models, but not in rats. Because this approach also inhibits a potentially tolerizing signal through CTLA-4, selective blockade of CD28 ligation might induce more profound immunosuppression and transplant tolerance. METHODS: The effects of escalating doses of the rat CD28 monoclonal antibody JJ319 on allograft survival were studied after vascularized heterotopic heart transplantation in a high responder strain combination (DA to Lewis). CD28 antigen modulation and circulating antibody levels were monitored by flow cytometry. RESULTS: CD28 antibody JJ319 markedly prolonged cardiac graft survival compared with untreated controls (7 days, range: 6-8). A strictly dose-dependent increase in median graft survival time was demonstrated with a maximum of 36 days (range: 30-40; p <0.001) after the administration of 8 x 1 mg JJ319 i.p. (days -1 to +6 before/after transplantation). However, indefinite graft survival and tolerance could not be induced by JJ319 treatment. At the maximal dose, flow cytometry showed complete down modulation of the CD28 receptor for 10-14 days without T cell depletion in close temporal relation to antibody presence in serum. In vitro, CD28-modulated T cells showed significantly reduced responses to activation. CONCLUSIONS: CD28 antibody JJ319 induces profound immunosuppression after rat heart transplantation, however without development of transplant tolerance. The underlying mechanism seems to be receptor modulation during primary alloantigen recognition. While still potentially applicable clinically, there are no qualitative or quantitative differences to the treatment with CTLA-4/lg or the blockade of CD2 or LFA-1, as reported elsewhere. Thus, a CD28-modulating approach seems not to allow therapeutic exploitation of a tolerizing signal delivered by CTLA-4 but may still be clinically applicable, especially in combined immune interventions.

Abatacept↗

Surface phenotype analysis of human monocyte to macrophage maturation.

Cells of the mononuclear phagocyte system arise from circulating blood monocytes. Upon emigration from the vasculature, monocytes differentiate into macrophages, a process that monocytes similarly undergo in vitro. We have established primary cultures from elutriated or adherence-purified blood monocytes and analyzed the antigenic modulation during monocyte to macrophage transformation, which could be followed by the expression of specific antigens and which required as yet unknown inducer signals present in the serum. It is shown that in the absence of serum monocytes only survive in vitro when cultured adherent to plastic but rapidly die in suspension culture. Starting at 0.5%, serum induced maturation dose-dependently, with the optimal concentration being 2 to 5%. Of those antigens not present on monocyte, the low-affinity Fc receptor (CD16), the alpha-chain of the vitronectin receptor (CD51), gp65-MAX.1, and gp68-MAX.3 were expressed only upon serum-induced macrophage differentiation, whereas the transferrin receptor (CD71), MAX.26, and to some degree also gp65-MAX.11 appeared to be independent of maturation and were also found on primary cultures of adherent monocytes under serum-free conditions. In addition, the rapid induction of HLA class II antigens (within 24 hr) was similar with and without serum, as was the continued high-density expression in long-term culture. The monocyte-specific CD14 antigen was down-regulated in the absence of serum but kept its level of expression on differentiated macrophages. In comparison, alveolar and peritoneal macrophages, respectively, differed in their antigenic phenotype: Alveolar macrophages expressed high HLA class II antigens but low CD14, whereas for peritoneal macrophages the opposite was found. Both interferon-gamma and -alpha suppressed macrophage maturation in vitro but had contrary effects on HLA class II and CD16 expression: Interferon-gamma up-regulated the two types of antigens, which, in contrast, were down-regulated by interferon-alpha.

Antigens, Surface↗

Screening of HIV infection: role of molecular and immunological assays.

Due to technical improvements and new developments of immunological assays, the reliability of serological laboratory diagnosis of HIV infection has improved considerably and the residual risk, due to the diagnostic window for transfusion-transmitted HIV, has been reduced significantly. Through the addition of nucleic acid amplification tests (NAT) to blood donor screening, the residual risk can de further decreased by up to 50%, depending on the sensitivity of the NAT protocol and whether individual or pooled blood donations are screened. In-house and commercially available NAT have been implemented in blood banks as HIV only or multiplexed HIV and hepatitis B or C virus assays. As an alternative to separate antigen and antibody screening, combined fourth-generation assays have been developed in 1997, and have achieved a high degree of sensitivity and specificity. Thus, they can replace stand-alone antigen and third-generation antibody assays. While they are used in the routine diagnostics of HIV infection in many countries throughout the world, they probably represent no alternative for NAT in blood-donor screening in industrialized countries. In the next few years, technical improvements will further simplify NAT screening. While there is still some potential to improve the detection threshold of NAT, the sensitivity of the antigen module of fourth-generation assays (a lowest concentration of 3-5 pg of p24 antigen) is probably very close to its technical limit.

Blood↗