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Biomedical subjects

S V Kaveri

Publications and source records attributed to S V Kaveri.

At least 37 records · Page 2Linked to original sources

Antibodies to the FVIII light chain that neutralize FVIII procoagulant activity are present in plasma of nonresponder patients with severe hemophilia A and in normal polyclonal human IgG.

We have analyzed the properties of anti-factor VIII (FVIII) immunoglobulin (Ig) G recovered by affinity chromatography on FVIII-Sepharose from the IgG fraction of the plasma of healthy individuals and nonresponder patients with hemophilia A. Affinity-purified anti-FVIII antibodies were found to neutralize FVIII activity and to bind to FVIII with an affinity similar to that of anti-FVIII IgG that had been affinity-purified from the plasma of inhibitor-positive hemophilia patients and of patients with anti-FVIII autoimmune disease. The antibodies also exhibited patterns of reactivity with thrombin-digested FVIII similar to those of FVIII inhibitors and preferentially recognized epitopes located in the light chain of FVIII. These observations suggest that FVIII inhibitors occurring in hemophilia A and in patients with anti-FVIII autoimmune disease originate from the expansion of preexisting natural anti-FVIII clones that exhibit FVIII-neutralizing properties.

Antibodies↗

Altered control of self-reactive IgG by autologous IgM in patients with warm autoimmune hemolytic anemia.

Warm autoimmune hemolytic anemia (WAIHA) is characterized by an accelerated clearance of red blood cells (RBCs) associated with the presence of anti-RBC immunoglobulin (Ig)G autoantibodies. In the present study, we analyzed the self-reactive IgG and IgM antibody repertoires of patients with WAIHA using a technique of quantitative immunoblotting on a panel of whole tissue extracts as sources of self-antigens. Data were compared by means of multiparametric statistical analysis. We demonstrate that self-reactive antibody repertoires of IgG purified from plasma and of IgG purified from RBC eluates do not differ between healthy donors and patients with WAIHA, whereas autoreactive repertoires of IgM from patients exhibit broadly altered patterns of reactivity as compared with those of healthy controls. We further demonstrate that IgG purified from eluates of RBCs of healthy donors induces agglutination of RBCs in an indirect Coombs assay to a similar extent as IgG purified from eluates of RBCs of patients with WAIHA. The capability of IgG to induce agglutination of RBCs is suppressed in unfractionated eluates of healthy donors' cells, whereas it is readily found in unfractionated eluates of patients' RBCs. IgM is an essential factor in controlling the ability of IgG in unfractionated RBC eluates to induce agglutination of RBCs. These observations indicate that anti-RBC IgG autoantibodies of patients with WAIHA share extensive similarity with natural antiRBC autoantibodies of healthy donors and suggest that defective control of IgG autoreactivity by autologous IgM is an underlying mechanism for autoimmune hemolysis in WAIHA. (Blood. 2000;95:328-335)

Adult↗

Mechanisms of action of intravenous immunoglobulin (IVIG).

Therapeutic preparations of pooled normal polyspecific immunoglobulin G for intravenous use (intravenous immunoglobulin, IVIG) have been shown to be effective in the treatment of a number of autoimmune and systemic inflammatory conditions. IVIG prevents the occurrence of experimental autoimmune encephalomyelitis. Increasing evidence suggests that IVIG is of benefit in patients with relapsing-remitting multiple sclerosis. The present review discusses the immunoregulatory properties and mechanisms of action of IVIG in autoimmune disease.

Antibodies↗

Neutralization of disease associated autoantibodies by an immunoglobulin M- and immunoglobulin A-enriched human intravenous immunoglobulin preparation.

Immunoglobulin preparations enriched with IgM and IgA are used in the therapy of severe bacterial infections and for the treatment of acute graft-versus-host disease, but not as yet, in the treatment of autoimmune diseases. We investigated the potential of an IgM- and IgA-enriched immunoglobulin preparation to neutralize activity autoantibodies from patients with autoimmune diseases. We demonstrate that Pentaglobin(R) was at least as effective as intravenous immunoglobulin (Sandoglobulin(R)) in inhibiting autoantibody activity. Each of the immunoglobulin isotypes present in Pentaglobin(R) may be responsible for the inhibitory effect. Pentaglobin(R) immobilized on an affinity matrix retained the disease associated autoantibodies and interacted with F(ab')2 fragments of IgG autoantibodies. Suppression of autoantibody activity is dependent, at least in part, on idiotypic interactions. The present findings provide a rationale for considering these preparations for the immunomodulation of autoimmune disease.

Autoantibodies↗

Polyreactivity of disease-associated anti-RBC IgG autoantibodies of patients with warm autoimmune haemolytic anaemia and natural anti-RBC IgG autoantibodies of healthy individuals.

Anti-red blood cell (RBC) immunoglobulin G (IgG) autoantibodies are present in patients with warm autoimmune haemolytic anaemia (WAIHA), and, as natural autoantibodies, in healthy individuals. This study investigated whether the feature of polyreactivity discriminates disease-associated from natural anti-RBC IgG autoantibodies. The patterns of reactivity of purified anti-RBC IgG eluted from the RBC of WAIHA patients and from the RBC of healthy individuals were analysed using quantitative immunoblotting on a panel of whole human tissue or bacterial cell extracts as antigen sources. In parallel, the reactivity patterns of IgG purified from plasma were analysed. Anti-RBC IgG of WAIHA patients and of healthy individuals recognized a wide range of self- and nonself-antigens. The reactivity patterns of anti-RBC IgG were homogeneous among patients and controls, did not differ between patients and controls, and were similar to those of IgG purified from plasma in the case of both patients and healthy individuals. The data demonstrate that the anti-RBC IgG autoantibodies of WAIHA patients share extensive similarity with those of healthy individuals. Polyreactivity is a common feature of both disease-associated and natural anti-RBC IgG autoantibodies.

Aged↗

Is cancer an autoimmune process dependent on anti-apoptotic autoantibodies?

Dysregulated apoptosis is a potentially important mechanism in the pathogenesis of cancer. Autoantibodies, which inhibit apoptosis, have recently been identified in patients with malignant diseases. We suggest that such inhibitory autoantibodies participate in tumorigenesis. These views may provide a basis for the increased incidence of cancer in patients with autoimmune diseases and have novel therapeutic implications for cancer.

Apoptosis↗

Natural antibodies to factor VIII.

Anti-factor VIII antibodies represent a unique model to study the relationship between natural autoreactivity (natural antibodies to factor VIII of healthy individuals), disease-associated autoimmunity ("spontaneous" factor VIII inhibitors of patients with anti-factor VIII autoimmune disease) and antigen-driven immune responses (immune inhibitors in multitransfused patients with hemophilia A) to a single human protein antigen. Although natural and disease-associated anti-factor VIII antibodies are not readily distinguished based on the comparison of their isotypic distribution and epitope mapping, available studies of cross-reacting idiotypes suggest that factor VIII inhibitors in patient's plasma encompass two populations of anti-factor VIII antibodies. Some antibodies result from the clonal expansion of B lymphocytes that exist before treatment with factor VIII and secrete anti-factor VIII antibodies with properties similar to those of natural anti-factor VIII antibodies present in healthy individuals; other inhibitors are produced by B cell clones that have undergone affinity maturation and hypermutation of the V regions of the antibodies they produce. The implications for the treatment of patients with anti-factor VIII inhibitors are discussed.

Antibodies, Anti-Idiotypic↗

[Immunomodulatory effects of intravenous immunoglobulins].

Intravenous immunoglobulin (IVIg) has been used for many years in the treatment of primary and secondary antibody deficiencies. IVIg was first demonstrated to be effective in auto-immune desorders twenty years ago in the treatment of idiopathic thrombocytopenic purpura. The beneficial effect of IVIg has since been established in the Guillain-Barré syndrome, chronic inflammatory demenilating polyneuropathy, myasthenia gravis, dermatomyositis, Kawasaki syndrome and graft versus host disease. The beneficial effect of IVIg has been suggested in a large number of other auto-immune and systemic inflammatory conditions. The mode of action of IVIg is complex, involving Fc receptor blockade, interference with complement activation and the cytokine network, provision of anti-idiotypic antibodies and modulation of T and B cell activation and differentiation. Such a broad range of activities reflects the function of normal circulating immunoglobulins in maintaining tolerance to self in healthy individuals.

Adjuvants, Immunologic↗

[Modulation of experimental myasthenia gravis by IVIg].

Myasthenia Gravis (MG) is an autoimmune disease mediated by antibodies directed against the acetylcholine receptor (AChR). Treatment by IVIg is effective in acute forms of myasthenia gravis. In order to determine the in vivo effects of the various fractions of human immunoglobulins, we used an experimental model of myasthenia gravis in SCID mice. To this end, thymic cells from MG patients are transferred to these mice according to a well defined protocol. When establishing of the model, we noticed the appearance of anti-AChR antibodies and the loss of AChR expression at the muscle level. After treatment with IVIgG or IVIgM, the mice displayed a lower anti-AChR antibody titer compared to control mice (albumin treated) and the loss of the AChR number at the muscle was significantly reduced. These results obtained from one MG patient indicate that the human immunoglobulin preparations induce significant effects on pathogenic parameters in the SCID mouse model. Therefore this model is interesting to approach the mechanisms of action of human immunoglobulins and deserves further investigation.

Acetylcholine↗

Factor VIII inhibitor with catalytic activity towards factor VIII.

Hemophilia A is an X chromosome-linked recessive disorder resulting in defective or deficient factor VIII (FVIII) molecules, which, in its severe form, is a life-threatening, crippling hemorrhagic disease. Infusion of purified FVIII to patients with severe hemophilia A results in approximately 25% of the cases in the emergence of anti-FVIII antibodies (inhibitors) that are known to neutralize the procoagulant activity of FVIII by steric hindrance. We recently reported on the proteolysis of FVIII by alloantibodies in the plasma of two high responder patients with severe hemophilia A, demonstrating a new mechanism by which FVIII inhibitors may prevent the pro-coagulant function of FVIII. Hemophilia is the first model in which a direct link between the hydrolysis of the target molecule and the occurrence of clinical manifestations has been established. It also represents the first example in humans, of the induction of catalytic antibodies following the exogenous administration of an antigen. The characterization of FVIII inhibitors as site-specific proteases may provide new approaches to the treatment of inhibitors.

Amino Acid Sequence↗

Idiotypic regulation of anti-factor VIII antibodies.

This review focuses on the relationship between natural autoreactivity, autoimmunity in disease and antigen-driven immune responses to factor VIII and on idiotype-mediated immune regulation of anti-factor VIII antibodies in health and disease.

Antibodies, Anti-Idiotypic↗

Antibody-mediated remyelination: relevance to multiple sclerosis.

Intravenous immunoglobulin (IVIG) is widely used for treatment of autoimmune neurological disorders and is currently in clinical trials as a therapy for multiple sclerosis. We have previously demonstrated that certain mouse monoclonal antibodies of the IgM isotype, promote significant remyelination when administered to mice with chronic Theiler's murine encephalomyelitis virus-induced demyelinating disease. These IgM antibodies bind to antigens expressed on oligodendrocytes. We now demonstrate that polyclonal human IgG (IVIG) and polyclonal human IgM also promote remyelination in this system. Although both polyclonal human IgG and IgM promote remyelination, IgM is more potent. Polyclonal human IgM also differs from human IgG in its ability to bind strongly to antigens expressed in the CNS and by oligodendrocytes. We propose that polyclonal IgG and polyclonal IgM may function to promote remyelination by different mechanisms. IVIG may function based on its immunomodulatory activity, while the activity of IgM is critically dependent upon its reactivity with CNS antigens. This possibility has clear relevance to the use of antibodies as a therapy for multiple sclerosis, suggesting that combined treatment with antibodies exerting immunomodulatory activity, in concert with antibodies that function through direct binding to CNS antigens, may synergize to enhance the efficacy of the therapy.

Animals↗

Phosphorylation of Bcl-2 and mitochondrial changes are associated with apoptosis of lymphoblastoid cells induced by normal immunoglobulin G.

Normal human immunoglobulin G induces apoptosis in human lymphoblastoid cells which involves antibody-mediated Fas ligation and the activation of caspases. Here, we show that Bcl-2 is phosphorylated on serine upon treatment of CEM T cells with normal IgG and that the overexpression of Bcl-2 in stable transfectants of CEM T cells prevents IgG-induced cell death. Treatment of CEM cells with normal IgG also results in a reduction in mitochondrial transmembrane potential and in the release of cytochrome c (Cyt c) into cytosol. The findings are concordant with earlier observations that apoptosis induced by IgG is associated with the activation of caspases. Our results demonstrate that Bcl-2 controls apoptosis induced by normal IgG and support a central role for Bcl-2 and mitochondria in antibody-mediated selection of lymphocyte repertoires.

Apoptosis↗

Normal human serum contains natural antibodies reactive with autologous ABO blood group antigens.

It is widely accepted that the serum of healthy individuals contains natural antibodies only against those blood group A or B antigens that are not expressed on the individual's red blood cells. The mechanisms involved in tolerance to autologous blood group antigens remain unclear. In the present study, we show that IgM and IgG antibodies reactive with autologous blood group antigens are present in the immunoglobulin fraction of normal human serum. Natural IgG anti-A antibodies purified by affinity chromatography from IgG of individuals of blood group A exhibited an affinity for A trisaccharide antigen in the micromolar range and agglutinated A red cells at sixfold higher concentrations than those required for agglutination with affinity-purified anti-A IgG of individuals of blood group B. Whereas autoantibodies reactive with self A and B antigens are readily detected in purified IgG and IgM fractions, their expression is restricted in whole serum as a result of complementary interactions between variable regions of antibodies. These observations suggest that tolerance to autologous ABO blood group antigens is dependent on peripheral control of antibody autoreactivity.

ABO Blood-Group System↗

Inhibition of cell adhesion by antibodies to Arg-Gly-Asp (RGD) in normal immunoglobulin for therapeutic use (intravenous immunoglobulin, IVIg).

Intravenous immunoglobulin (IVIg) therapy is associated with a broad range of immunomodulatory activities. Several of the postulated mechanisms of IVIg action relate to the presence of antibodies to molecules relevant for regulation of the immune response. This article reports that IVIg contains antibodies to the Arg-Gly-Asp (RGD) sequence, and the attachment site of a number of adhesive extracellular matrix proteins, including ligands for beta1, beta3, and beta5 integrins. Anti-RGD antibodies were identified in IVIg by enzyme-linked immunosorbent assay and by using the BIAcore (BIAcore, Uppsala, Sweden) technology. The affinity of anti-RGD antibodies to a synthetic RGD-containing peptide and to fibronectin (Fn) was found to be in the micromolar range. F(ab')2 fragments specific for RGD were purified from IVIg by affinity chromatography. Anti-RGD F(ab')2 antibodies inhibited adenosine diphosphate induced alphaIIb/beta3 integrin-mediated platelet aggregation and the adhesion of activated alpha4beta1 integrin-expressing B cells to Fn. Adhesion of unstimulated platelets to fibrinogen (Fg) involving both the gamma-chain dodecapeptide sequence and the RGD sequence was inhibited by anti-RGD antibodies. In addition, adhesion of thrombin-stimulated platelets to von Willebrand factor or Fg was completely inhibited by affinity-purified anti-RGD antibodies. Our results suggest that the presence of natural IgG antibodies to the RGD motif may contribute to the immunomodulatory and anti-inflammatory effects of therapeutic preparations of normal IgG.

Antibodies↗

Defective self-reactive antibody repertoire of serum IgM in patients with hyper-IgM syndrome.

We have analyzed the self-reactive repertoires of IgM and IgG Abs in the serum of 19 patients with hyper-IgM syndrome (HIM) by means of a quantitative immunoblotting technique that allows for a quantitative comparison of Ab repertoires in health and disease by multiparametric statistical analysis. Normal tissue extracts of liver, lung, stomach, and kidney were used as sources of self Ags. Extracts of Pseudomonas aeruginosa and Staphylococcus epidermidis were used as sources of nonself Ags. We demonstrate a significant bias in repertoires of reactivities of IgM of patients with HIM with self Ags. Ab repertoires of IgM toward nonself Ags did not differ, however, between patients and controls. No difference was found between IgM repertoires of untreated patients and those of patients receiving substitutive treatment with i.v. IgG. IgG in the serum of HIM patients lacked reactivity with self Ags, although it exhibited a pattern of reactivity with nonself Ags that was similar to that of IgG of healthy controls. The data demonstrate that functional CD40-CD40 ligand interactions are essential for the selection of natural self-reactive B cell repertoires.

Adolescent↗

Normal human immunoglobulin suppresses experimental myasthenia gravis in SCID mice.

Serum IgM has been shown to participate in the control of IgG autoreactivity in healthy subjects. We have recently shown that an immunoglobulin preparation of pooled normal human IgM (IVIgM) contains anti-idiotypic antibodies against disease-associated IgG autoantibodies in autoimmune patients and protects rats from experimental autoimmunity. The aim of the present study was to asses the in vitro and in vivo immunomodulatory effects of IVIgM in comparison with IgG, in SCID mice reconstituted with thymic cells from a myasthenia gravis patient. Non-leaky SCID mice were injected i.p. with 60 x 10(6) thymic cells from a patient with myasthenia gravis and 1 day later boosted with 10(6) irradiated acetylcholine receptor (AchR)-expressing TE671 cells. On days 14, 21 and 28, mice were treated with IVIgM or with equimolar amounts of human serum albumin. The level of anti-AchR antibodies in the sera of three out of four IgM-treated animals was less than 1 nM. Further, there was a significant decrease in the loss of endplate AchR on the diaphragms of IgM-treated SCID mice. These findings indicate that pooled normal IgM exerts an immunoregulatory role in experimental myasthenia gravis, and suggests that IgM may be considered as an alternative approach in the therapy of autommune diseases.

Animals↗