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Biomedical subjects

S Gay

Publications and source records attributed to S Gay.

At least 199 records · Page 11Linked to original sources

Collagen autoantibodies in patients with vasculitis and systemic lupus erythematosus.

In order to determine whether collagen autoantibodies are present in sera from patients with vascular diseases, a highly sensitive solid-phase radioimmunoassay was utilized to evaluate the presence of antibodies against collagen types I to VI and laminin in sera of 20 patients with vasculitis and 20 patients with systemic lupus erythematosus (SLE). Autoantibodies to interstitial collagen types I and II were noted in 20 and 35% of the patients, respectively. Most significantly, 70% of the polyarteritis nodosa patients and 55% of the total vasculitis group had autoantibodies to collagen type IV. In SLE, autoantibodies to collagen type V were detected in 70% and to collagen type IV in 85% of the patient sera. These data indicate that basement membrane and basement membrane-associated collagens may become immunogenic in patients with vasculitis and SLE. The role of these autoantibodies is most likely a result of endothelial damage secondary to the initial inflammatory disease process. However, it can be concluded from the present studies that collagen types IV and V are involved in the immune response and thereby may perpetuate further vascular damage.

Adolescent↗

Immunolocalization of types V and XI collagen in cartilage using monoclonal antibodies.

Monoclonal antibodies produced against pepsin-solubilized newborn rat skin type V collagen [alpha 1(V)]2 alpha 2(V), and chondrosarcoma type XI collagen [alpha 1(XI) alpha 2(XI) alpha 3(XI)] are used to localize the collagens in sections of the chondrosarcoma as well as the normal rat knee joint by indirect immunofluorescence. Immunostaining for type V collagen shows strong cellular staining of chondrocytes; while the interstitial matrix as well as the lacunae are not stained. In contrast, antitype XI stains not only chondrocytes, but the extracellular compartments as well. In ELISA, rat anti-type XI collagen reacts with its native antigen, but does not cross-react with native types I, II, III, or V collagen from rat. The distinct locations of type V and XI collagens in cartilaginous tissue suggest varied functional roles for these constituents in the tissue.

Animals↗

Over the wall.

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Communication↗

Immunoglobulin isotype distribution of locally produced autoantibodies to collagen type I in adult periodontitis. Relationship to periodontal treatment.

Production of antibodies to collagen type I was analyzed by means of an enzyme-linked immunospot (ELISPOT) assay in patients with chronic adult periodontitis (AP) before and after periodontal hygiene treatment. Anti-collagen type I antibody-secreting cells were found among mononuclear cells enzymatically eluted from inflamed gingiva in 9 of 15 patients with untreated AP and in 4 of 14 hygiene-treated patients with a varied isotype distribution. A notably high prevalence of IgG and IgM isotypes was observed for the anti-collagen antibodies in untreated patients. With wide variation, chronic AP was characterized by a high frequency of spontaneous IgG and low numbers of IgA and IgM-producing cells. Periodontal hygiene treatment significantly reduced the number of IgA and IgM-secreting cells. Although AP is not an autoimmune disease in the accepted sense, our results indicate that local autoimmune reactions to collagen type I are common in untreated AP, implying an interplay between periodontal infection and autoimmunity.

Autoantibodies↗

Ultrastructural localization of HTLV-I gag proteins p19 and p24 by single and double immunogold labeling.

We developed a post-embedding immunogold labeling procedure for the ultrastructural localization of the HTLV-I gag proteins p19 and p24 by the use of monoclonal antibodies (MAb). Both antigens were shown to withstand fixation with 1% glutaraldehyde. In addition, p19 antigenicity was found not to be affected by post-fixation with 1% osmium tetroxide. The choice of resin played a decisive role in the retention of antigenicity. P19 was preserved in Lowicryl K4M as well as in LR White, whereas p24 was preserved only in Lowicryl. Both p19 and p24 were found to be localized on the HTLV-I virions themselves, whereas no positive immunostaining could be observed on the infected cells. In Lowicryl-embedded samples, in which both antigens had been preserved, a double immunogold labeling procedure was performed that allowed the co-localization of p19 and p24 on the same section. In osmicated LR White-embedded samples the quality of ultrastructural preservation of HTLV-I virions was found to be comparable to results obtained with the traditional glutaraldehyde-osmium tetroxide-epoxy resin processing.

Antibodies, Monoclonal↗

Mouse T-cell associated serine proteinase 1 degrades collagen type IV: a structural basis for the migration of lymphocytes through vascular basement membranes.

We show that CD8+ T-lymphocyte lines perferentially attach to collagen type IV and that mouse T-cell specific serine proteinase 1 (MTSP-1) preferentially degrades native basement membrane collagen type IV. In contrast, the interstitial collagen types I, II, III, V and VI appear not to be affected. The data reveal that MTSP-1 predominantly cleaves the alpha 2(IV) chain, which is found in the native triple helical structure of type IV collagen in a ratio of alpha 1(IV): alpha 2(IV) = 2:1 into small peptides. The cleavage of the alpha 2(IV) chain within the native collagen type IV molecules most likely results not only in a destabilization of single molecules but of the entire collagenous basement membrane scaffold at the site of MTSP-1 secretion.

Animals↗

Collagen profile in the transplanted heart.

To substantiate the finding of interstitial myocardial fibrosis in the transplanted heart and to characterize the collagen profile of the transplanted heart, we studied endomyocardial biopsy specimens from 30 heart transplants and four heart-lung transplants at 1 to 82 months after transplantation. Indirect immunofluorescent techniques with affinity-purified antibodies for collagen types I, III, IV, and V were used. The degree of interstitial collagen present was scored. The amount of type I collagen was increased in transplants from distant donors (mean ischemia time, 154 minutes) compared with those from on-site donors (mean ischemic time, 59 minutes): collagen scores 1.1 and 1.7, respectively (P less than .01). There was a trend toward a positive correlation, not statistically significant, between cyclosporine dose and collagen III deposition (r = .35), collagen IV (r = .38), and collagen V (r = .56). There was a negative correlation between number of rejection episodes and mean cyclosporine dose (r = -.41) and amount of collagen III (r = -.42) or collagen IV (r = -.42). No correlations were found between collagen deposition and any other variables studied. These results confirm the mixed nature of the collagen deposited and suggest that some fibrosis is related to cyclosporine administration rather than to the number of prior healed rejection episodes.

Adult↗

Expression of the collagenolytic and Ras-induced cysteine proteinase cathepsin L and proliferation-associated oncogenes in synovial cells of MRL/I mice and patients with rheumatoid arthritis.

Based on the observation that rheumatoid joint destruction is related to the presence of transformed-appearing proliferating synovial lining cells attached to cartilage and bone at the site of early destruction, we searched for the expression of proliferation- and transformation-associated oncoproteins in synovial tissues from patients with early destructive rheumatoid arthritis (RA). Immunolocalization of Ras and Myc proteins was found in about 70% of the RA cases and was restricted to the proliferating synovial lining cells. The cysteine proteinase, cathepsin L, which has been shown to be the major ras-induced protein in ras-transformed murine NIH 3T3 cells, was detected in 50% of the RA cases, predominantly in synovial cells attached to cartilage and bone at the site of joint destruction. Moreover, utilizing cytoplastic dot hybridization analysis, we demonstrated the presence of RNA sequences complementary to human cathepsin L in primary cultures of human synovial cells from RA joints and complementary to murine cathepsin L in synovial lining cells derived from MRL/l mice developing spontaneously a RA-like disease. Significant levels of ras oncogene transcripts and products in human RA synovial cells associated with an increased expression of the cathepsin L gene indicate that this collagen-degrading enzyme may contribute to the destruction of cartilage and bone in RA.

Animals↗

Intracellular secretory pathway and ultrastructural localization of interstitial procollagenase in human gingival fibroblasts.

Fibroblast-type collagenase, a neutral secretory metalloproteinase capable of cleaving interstitial collagen types I-III, is expressed by a number of different cell types including fibroblasts, macrophages, osteoblasts, and keratinoyctes. To elucidate the secretory pathway of this enzyme, we examined the ultrastructural localization of this metalloproteinase in cultured human gingival fibroblasts, particularly the routing of the enzyme from the Golgi cisternae to the cell surface utilizing rabbit polyclonal antibodies raised against human fibroblast (pro) collagenase. For this purpose, one percent glutaraldehyde followed by gentle permeabilization with saponin gave superior preservation of both cellular morphology and intracellular antigenicity. At the light microscopic level, the reacting antibodies visualized by immunofluorescence and immunoperoxidase staining were localized intracellularly in the perinuclear region reflecting the Golgi apparatus. Immunoelectronmicroscopy using the pre-embedding technique and peroxidase or immunogold staining revealed electron dense label in large vacuoles indicating extended cisternae of the Golgi field. Vesicles were noted leaving the plasma membrane in long extensions. Moreover, intact vesicle containing the antibody reaction product appeared outside the membrane. In addition, most extracellular vesicular structures appeared empty of label suggesting that the collagenase had been liberated into the extracellular space. The latter observation was supported by the fact that the label was found also on the extracellular surface of the cells indicating a (re)association of collagenase with the outer cell membrane. These data demonstrate that the pathway of interstitial collagenase in human gingival fibroblasts is similar to that of other secretory proteins.

Cells, Cultured↗

A monoclonal antibody which identifies an antigen in endothelial cell and epithelial basement membrane.

We isolated a monoclonal antibody which decorates the endothelial cells of normal and lymphatic vessels in formalin-fixed, paraffin-embedded tissue. In addition, the antibody recognizes a previously undescribed substance found in the basement membrane zone and subbasement membrane zone of a variety of epithelial. By ELISA assay, the antigen recognized by this monoclonal antibody is not laminin, type IV collagen or fibronectin. This antibody may be used as a diagnostic tool because it identifies an epitope in neoplasms differentiating towards endothelial cell such as angiosarcoma and Kaposi's sarcoma.

Animals↗

Lyme borreliosis in the severe combined immunodeficiency (scid) mouse manifests predominantly in the joints, heart, and liver.

The authors describe the histopathologic evolution of Lyme disease in severe combined immunodeficiency (scid) and normal C.B-17 and C57BL/6 mice inoculated with Borrelia burgdorferi. Starting on day 7 after inoculation, all scid mice infected subcutaneously in the tail with a low-passage European tick isolate of B. burgdorferi had clinical evidence of arthritis characterized by reddening and swelling of tibiotarsal joints. Later on, other joints, ie, metatarsal and ulnacarpal joints were also affected. The infection of scid mice resulted in a persistent spirochetemia and the development of a multisystem disease with chronic progressive inflammation of joints, heart, and liver. Major histopathologic alterations included 1) severe joint lesions, characterized by the presence of hyperplastic inflamed synovial lining cells associated with the erosion and destruction of cartilage and/or bone; 2) pancarditis with infiltrations of mononuclear cells in the endocardium, myocardium, and pericardium; and 3) hepatitis with mononuclear cell infiltrations confined to the portal field and central vein, granulomatous reactions, and eventually the development of liver fibrosis. In addition, smaller more confined lesions were found in kidneys, lung, brain, and striated muscle. The inflammatory infiltrates in the various organs were associated mostly with Mac-1+ cells, largely monocytes and macrophages, as well as some polymorphonuclear leukocytes, but not B and T lymphocytes. Infective spirochetes could be readily isolated from blood and joints and were found at the site of inoculum and the myocardium. In contrast, subcutaneous inoculation of normal C.B-17 or C57BL/6 mice with spirochetes in general did not result in clinical signs of arthritis. Only 10% to 20% of the C57BL/6 mice, but none of the C.B-17 mice, showed clinical evidence of oligoarthritis, which appeared not before day 36 after inoculation. In general, the infection of normal mice resulted in minimal lesions in various organs, and no spirochetes could be visualized or reisolated from their tissues. The data demonstrate that Lyme borreliosis may develop in mice in the absence of detectable specific B and T cells and thus suggest an immunologic control of the disease in this species. The scid mouse model therefore can be used to define the components of the immune system responsible for the suppression and/or the progression of the disease.

Acquired Immunodeficiency Syndrome↗

Binding of heparan sulfate to type V collagen. A mechanism of cell-substrate adhesion.

The functions and molecular interactions of type V collagen in the pericellular matrix are unclear. Our studies show that type V collagen adsorbed on a surface binds heparin/heparan sulfate with apparent higher affinity than do collagen types I, II, III, IV, or VI, fibronectin, or laminin. Therefore, heparin-like molecules may mediate interactions between cells and type V collagen. Hence, type V collagen may act as an anchor for proteoglycans in the extracellular matrix and function as a substrate for glycosaminoglycan-mediated cell attachment. This model is supported by studies showing that Chinese hamster ovary (CHO) cell mutants which are deficient in glycosaminoglycan synthesis attach poorly to type V collagen substrates compared to wild-type cells, whereas attachment of CHO cell mutants to fibronectin substrates is not affected. Also, exogenous heparin reduces attachment of CHO, endothelial, and smooth muscle cells to type V collagen but does not affect cell attachment to fibronectin. The inhibitory activity of the exogenous heparin/heparan sulfate depends on the size and sulfate content of the polysaccharide chains. At tested concentrations, chondroitin sulfate does not affect the attachment of CHO cells or the binding of biotin-conjugated heparan sulfate to wells coated with type V collagen. These data suggest that a certain degree of structural specificity is involved in glycosaminoglycan binding to type V collagen.

Amino Acid Sequence↗

Increased expression of the gene for the pro alpha 1(IV) chain of basement-membrane procollagen in cultured skin fibroblasts from two variants of osteogenesis imperfecta.

Fibroblasts from two lethal variants of osteogenesis imperfecta were shown to synthesize increased amounts of type IV procollagen. Previous studies established that one of these variants had a non-functional allele for the pro alpha 2 chain of type I procollagen, whereas the other pro alpha 2(I) allele contained a mutation leading to synthesis of shortened pro alpha 2(I) chains. In the two variants, the relative level of mRNA for pro alpha 1(IV) was 31 and 42% of the level of mRNA for pro alpha 1(I) chains. A value of less than 2% was found for a third lethal and four non-lethal variants of osteogenesis imperfecta. Immunofluorescent staining of fibroblasts from the two variants synthesizing increased amounts of type IV procollagen indicated that a homogeneous population of cells synthesized both type IV and type I procollagen. The results suggest that mutations in the type I procollagen genes that result in osteogenesis imperfecta can be associated with increased expression of the genes for type IV procollagen.

Basement Membrane↗

Immunohistologic demonstration of type II collagen in synovial fluid phagocytes of osteoarthritis and rheumatoid arthritis patients.

We were able to demonstrate type II collagen in synovial phagocytes of osteoarthritis (OA) and rheumatoid arthritis (RA) patients, using a monoclonal antibody to human type II collagen and immunoperoxidase staining. In addition, using immunoelectron microscopy, we demonstrated labeled fragments in synovial phagocytes of both RA and OA patients. This immunohistochemical assay may prove to be a sensitive indicator of cartilage erosion in patients with OA and RA.

Adult↗

Cellular basis and oncogene expression of rheumatoid joint destruction.

A new animal model for human rheumatoid arthritis is described, and the unsolved questions regarding the mechanism of primary joint destruction are discussed. Following an analysis of the types of cells and antibodies found in joints affected by rheumatoid arthritis, it is concluded that both expression of oncogenes and the presence of retroviral sequences detectable by monoclonal antibodies to HTLV I p19 and p24 sequences are associated with early abnormal proliferation of apparently transformed cells at the site of initial cartilage and/or bone destruction.

Animals↗

The extracellular matrix in large-cell lymphomas: a histopathologic, immunohistochemical, and ultrastructural study.

We studied the histopathologic, immunohistochemical, and ultrastructural features of the extracellular matrix (ECM) in 20 immunologically defined large-cell lymphomas, including immunoblastic sarcoma of B cells (three patients), peripheral T cell lymphoma (five patients), large non-cleaved follicular center cell (FCC) lymphoma (nine patients), and non-marking large-cell lymphoma (three patients). Immunohistochemical studies were performed with antibodies to laminin, fibronectin, and collagen types I, III, IV, and V. The immunologically defined subgroups demonstrated characteristic differences in ECM in light microscopic appearance, composition, and ultrastructural features. Immunoblastic sarcomas of B cells showed delicate intercellular bands that were apparent only at high power but were distinct in exhibiting focal staining for basement membrane elements (laminin and type IV collagen) in addition to type I collagen and fibronectin. Electron microscopically, no basal lamina were apparent, although the collagen fibers were embedded in a dense matrix not seen in the other lymphomas. All peripheral T cell lymphomas exhibited a packeting pattern of intercellular bands and were distinguished by the frequent presence of intense pericellular staining for type V collagen as well as by focal pericellular staining for types I and III collagen. The latter finding corresponded to extensive areas of direct contact between tumor cells and the ECM by electron microscopy. The large non-cleaved FCC lymphomas and the non-marking large-cell lymphomas demonstrated both diffuse and compartmentalizing arrangements of intercellular bands that frequently coexisted and stained predominantly for fibronectin and types I and III collagen. All groups demonstrated myofibroblasts and fibroblasts partially or completely separating the ECM from tumor cells, suggesting that most of the ECM is part of a reaction to these lymphomas. These studies show more variation in light microscopic appearance, composition, and ultrastructural relationships of the intercellular and pericellular ECM than was apparent in earlier studies of cleaved FCC lymphomas.

Aged↗