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Biomedical subjects

G M Bernier

Publications and source records attributed to G M Bernier.

16 recordsLinked to original sources

Monoclonal antibodies against isotypic and isoallotypic determinants of human IgA1 and IgA2: fine specificities and binding properties.

We have analysed and compared the fine specificity and behavior in various immunoassays of 10 mouse monoclonal antibodies, from three independent laboratories, directed against IgA1, IgA2 or non-IgA2m(2). The following observations were made. (1) Although all of the monoclonal antibodies were specific for a particular IgA subclass or isoallotype in a radioimmunoassay, three of them were not specific when tested in indirect immunofluorescence on plasma cells derived from pokeweed-activated peripheral blood lymphocytes. In this highly sensitive system, contrary to direct immunofluorescence previously performed using formalin-fixed lymphoid tissue, the anti-IgA1 69.114 reacted with some of the IgA2 plasma cells, the anti-IgA2 DLDB7 reacted with some of the IgA1 plasma cells and the anti-IgA2 16.512 dimly reacted with all IgM plasma cells. (2) Among the eight anti-IgA subclass antibodies, seven were directed against the CH2 domain of IgA whereas the anti-IgA1 1-155-1 recognised an epitope destroyed by Streptococcus sanguis IgA1 protease and localised in the hinge region of IgA1. The two anti-isoallotype antibodies were directed against epitope(s) probably localised in the 65 C-terminal amino acid residues of the alpha-CH3 domain. All of the 10 antibodies were able to react with endogeneously produced surface IgA on B-cells. (3) Using monoclonal anti-IgA subclass antibodies in radioimmunoassay may be hazardous in the absence of knowledge of their affinity constants and of careful control experiments: some of the antibodies were not sensitive in radioimmunoassays designed to measure the serum titer of specific IgA1 and IgA2 antibodies. Moreover, major differences were observed between the different monoclonal reagents with respect to the influence of the size of IgA on a solid-phase sandwich radioimmunoassay. While three of the anti-IgA1 underestimated dimeric IgA relative to monomeric IgA, the fourth anti-IgA1 and all the anti-IgA2 overestimated dimeric IgA relative to monomeric IgA, by a factor sometimes close to 7.

Animals

Spurious E rosette formation in B cell chronic lymphocytic leukemia due to monoclonal anti-sheep RBC antibody.

The apparent simultaneous presence of surface markers characteristic of both B and T cells is a phenomenon being described with increasing frequency in patients with chronic lymphocytic leukemia (CLL). We describe a patient with CLL whose B lymphocytes possessed surface immunoglobulin reactive with neuraminidase-treated sheep erythrocytes (SRBCs) and produced E rosette formation. Cytofluorography using monoclonal antibodies demonstrated the B cell nature of these cells and the absence of the SRBC receptor. Further documentation that the binding of SRBCs was mediated through immunologic reaction included E rosette formation inhibition by monospecific antisera and hemagglutination of SRBCs by a paraprotein isolated from the patient's serum. Fusion of the CLL cells with a human hypoxanthine-aminopterin-thymidine-sensitive plasma cell line resulted in the production of human hybridomas that secreted the SRBC-reactive IgM antibody. An analysis of clinical histories of CLL patients whose cells exhibited this phenomenon from both immunologic and clinical perspectives is presented.

Animals

Plasma cell leukemia with excretion of half-molecules of immunoglobulin A (alpha1 lambda1).

A patient with plasma cell leukemia and myelofibrosis excreted free immunoglobulin light chains and an abnormal monoclonal immunoglobulin (Ig) A in her urine. The IgA that was present in serum and urine had a sedimentation coefficient of 4.0 S. The molecule was comprised of both heavy and light chains but was antigenically deficient compared to normal IgA. As excreted in the urine, the protein appeared to be a half-molecule of IgA, with a partial deletion in the heavy chain, probably involving part or all of the C-terminal domain.

Female

Nonsynthetizing multiple myeloma.

A case of multiple myeloma with no monoclonal protein synthesis is reported. The patient had hypogammaglobulinemia, bone marrow invasion, osteolytic lesions, and plasma cell tumors. The absence of protein synthesis has been demonstrated in bone marrow culture with tritiated leucine. No evidence of immunoglobulin production was found. Bone marrow or plasma cell tumor biopsy may be the only method of diagnosis in such cases.

Bence Jones Protein

The bone marrow in multiple myeloma: correlation of plasma cell ultrastructure and clinical state.

The bone marrow plasma cells of 52 patients with various kinds of monoclonal gammopathies were studied by electron microscopy, and compared to the bone marrow plasma cells of 22 patients with reactive plasmacytosis. Virtually every marrow from patients with myeloma and macroglobulinemia contained plasma cells with disparity between the nuclear maturation and cytoplasmic differentiation. This asynchronous development was not present in plasma cells of reactive marrows nor in plasma cells from patients with megaloblastic anemias. The degree of asynchrony observed in myeloma and macroglobulinemia was proportional to the extent of disease as judged by clinical criteria. For the most part plasma cells of patients with non-myelomatous monoclonal gammopathy failed to exhibit significant asynchrony. These observations are consistent with the view that multiple myeloma is a neoplastic disorder with a definably malignant-appearing cellular proliferation.

Adult

Multiple myeloma with intramedullary masses of M-component.

The bone marrow of a patient with light chain myeloma and amyloidosis was substantially infiltrated with basophilic globular particles. The globules, which were confined to the bone marrow, ranged in size from tiny intracytoplasmic inclusions to large (100 mu) extracellular particles. Both the intra- and extracellular globules stained with fluorescent antibody directed against the light chain (kappa) produced by the patient's abnormal clone, and not with other fluorescent antiserums. By electron microscopy, even the largest extracytophasmic globules were bounded at least in part by rough membranes, suggesting that their extreme size was the result of cellular synthesis rather than extracellular coalescence.

Bone Marrow

Heterogeneity of human circulating anticoagulants against antihemophilic factor (factor VIII).

The heterogeneity of human circulating anticoagulants against antihemophilic factor (AHF, factor VIII) observed in seven patients, both with and without classic hemophilia, was investigated by neutralization of their activity with antiserums directed to whole IgG and to lambda and kappa light chains. All seven anticoagulants were immunoglobulins. Six appeared to contain both kinds of light chains, although the dual light chain composition of two of these could be demonstrated only at high concentration of antiserum. In one circulating anticoagulant, light chain specificity could not be demonstrated with small amounts of antiserum, and with larger amounts, only lambda light chain specificity was revealed. Whether or not this circulating anticoagulant really contained a single light chain type could not be ascertained with our technique. The evidence presented suggested that circulating anticoagulant antibodies against AHF are polyclonal in nature.

Absorption