Linoleic acid increases cytosolic Ca2+ in lymphocytes.
Explore the source record for details and available documents.
Biomedical subjects
Publications and source records attributed to L K Trejdosiewicz.
Explore the source record for details and available documents.
The effects of mucosal T-cell activation on human small intestinal glycoprotein biosynthesis have been examined during short-term culture in vitro. The incorporation of 3H-glucosamine into tissue and secreted glycoproteins was determined. Activation of mucosal T lymphocytes of normal duodenal biopsies with the monoclonal anti-CD3 antibody significantly increased both the total glucosamine incorporation into glycoproteins (p less than 0.01) and the secretion of in vitro radiolabelled glycoproteins (p less than 0.001). This effect was inhibited by ciclosporin. Secretion of glycoproteins was also stimulated by culture with pokeweed mitogen. In patients with coeliac disease, culture of small intestinal biopsies with anti-CD3 antibody significantly increased (p less than 0.05) glycoprotein biosynthesis in treated patients, but had no stimulatory effect in untreated patients with villous atrophy. These results show that activation of mucosal T lymphocytes induces quantitative changes in intestinal glycoprotein synthesis and secretion and T lymphocytes therefore have an important role in non-specific intestinal defences. The results are consistent with the suggestion that increased glycoprotein synthesis and secretion in untreated coeliac mucosa result from T-cell activation.
Perturbation of the fatty acid composition of human lymphocytes in vitro was investigated by addition of linoleic acid complexed to bovine serum albumin (BSA-LA) and by mitogenic stimulation with phytohaemagglutinin (PHA). BSA-LA resulted in a 45% increase in linoleic acid in phosphatidylethanolamine (PE) and over 100% in phosphatidylcholine (PC) in peripheral blood cells. Supplementation with BSA-LA in PHA-stimulated lymphocytes produced even greater changes: 100% increase in linoleic acid content for PE and over 300% for PC. There was a large decrease in oleic acid: 40% for PE and almost 100% in PC. Significant decreases in arachidonic acid occurred in both phospholipid fractions. PHA alone also altered membrane phospholipid fatty acid composition, with reductions in palmitic, stearic and linoleic acid for PE and increases in oleic acid and arachidonic acid (almost 100%). For PC, there were large decreases in stearic (40%), linoleic (30%) and arachidonic (40%) acids, together with an increase in oleic acid (65%). Cells supplemented with linoleic acid grown in the presence of PHA, compared with those grown in linoleic acid-supplemented medium alone, showed a 40% decrease in palmitic acid and a 55% increase in arachidonic acid in PE. For PC, there were large decreases in stearic acid (40%) and arachidonic acid (57%). Antibody-induced redistribution of surface molecules ('capping') was inhibited by some 14% after incubation with BSA-LA. However, no consistent alterations in PHA-induced cell proliferation were observed. These data suggest that profound alterations of membrane fatty acid composition occur spontaneously during the mitotic cycle, and may be further induced by experimental manipulation, without gross perturbation of cell function.
T-cell subsets and their activation state were examined by double-label immunofluorescence of cryostat tissue sections of the colon from 21 patients with ulcerative colitis (UC) and 30 histologically normal controls. Expression of MHC class I (HLA-A, B, C) and class II (HLA-D) antigens was studied in parallel. In the normal colonic mucosa, the CD4:CD8 ratio in the epithelial compartment approximated 1:1, and in the lamina propria, 2.55:1. Of the CD8+ (cytotoxic/suppressor) subset, approximately half did not express the CD5 "pan-T" marker in either compartment. Virtually no Leu8+ cells were observed, implying that the CD4+ subset consisted of helper, rather than suppressor-inducer cells. Classical markers of T-cell activation (CD25, HLA-D) and proliferation were absent, and strong expression of the CD7 "immunostimulation" marker was approximately equal in both CD4 and CD8 subsets. The epithelium was uniformly negative for class II antigens, but positive for class I. In UC, there were no significant alterations in CD4:CD8 ratios in either compartment, and there were no changes with respect to phenotype of the subsets. In 11 of 19 patients (mainly with total colitis), enterocytes were HLA-D+. In this HLA-D+ group, there was an increase in the percentage of CD4+ cells coexpressing CD7; this difference was significant (P less than 0.02) in the lamina propria. Increased expression of CD7 was also found by the CD6+ T cell subset (P less than 0.05).(ABSTRACT TRUNCATED AT 250 WORDS)
Recent evidence suggests that the four electrophoretically defined gliadin subfractions (alpha, beta, gamma and omega) of wheat can induce the typical pathological finding of coeliac disease. We have prepared long-term murine T cell lines to gliadin and its four major subfractions. The cell lines were tested in proliferative assays with each homologous gliadin subfraction, and to the other gliadin subfractions. There was some cross-reactivity, with unfractionated gliadin and its alpha-subfraction being the most antigenic, while omega-gliadin was the least. These data demonstrate that gliadin components are effective stimuli for specific T cell responses, and further suggest that the alpha-gliadin subfraction generates the highest specific responses. This accords with observations in man that all four gliadin subfractions exacerbate coeliac mucosa, but that the alpha-subfraction is the most active.
The description of an amino acid sequence homology between the E1B-58-kDa protein of adenovirus 12 and gliadin has led to the suggestion that previous infection by this virus and subsequent exposure to gliadin could trigger the development of coeliac disease in susceptible individuals as a result of immunologic cross-reactivity. We have sought to measure specific antibodies to the E1B-58-kDa protein in 23 coeliac patients and 10 normal subjects. The sera were analysed by radioimmunoprecipitation with metabolically labelled adenovirus-12-transformed rat cells (which express the E1B-58-kDa protein), followed by separation on polyacrylamide gels. None of the coeliac sera had evidence of antibodies to the E1B-58-kDa protein. These data suggest that coeliac patients show little evidence of humoral immunity to the specific adenovirus 12 E1B-58-kDa protein implicated in the aetiology of coeliac disease.
Cryostat sections of histologically normal human colon were studied by double-label immunofluorescence techniques using a panel of monoclonal antibodies to T-lineage antigens and activation markers, with particular reference to the CD6 antigen. In the lamina propria, the majority population of T cells was of the CD3+, CD6+, CD4+ subset, of which virtually all were of the UCHL1+, CD45R-, Leu 8- phenotype of antigen-committed helper T cells. This majority lamina propria population did not express markers associated with blastogenesis (CD7), activation (MHC class II, CD25, CD38) or proliferation (OKT9, Ki67). In both intra-epithelial and lamina propria compartments, a subpopulation of CD3+ T cells was identified which did not express either the CD6 or CD5 peripheral 'pan T' markers. Most of the CD3+, CD6- cells were of the CD8+ (cytotoxic-suppressor) subset which co-expressed the CD7 antigen with a much higher frequency than did the CD6+ subpopulation. Expression of CD25, CD38 and HLA-D antigens, although infrequent, was confined to this CD8+, CD5-, CD6- population. Our data thus imply that the colonic mucosa is largely populated by mature, antigen-committed resting T cells of the helper-inducer phenotype.
Cryostat sections of normal human adult gastrointestinal mucosae were studied by double-label immunofluorescence with antibodies to CD3, CD4, CD8, CD5 and CD6, in parallel with antibodies beta F1 and TCR delta 1 against beta-chains and delta-chains of the T-cell receptor (TcR) types TcR2 (alpha/beta) and TcR1 (gamma/delta), respectively. Virtually no TcR1+ were found within the lamina propria. In the epithelial compartment, TcR1+ cells were infrequent: in the small bowel, congruent to 2% of T cells were TcR1+. In the colonic epithelium, the percentage of T cells expressing gamma/delta-chains was higher, with a mean value approximating 15-20%, although this apparently large percentage increase compared with small bowel reflects in part a much lower density of colonic IEL, as absolute numbers of TCR delta 1+ cells were comparable. Of the TcR1+ population, about half were CD4- CD8-, 'double negatives' and the remainder were CD8+. TcR1+ cells were also CD5- CD6-, irrespective of expression of CD8. No CD4+ cells expressing TcR1 were observed: essentially all CD4+ cells were beta F1+, with some variability of labelling intensity. Approximately 30-50% of the CD8+ subset expressed the beta F1 antigen strongly. However, in the remaining TcR1- CD8+ cells, which were all of the CD5- CD6- phenotype, expression of the beta F1 antigen was only detectable when streptavidin and biotin conjugates were used for amplification of labelling. Thus, the CD8+ CD5- subset, a prominent population of the epithelial compartment of the small bowel, was either TcR2dull in the majority or TcR1+ in a minority. Our data imply that gamma/delta TcR1 cells may be actively excluded from intestinal lamina propria, and that any preferential localization that does occur is limited and is rather a feature of the colonic mucosa, rather than the small bowel.
To investigate local humoral immunity in ulcerative colitis (UC), immunoglobulin (Ig) contents and net Ig production in vitro was assessed using organ cultures of colonic biopsies from 21 patients with quiescent disease and 11 controls. Ig was estimated by enzyme linked immunoassay (ELISA) for IgA, secretory IgA (sIgA), IgM, and IgG. In parallel, numbers of IgA plasma cells were estimated by indirect immunoperoxidase staining of tissue sections for IgA. IgA was the dominant Ig isotype found pre-existing in colonic mucosae, and secreted in vitro. In UC patients, preformed tissue IgA and IgA produced in vitro were significantly increased compared with controls. There was no concomitant increase in amounts of sIgA synthesised in culture, however, although numbers of IgA plasma cells were increased in UC patients by an amount comparable with the increased in vitro IgA production. These results directly show a dysfunction of transepithelial IgA secretion in quiescent ulcerative colitis. Despite a significantly raised concentration of tissue IgG in UC patients, little was produced in vitro in patient and control groups alike, suggesting that mucosal IgG was serum derived, and not linked to local IgA production.
Normal human colonic lymphocyte populations were isolated for both phenotypic analysis by double-label immunofluorescence and assessment for regulatory effects on Ig production by co-culture with responder cells from colonic mucosa and peripheral blood. Mean CD4:CD8 ratios for colonic intraepithelial lymphocytes (IEL) and lamina propria lymphocytes (LPL) were comparable to values obtained from tissue sections. IEL alone did not produce Ig in vitro and were without effect on Ig production when co-cultured with LPL. However, T-enriched LPL had a marked helper effect for T-depleted LPL. Maximal help was for IgA production, increasing with numbers of T-enriched cells. In colonic LPL T-depleted and T-enriched co-cultures, pokeweed mitogen (PWM) had no significant effect. By contrast, in co-cultures of T-enriched and T-depleted peripheral blood mononuclear cells, Ig production was PWM-dependent. In all experiments with colonic mucosal responder cells, IgG production was low. The effects of unfractionated colonic biopsy lymphocytes on T-depleted peripheral blood mononuclear cells were additive for IgM production and synergistic for IgA synthesis, although almost no IgG was produced. Moreover, PWM had helper effects for IgM, but was suppressive for IgA production. These data suggest that colonic mucosal regulatory cells reside in the lamina propria, and predominantly provide help for IgA and IgM synthesis. The data further suggest the existence of a pre-stimulated IgA-specific T helper cell population.
A micro enzyme-linked immunoassay (ELISA) is described for the quantitation of secretory IgA as distinct from monomeric IgA. The assay is sensitive (linear down to 30 ng/ml) and reproducible (inter-assay variation: 17.0%; intra-assay variation: 11.5%). The assay has the further advantages of rapidity, the ability to handle large numbers of samples, and uses commercially available reagents throughout. Minimal interference from a large (greater than 25-fold) excess of monomeric IgA was observed. The results obtained for serum secretory IgA concentrations by this method correlated well with those reported by other workers for normal control patients, patients with IgA deficiency and patients with liver disease.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Epithelial cell cultures were initiated from explants of normal human oral mucosa. Growth parameters, cell type, and degree of maturation/cytodifferentiation were assessed by morphological and surface topographical criteria (light and scanning electron microscopy) together with immunofluorescence studies with a panel of antibodies to cytokeratins and extracellular matrix components. The effects of different media formulations were compared. Whereas stromal cell over-growth soon became apparent in media containing 10% serum, in low serum (0.5%) media containing insulin, hydrocortisone, epidermal growth factor (EGF), and/or cholera toxin (CT), epithelial growth was maintained with minimal or absent stromal cell contamination. Cell proliferation, maturation, and differentiation were modulated by EGF and CT: cultures maintained on EGF showed optimal growth but cells typically displayed only limited differentiation. By contrast, CT promoted considerably more cytodifferentiation but at the expense of proliferative capacity. Both factors together were complementary, resulting in maintenance of cells of a more mature phenotype of high proliferative capacity. Cytokeratins of normal oral epithelium in situ demonstrated characteristic changes in patterns of expression associated with differentiation. In culture, proliferative epithelial cells expressed keratins typical of the basal layer, whereas the most differentiated cells were identified by their strong reactivity with antibodies to epidermal keratins. Less mature cells showed expression of keratins associated with nonstratified epithelia. In cultures maintained with CT but no EGF, there was a tendency for weaker expression of basal type keratins, further suggesting that these cells were maintaining a more differentiated phenotype. Extracellular matrix components (fibronectin, laminin, collagen type IV) were not expressed by any epithelial cells in culture. Irrespective of medium composition, cultures did not survive beyond 100 days (5 or 6 subcultivations) before undergoing an irreversible 'crisis' of growth arrest and onset of degenerative changes.
Explore the source record for details and available documents.
IgA, IgE, IgG and IgM plasma cells in small bowel mucosal biopsies from 15 controls, 16 untreated and 14 treated coeliac patients and five patients with selective serum IgA deficiency (four of whom also had coeliac disease) were quantified using an indirect immunoperoxidase technique. The IgA, IgG and IgM plasma cell counts were significantly increased in the untreated coeliac patients. The cell counts were intermediate in the treated coeliac group. These changes were in parallel to production in vitro of IgA and sIgA, IgG, and IgM by cultured mucosal biopsies from the same patients. The IgA deficient patients had very few mucosal IgA cells but elevated IgG and IgM plasma cell numbers; again these changes were reflected in the production in vitro of immunoglobulins. IgE plasma cell counts were very low in all patients and there were no differences between patient groups. The changes in cell counts and mucosal immunoglobulin production were not reflected in serum IgA, IgM and IgG concentrations but serum secretory IgA was significantly elevated in the untreated coeliac patients compared with controls, with the treated coeliac patients being intermediate. The raised mucosal plasma cell counts reflect the local mucosal production of immunoglobulin but not the immunoglobulin concentrations of serum, emphasising the importance of studying the immune function of the gut itself in coeliac disease rather than immunological abnormalities in serum.
Explore the source record for details and available documents.