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Biomedical subjects

A Capron

Publications and source records attributed to A Capron.

At least 397 records · Page 22Linked to original sources

Schistosoma mansoni shares a protective carbohydrate epitope with keyhole limpet hemocyanin.

The glycanic epitope of the 38,000 Mr Schistosoma mansoni schistosomula major immunogen defined by the IPLSm1 protective mAb was identified in the hemocyanin of the marine mollusc Megathura crenulata, better known as KLH. This antigenic community was exploited to investigate further the biological properties of this epitope. KLH was shown to strongly inhibit the binding of IPLSm1 mAb to its 38,000 Mr target antigen. Immunization of naive LOU rats with KLH elicited the production of anti-S. mansoni antibodies capable of immunoprecipitating the 38,000 Mr schistosomulum antigen. Antibodies to KLH mediated a marked eosinophil-dependent cytotoxicity and passively transferred immunity towards S. mansoni infection. Finally, rats immunized with KLH were significantly protected against a challenge with S. mansoni cercariae. The deglycosylation of KLH completely abolishes its immunological and functional KLH properties, indicating the participation of an oligosaccharidic epitope of the native KLH that is also recognized by the sera of S. mansoni-infected patients. These observations provide new opportunities of access to the well-defined structure of a glycanic epitope potentially available for the immunoprophylaxis and seroepidemiology of schistosomiasis, and a new approach to the isotypic response towards a well-chemically defined epitope.

Animals↗

Infectivity of Leishmania braziliensis promastigotes is dependent on the increasing expression of a 65,000-dalton surface antigen.

Sequential development of Leishmania braziliensis promastigotes from a noninfective to an infective stage was demonstrated. The generation of infective forms was related to their growth cycle and restricted to stationary stage organisms. Using immunofluorescence techniques, we have noticed that the binding of a monoclonal antibody (mAb) against L. braziliensis (VD5/25) increased progressively as the promastigotes developed in culture and was maximal with the infective forms. This antigenic differentiation was not detected with an anti-L. braziliensis polyclonal rabbit antiserum, suggesting that only a few epitopes, including that recognized by VD5/25, have their expression effectively increased on the surface of infective promastigotes. Immunoprecipitation of lysates of surface-iodinated L. braziliensis promastigotes with this mAb revealed two proteins of apparent 65,000 and 50,000 Mr, the 50,000 Mr protein probably representing the unreduced form of the major surface glycoprotein described in several species of Leishmania (GP65). The increasing expression of this epitope was not found with L. chagasi promastigotes, but seems to occur with the parasites from the L. mexicana complex. Intracellular survival of L. braziliensis was completely inhibited when the infective promastigotes were treated with VD5/25. It appears, therefore, that the increasing expression of GP65 on the promastigote surface represents an essential mechanism of leishmania survival in the macrophage.

Animals↗

Detection of circulating and urinary antigens in Mastomys natalensis experimentally infected with Brugia malayi, Brugia pahangi, or Litomosoides carinii.

The time-course of the detection of circulating and urinary filarial antigens was followed with a 2S-IRMA assay, using a mouse monoclonal antibody raised against Brugia malayi larvae, in Mastomys natalensis experimentally infected with Brugia malayi, Brugia pahangi, or Litomosoides carinii. In the prepatent phase of the infections, filarial antigen was detected 4-7 weeks before microfilariae appeared in the peripheral blood. Moreover, the sensitivity of the test was greater with urine than with serum. During the patent phase of infection, the level of circulating antigens detected varied considerably. However, there was a positive correlation (P less than 0.05) between antigenemia and microfilaremia. In L. carinii infection, filarial antigen could be easily detected in spite of the disappearance of microfilariae in peripheral blood, 49 weeks post infection. If these results are extrapolated to man, the 2S-IRMA should be useful for epidemiological surveys in endemic areas where transmission has been eliminated.

Animals↗

Trypanosoma cruzi: cell type dependent distribution of a tubulin domain in mammalian stages.

The distribution of tubulin domains in the mammalian stages of Trypanosoma cruzi was investigated by using monoclonal antibodies elicited against bovine brain tubulin. Western blotting performed on T. brucei trypomastigotes and T. cruzi epimastigotes showed that the monoclonal antibodies 16D3 and 24E3 reacted only with tubulin in these cell types. Indirect immunofluorescence revealed that, whereas 16D3 stained all microtubules, including subpellicular microtubules, the epitope defined by 24E3 was found in only a part of the tubulin pool of amastigotes and intermediate stages infecting murine fibroblasts and of broad trypomastigotes; the staining was limited to the basal bodies and the distal region of the flagellar adhesion zone in these developmental forms. By contrast, slender trypomastigotes did not exhibit any reaction with 24E3. These results are consistent with a transformation of broad trypomastigotes into slender trypomastigotes during which the tubulin domain recognized by 24E3 would undergo modifications leading to its complete masking in slender forms. The morphogenesis of the mammalian stages of T. cruzi would involve modifications of the tubulin molecule.

Animals↗

Differential effect of cyclosporin A (CyA) on IgE response: role of CyA-induced suppressor cells.

Administration of cyclosporin A (CyA, 30 mg/kg) for the five days following immunization of Brown Norway rats with DNP14-OVA in alum abolished the primary total and specific IgE response, whereas this treatment had no significant effect on the secondary IgE response. On the contrary, with a single injection of CyA on the day of priming, the secondary IgE response only is abolished. The inhibition of the secondary IgE response could be attributed to the induction by a single dose of CyA of nylon wool-adherent spleen cells, as shown by passive transfer experiments. CyA might thus affect the IgE response variously depending on single or repeated administrations.

Animals↗

Identification of a major 72 kilodalton surface antigen in twelve isolates of Leishmania braziliensis braziliensis.

The study of the surface antigens of Leishmania braziliensis braziliensis revealed a great homogeneity among ten strains isolated from Bolivia and two reference strains from Brazil and Belize. A 72 kDa major protein, present in all L. b. braziliensis strains, was recognized by both cutaneous and mucocutaneous human sera, but was not recognized by Kala-azar and chagasic sera. No cross-reactive antigens were found among strains of Leishmania braziliensis guyanensis, Leishmania braziliensis panamensis, Leishmania mexicana amazonensis and Leishmania donovani chagasi testing these strains with hamster and human anti-L. b. braziliensis sera. Moreover, these strains possessed major antigens with molecular weights different from those of L. b. braziliensis strains. A microheterogeneity of L. b. braziliensis surface antigens was detected for the high molecular weight antigens and seemed to be related to the isoenzymic microheterogeneity.

Animals↗

Immunity in human schistosomiasis mansoni: prevention by blocking antibodies of the expression of immunity in young children.

A total of 129 children were treated for Schistosoma mansoni infections, and followed for intensity of reinfection at 3-monthly intervals over a 21-month period. Blood samples were taken before treatment and at 5 weeks and 6, 12 and 18 months after treatment. This paper presents a statistical analysis of the relationship between various immune responses and subsequent reinfection. Responses analysed were: blood eosinophil levels; IgE antibodies against schistosomulum antigens; IgG antibodies mediating eosinophil-dependent killing of schistosomula; antibodies inhibiting the binding to schistosomulum antigens of two rat monoclonal antibodies that also recognize egg antigens; the levels of anti-adult worm and of anti-egg (total, IgM and IgG) antibodies; and IgM anti-schistosomulum antibodies. Results for each assay were well correlated for each of the five separate blood samples. None of the assays were predictive of resistance to reinfection, but susceptibility to reinfection was strongly correlated with results in the preceding blood samples for total anti-egg antibodies and the inhibition of binding of one of the two monoclonal antibodies. Further analysis also revealed a correlation between reinfection intensities and both IgM anti-schistosomulum antibodies and IgM and IgG anti-egg antibodies. These results are consistent with the hypothesis that early infections elicit the development, in response to egg antigens, of antibodies that block immune mechanisms directed against schistosomula. Blocking antibodies may be IgM, but might also be of an ineffective IgG isotype. The existence of such antibodies in young children would explain the slow development of immunity in the face of a range of detectable, potentially protective immune responses.

Adolescent↗

The isotypes of antibody responsible for the 'late' passive transfer of immunity in rats vaccinated with highly irradiated cercariae.

The role of different antibody isotypes in the transfer of protection with serum from rats vaccinated with irradiated cercariae were investigated by immunoadsorption of IgG, IgG2a and IgG2c, and by heating at 56 degrees C to remove IgE. Only depletion of IgG2a reduced the levels of vaccine-induced immunity transferred, whereas immunity transferred by infection serum was reduced by both IgG2a and IgE depletion. It was also shown that exposure to irradiated parasites did not lead to either specific or non-specific induction of an IgE response. The successful passive-transfer experiments using serum from non-resistant 25 week-infected rats into recipient animals demonstrated that the waning of resistance observed in 25 week-infected rats was not due to a failure of the humoral response to protective antigens.

Animals↗

Effect of dental plaque on the oxidative metabolism of normal neutrophils.

The purpose of this study was to investigate the interaction between dental plaque and the oxidative metabolism of blood (PB), crevicular (CR) and salivary (SAL) PMN. Data indicated that supragingival plaque induced an in vitro production of chemiluminescence by both PB and CR--PMN in a dose-dependent manner with a maximum activity after 30 min incubation. Comparison between PB, CR and SAL-PMNs indicated that 1) both CR and SAL-PMNs spontaneously produced large quantities of oxygen radicals, 2) CR and SAL-PMNs further produced oxygen radicals upon phorbol myristate acetate or opsonized-zymosan stimulation, and 3) SAL-PMN could not be further activated by supragingival plaque.

Dental Plaque↗

Helper T cells induced by a purified 28-kilodalton antigen of Schistosoma mansoni protect rats against infection.

Schistosoma mansoni adult worm 28-kilodalton (kDa) proteins were separated on polyacrylamide slab gels, recovered by electrophoretic elution, and used to immunize Fischer rats. After the second or third injection, inguinal lymph node T lymphocytes were propagated in vitro for 4 weeks in the presence of syngeneic antigen-presenting cells and adult worm antigens in medium containing interleukin-2. After this period of culture, 99% of the cells expressed the W3/13+ surface phenotype and 93% of the cells expressed the W3/25+ surface phenotype. These cells were then tested for their in vivo functional activity after transfer to Fischer rats that had been either infected with S. mansoni cercariae or immunized with the 28-kDa purified protein. In each case, an increase of S. mansoni-specific antibodies was observed. Whereas anti-28-kDa antibodies were only detectable at day 40 postinfection in controls injected with normal T lymphocytes, they appeared as early as day 13 postinfection when the animals received 28-kDa protein-specific T lymphocytes. This led to an effective protection of infected rats (45 to 85%) which correlated with the increase in S. mansoni-specific antibodies. These results therefore demonstrate that the 28-kDa protein possesses epitopes capable of activating helper T cells, which confer a strong protective immunity by enhancing the production of cytotoxic antibodies. The stimulation of the 28-kDa-specific T cells with recombinant proteins suggests that the major epitopes are located toward the carboxylic end of the molecule.

Animals↗

Platelets as effectors in immune and hypersensitivity reactions.

IgE receptors have been recently characterized on human blood platelets. These receptors share common properties within the Fc epsilon R2 previously described on macrophages and eosinophils with a Ka of 3 X 10(7) M-1 and a mean number of 600-1,000 binding sites for IgE per platelet. The production of an anti-Fc epsilon R2 monoclonal antibody has allowed the identification on platelet membrane preparations of two major bands of 43-45 and 31 kD. In parasitic infections (schistosomiasis, filariasis) IgE-dependent killing by platelets has been demonstrated. In allergic asthma and in Hymenoptera venom sensitivity patients, IgE-dependent activation of platelets expressed by the release of cytocidal mediators and oxidative burst can be specifically triggered by the corresponding allergen. In aspirin-sensitive asthma, a direct, non-IgE-dependent platelet activation by nonsteroidal anti-inflammatory drugs has been demonstrated. The platelet abnormality apparently involved a defect of the prostaglandin H2 binding to its specific receptor and a possible imbalance in the regulatory functions of the lipoxygenase metabolites. Platelet effector functions have been recently shown to be regulated by T cell factors. A novel suppressive lymphokine (PASL) produced by OKT8 T cell subset inhibits platelet activation and killing whereas IFN-gamma has been identified among T cell factors produced by OKT4+ cells able to trigger platelet activation. These observations open original perspectives into the pathogenesis, the diagnosis and the prevention of allergic and pseudoallergic disorders, and they provide support to the concept of a role for platelets in various immune and hypersensitivity reactions.

Animals↗

Effect of schistosome-derived inhibitory factor on the cell cycle of T lymphocytes.

A schistosome-derived inhibitory factor (SDIF) with immunosuppressive properties has been investigated for its effect on human T cell proliferation. We show here that SDIF has no effect on the process of lymphocyte activation because peripheral blood leukocytes (PBL) stimulated with lectin in the presence of SDIF increased normally their RNA content and showed normal acquisition of interleukin 2 (IL-2) and transferrin receptors. IL-2 production was not altered by SDIF but utilization of IL-2 was decreased, suggesting that SDIF blocked cells before or in the early s phase. Jurkat T cell line cells physically enriched for G1 cells were also more susceptible to SDIF inhibition. On the contrary, normal PBL or Jurkat cells which were already in the s phase were no more inhibited by SDIF. While SDIF has no effect on T lymphocyte activation and on production of regulatory lymphokines it selectively blocks T cell proliferation at G1 transition of the cell cycle.

Cell Cycle↗

GP38, P28-I and P28-II: candidates for a vaccine against schistosomiasis.

Three antigens protective against Schistosoma mansoni have been extensively characterized. The schistosomulum surface antigen GP38 possesses an immunodominant carbohydrate epitope of which the structure has been defined. Protection can be achieved via the transfer of monoclonal antibodies recognizing the epitope or by immunization with anti-idiotype monoclonal antibodies. The glycan epitope is shared with the intermediate host, Biomphalaria glabrata as well as being present on other molluscs, including the Keyhole Limpet. A group of molecules at 28 kDa were initially characterized in adult worms and shown to protect rats and mice against a challenge infection. One of these molecules, P28-I, was cloned and expressed in E. coli, yeast and vaccinia virus. The recombinant antigen significantly protected rats, hamsters and baboons against a challenge infection. P28-I is a glutathione-S-transferase and the recombinant antigen produced in yeast exhibits the enzyme activity and has been purified to homogeneity by affinity chromatography. A second P28 antigen, P28-II, has also been cloned, fully sequenced and expressed. This recombinant antigen also protects against S. mansoni infection.

Animals↗