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Biomedical subjects

S Meri

Publications and source records attributed to S Meri.

25 records · Page 2Linked to original sources

Organ-specific autoimmunity and HLA-DR antigens as markers for beta-cell destruction in patients with type II diabetes.

Islet cell antibodies (ICAs), thyrogastric antibodies, and HLA-DR antigens were determined in 204 patients with type II (non-insulin-dependent) diabetes controlled with diet and/or oral hypoglycemic agents (NIR) and in 108 age-matched patients who required insulin to control their hyperglycemia (IR). beta-Cell function measured as C-peptide response to glucagon was evaluated in relation to the presence of ICAs and HLA-DR antigens. The IR patients differed from the NIR patients with respect to higher frequency of ICAs (P less than .001), thyroid antibodies (P less than .02), and the HLA antigen DR4 (P less than .02). The highest frequency of ICAs and thyroid antibodies was observed in female insulin-treated subjects (51.2 and 46.4%). Patients who were heterozygous for HLA-DR3/DR4 showed significantly higher frequency of ICAs (P less than .01) and complement-fixing ICAs (P less than .001) than patients without the heterozygous form DR3/DR4. Neither the presence of ICA alone nor DR3/DR4 alone was associated with a significant impairment of beta-cell function. However, when both ICA and DR3/DR4 were present in a diabetic individual, beta-cell function was markedly impaired (P less than .001), suggesting that both genetic and autoimmune factors are necessary to facilitate the process leading to beta-cell destruction of the patients. Our findings suggest that type II diabetes is a heterogeneous disorder including at least two major subgroups, which can be further characterized by HLA-DR antigens and organ-specific antibodies.

Autoantibodies

Human tumor cells synthesize and secrete alpha-2-macroglobulin in vitro.

In previous studies we showed that human sarcoma and melanoma cell lines synthesize and secrete into culture medium a glycoprotein, migrating in urea sodium dodecyl sulfate-polyacrylamide gel electrophoresis at Mr 140,000. It is not detected in cultures of the corresponding normal cells. Conditioned medium of the melanoma cell line HMB-2, producing among the cell lines tested the largest amounts of this glycoprotein, has now been used as a source for purification of the protein. NH2-terminal amino-acid sequence determination of the purified glycoprotein showed that it is identical to human alpha 2-macroglobulin (alpha 2M). Rabbit antibodies raised against the glycoprotein specifically reacted in immunoblotting and immunodiffusion tests with alpha 2M present in human plasma. Likewise, these antibodies immunoprecipitated from the conditioned media of 35S-methionine-labelled melanoma and osteosarcoma cell lines the protein which had a molecular weight corresponding to alpha 2M. alpha 2M was also synthesized and secreted by 2 strains of fetal lung fibroblasts but not by fetal skin fibroblasts or adult skin fibroblasts autologous to the osteosarcoma cell line.

Cells, Cultured

Complement activation by antigenic fractions of Entamoeba histolytica.

Complement (C) activation induced by Entamoeba histolytica in normal non-immune human serum was studied by testing in vitro the ability of different fractions of the trophozoites to cause C3 breakdown. Whole trophozoites were found to activate both alternative and classical C pathways. The antibody-independent classical pathway (MgEGTA inhibitable) C activating capacity was found to greatly increase after disruption of the cell membrane by sonication. Subsequent analysis after differential centrifugation and ion exchange chromatography of the membrane/particulate fractions showed, that this activity was not due to DNA, which has been shown to have the similar characteristics, but to other, as yet unidentified components. A rather homogenous membrane fraction obtained by elution with 0.4 M Tris-HCl, pH 8.1 (described as 4M) and some cytoplasmic constituents obtained after gel chromatography retained a moderate degree of alternative pathway C3 activating capacity seen with intact trophozoites. Thus, it seems, that serum contact to the outer surface of E. histolytica trophozoites leads to C activation via both pathways with cell death as the result and to subsequent release of more efficiently classical pathway activating components. These phenomena probably have an important role in the inflammatory process in invasive amoebiasis.

Animals

Complement levels and C3 breakdown products in open-heart surgery: association of C3 conversion with the postpericardiotomy syndrome.

The role of the complement system in the pathogenesis of the post-pericardiotomy syndrome (PPS) was evaluated in a prospective study by measuring the levels of complement (C) components, total haemolytic complement activity and circulating C3 breakdown products in serial plasma and serum samples of 45 patients undergoing open-heart surgery. A consistent reduction in the levels of C3 and C4 but not of factor B was seen on the second post-operative day. During the second post-operative week the antigenic levels of each C component increased significantly. At this time six patients developed the post-pericardiotomy syndrome. Circulating C3 conversion products (C3bi and C3c) were demonstrated in the plasma samples from five of these patients by the immunofixation technique, the mean conversion percentage being 14.3 +/- 10.6. The samples from 15 of the 39 other patients also showed C3 conversion, but the mean percentage was significantly lower (4.5 +/- 6.1%, P less than 0.05). Before the second post-operative week C3 conversion was rare in both groups. The C3d levels of plasma samples, as detected by rocket immunoelectrophoresis, followed a similar pattern. Reduced total haemolytic complement activity was found in three patients suffering from the PPS. These results suggest a role for complement in the non-infectious, inflammatory response during the late post-operative period after open heart surgery, and especially in the post-pericardiotomy syndrome.

Adolescent

Complement activation by circulating serum factors in human glomerulonephritis.

Factors with the ability to induce a minimum of 20% C3 conversion in normal human serum (NHS) were demonstrated in the sera of nine glomerulonephritis (GN) patients. The nature of these factors was heterogeneous allowing their division into at least three different groups. First, in three cases (membranoproliferative or acute GN) they exhibited the characteristics of C3 nephritic factor, an IgG autoantibody stabilizing the alternative pathway (AP) C3 convertase, C3bBb. Secondly, the serum of one patient (SLE like syndrome, mixed cryoglobulinaemia) with an activator of both pathways and profound hypocomplementaemia showed a temperature-dependent precipitation against autologous and homologous polyclonal IgG. Immunochemical analysis suggested this activity to be due to a monoclonal IgM kappa rheumatoid factor. By gel filtration the C3 converting activity was found in the high molecular weight fractions containing the cryoprecipitable IgM-IgG complexes. Finally, in five cases the exact nature of C-activating factors remained unknown. In four of these the factors were heat labile (30 min at 54 degrees C) C activators in association with post-streptococcal glomerulonephritis. The results suggest that the various C activating factors, possibly distinct from 'classical' immune complexes, are indicators of different types of pathogenetic mechanisms in certain forms of GN.

Adult

Complement in chronic secretory otitis media. C3 breakdown and C3 splitting activity.

Occurrence of in vivo C3 breakdown and in vitro C3 splitting activity was studied in serum and middle-ear effusion (MEE) samples from 30 children with chronic secretory otitis media (SOM). The MEE showed strongly elevated levels of both low- and high-molecular-weight C3 breakdown products, along with decreased factor B, C4, and C3 levels. Total hemolytic complement component activity was virtually absent from MEE. The MEE fluids were found to contain C3 splitting factors as demonstrated by their high capacity to convert C3 in vitro from fresh normal human serum. This activity was not inhibited by the classic complement pathway inhibitor, 0.01M ethylene glycol tetra-acetic acid with 0.005M magnesium chloride. The results suggest that a strong local complement activation has taken place and that the factors responsible are present in the MEE of patients with SOM.

Antigen-Antibody Complex