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A Capron

Publications and source records attributed to A Capron.

At least 37 records · Page 2Linked to original sources

Analysis of antigenicity and immunogenicity of five different chemically defined constructs of a peptide.

The aim of this study was to compare the antigenicity and the immunogenicity of five constructs of a peptide, including the peptide in single copy, a tandem repeat containing three copies, a copolymer with glutaraldehyde and two constructs based on the MAP (Multiple Antigenic Peptide) model, one containing two copies (MAP-2) and the other, eight copies of the peptide (MAP-8). The peptide used in this test was the 115-131 sequence derived from the rSm28-GST antigen of Schistosoma mansoni. All constructs were recognized by rSm28-GST specific antibodies in solid phase immunoassays. However, the binding was higher when the MAP-8 was used as antigen at least partly because of its better coating on the microtiter plates. In vitro lymphoproliferative assays showed that polymer was mitogenic, repeat and MAP-2 did not stimulate rSm28-GST specific T cells while MAP-8 induced a slight response. The injection of MAP-8 to rats led to important antibody and T cell responses higher than those obtained with the other constructs. The IgG2a (cytotoxic antibody in schistosomiasis)/IgG2c (blocking antibody) ratio was independent of the immunogen. Taken together these results demonstrate that both the antigenicity and the immunogenicity of a peptide containing T and B cell epitope(s) are strongly related to the molecular form whereby it is presented and that the MAP-8 construct can be useful in serodiagnosis or in vaccination trials using synthetic peptides.

Amino Acid Sequence

Inter-species variation of schistosome 28-kDa glutathione S-transferases.

The 28-kDa glutathione S-transferase from Schistosoma mansoni (Sm28GST) is a candidate vaccine antigen. To evaluate the antigenic and phylogenetic variations between the 28-kDa GSTs from 4 species of schistosome, we have cloned and sequenced the 28-kDa GSTs from Schistosoma haematobium (Sh28GST) and Schistosoma bovis (Sb28GST). Sb28GST and Sh28GST are more similar to each other (97%) than to Sm28GST (90%) and particularly to the 28-kDa GST from Schistosoma japonicum (Sj28GST, 77%). Antisera directed against the major Sm28GST epitopes revealed differences in the recognition of the 28-kDa GSTs from the other schistosome species suggesting that these regions have been subjected to evolutionary pressure. The consequences of such species-specific epitopes on the development of a multi-species anti-schistosome vaccine are discussed.

Amino Acid Sequence

Cloning and sequencing of a 24-kDa Trypanosoma cruzi specific antigen released in association with membrane vesicles and defined by a monoclonal antibody.

In the present study we have used the Tcr7 monoclonal antibody (mAb) previously characterized as directed against Trypanosoma cruzi 24-25-kDa specific antigens, both are immunogenic in man and during experimental T cruzi infections. We have demonstrated that mAb Tcr7 was able to recognize two in vitro translation products of molecular weights of 24 and 25 kDa. This suggested the holoproteic nature of these two related antigens bearing at least a common epitope and allowed us to use Tcr7 for an immunoscreening of a lambda ZAPII T cruzi cDNA library. Indeed, we have obtained several positive clones and completely sequenced the largest one which encoded theoretically for a protein of 23.7 kDa. The sequence analysis revealed a nearly perfect homology between this clone and one already described by other investigators and was shown to express a major flagellar protein of T cruzi able to bind calcium. Using different overlapping peptides derived from the sequence of the cDNA clone, we have localized the immunoreactivity of mAb Tcr7 mainly on several primary sequences present in the N-terminal part of the sequence, suggesting that the mAb could recognize a discontinuous epitope. Moreover, the immunoelectron microscopy allowed us to show that the antigen(s) carrying the epitope reacting with mAb Tcr7 is (are) released in association with membrane vesicles which protruded from the parasite surface and the flagellar pocket. This new mechanism of antigen shedding is likely to be independent of phospholipase C-mediated release of GPI-anchored molecules.

Amino Acid Sequence

Trypanosoma cruzi glutathione-binding proteins: immunogenicity during human and experimental Chagas' disease.

Following purification by affinity chromatography, three glutathione-binding proteins (TcGBP) of 45, 30, and 25 kDa were co-purified from Trypanosoma cruzi epimastigotes. Using 1-chloro-2,4 dinitrobenzene as substrate, a glutathione S-transferase activity of 70 nmol/min/mg of proteins was detected in the GSH binding fraction. An increased expression of TcGBP and total GST activity was observed upon incubation of parasites with phenobarbital, which is an inducer of GST synthesis. Immunofluorescence and electron microscopic experiments demonstrated that TcGBP were expressed by all developmental stages of the parasite, including infective forms. The expression of these proteins by intracellular dividing amastigotes could be in favour of a potential defensive role of these molecules against host attack. Results obtained by immunoprecipitation of in vitro translation products using anti-TcGBP antisera suggested that these three polypeptides are not glycosylated. In addition, antibodies directed against the TcGBP were found in a high proportion of T. cruzi-infected chronic chagasic patients' sera and in sera of chronically infected BALB/c mice. In contrast, acute chagasic patients' sera and acute-phase mouse sera were found to be poorly reactive with these proteins. Our results identify a new class of potential target antigens, which may be essential for the development of T. cruzi in its host. Their protective role in experimental models deserves to be investigated.

Animals

Levels of soluble IL-2 receptor in plasma from asthmatics. Correlations with blood eosinophilia, lung function, and corticosteroid therapy.

Evidence now suggests that eosinophils and T lymphocytes infiltrating bronchial tissues may play a key role in the pathophysiology of asthma. Circulating eosinophils, lung function, and plasma soluble IL-2 receptor (sIL-2R) were measured in 42 asthmatic patients referred for symptomatic asthma. The patients were divided into two groups based on the presence or absence of atopy. The group of non-atopic asthmatics was further divided according to the patients' requirement for long term oral corticosteroids. The mean sIL-2R +/- s.d. was 36.3 +/- 9.9 pM in the control group, 28.9 +/- 9.2 pM in the atopic asthmatics, 43.3 +/- 18.07 pM in the non-atopic asthmatics without oral steroid therapy, but was increased in the steroid-treated group (62.2 +/- 19.3 pM, P less than 0.01). A significant correlation was found between FEV1 and circulating eosinophils in atopic asthmatics and in non-atopic asthmatics without oral corticosteroid therapy, but not in the steroid-treated group. Furthermore, significant correlations were found between sIL-2R and FEV1, and between sIL-2R and blood eosinophils, in the group of non-atopic asthmatics not on oral steroid therapy. No such correlations were evidenced in the other groups of asthmatics. Similar results were obtained during the clinical course of three non-atopic patients followed for more than 1 year. These data suggest that T cell activation appears more prominent in non-atopic asthma than in atopic asthma. Moreover, it appears that T cell activation can occur in severe forms of asthma despite steroid treatment. Finally, the results suggest a possible link between T cell activation, eosinophils, and lung function, which may reflect a particular pathogenetic mechanism involved in non-atopic asthma.

Adrenal Cortex Hormones

T-cell-dependent immunity and thrombocytopenia in rats infected with Plasmodium chabaudi.

Normal, splenectomized, and athymic Fischer rats were infected with Plasmodium chabaudi. In normal rat infections, acute-phase infection resolved rapidly and completely. In splenectomized rats, infection resulted in high parasitemia and ultimately death. In nude rats, parasite growth was reduced compared with normal rats, and a persistent parasitemia (between 20 and 45%) was observed for several months. Complete resolution of the infection was achieved after adoptive transfer of T lymphocytes, even when transfer occurred during the course of infection. These results indicated that an acquired, T-lymphocyte-dependent immunity was necessary for the complete recovery observed in normal rats. In normal rats, thrombocytopenia and splenomegaly occurred during infection. By contrast, in nude rats, both of these pathological manifestations were only observed after thymus grafting. Thrombocytopenia was also absent in the splenectomized animals. Despite an increase in platelet-associated immunoglobulin levels during the infection, thrombocytopenia was not transferred by injection of infected rat serum to normal recipients. It has been concluded that the nude rat infection can be regarded as a novel and useful model for studying the T-cell-dependent effector and pathological mechanisms and to investigate the anti-P. chabaudi immune response.

Animals

Polyclonal cell activity of a repeat peptide derived from the sequence of an 85-kilodalton surface protein of Trypanosoma cruzi trypomastigotes.

Some in vitro and in vivo biological activities of an octadecapeptide derived from an 85-kDa surface protein of Trypanosoma cruzi trypomastigote were studied. The peptide coupled to a carrier protein induced the proliferative response of lymph node cells from mice immunized with various antigens. Moreover, sera from mice immunized with the coupled peptide were found to contain antibodies against a number of self and nonself antigens: fibronectin, bovine serum albumin, myosin, tetanus toxoid, ovalbumin, keyhole limpet hemocyanin, and DNA. These results are discussed in the context of Chagas' disease immunopathology.

Amino Acid Sequence

Immunologic aspects of schistosomiasis.

Immunity to schistosomes, helminth worms that infect 200 million people, is targeted to invading larvae (concomitant immunity). In vitro studies have revealed the role of T cells and of particular antibody isotypes in immune defense: IgE antibody cooperates with mononuclear phagocytes, eosinophils, and platelets to kill schistosome larvae. IgE antibody appears as an essential component of acquired resistance in rats. The role of IgE antibody has recently been confirmed by epidemiological studies demonstrating a positive correlation between the acquisition of resistance to reinfection by schistosomes and the level of IgE antibody to the parasite. A negative correlation found in these studies with the levels of IgM, IgG2, or IgG4 antibodies could be related to the development of a blocking antibody response. Antigens involved in protective immunity are expressed transiently at the surface of schistosomes. Sm28, a glutathione-S-transferase, induces significant protection against schistosome infection in rodents and nonhuman primates. In addition, this vaccine reduces the size of egg granulomas and egg output. Besides allowing the definition of a vaccine strategy against a major disease, studies on immunology of schistosomiasis have unraveled unsuspected antigenic mimicry between schistosomes and HIV regulatory proteins and have led to the demonstration that IgE antibody, a protective isotype against helminths, may also activate Fc epsilon-RII-bearing mononuclear phagocytes, eosinophils, and platelets in allergic disease.

Animals

Specific activation of platelets from patients allergic to Dermatophagoides pteronyssinus by synthetic peptides derived from the allergen Der p I.

Previous studies have shown that Fc epsilon RII-bearing platelets from patients with allergic disorders could be stimulated either by anti-human IgE antibodies or the relevant allergens to generate cytotoxic mediators. In this report, the reactivity of platelets from Dermatophagoides pteronyssinus (D. pt)-sensitive patients to three Der p I-derived synthetic peptides (52-71, 117-133 and 188-199) was investigated. The platelet stimulation observed in D. pt-sensitive patients was demonstrated to be allergen-specific and to be mediated by IgE. These Der p I-derived peptides failed to stimulate platelets from healthy donors or platelets from non-D. pt-allergic patients. D. pt-sensitive patients responded more frequently to the peptides 52-71 and 117-133 than to the peptide 188-199. Thus, in this model, synthetic peptides selected for their assumed accessibility on the native antigen could be associated to an IgE-dependent biological activity.

Adult

Tumor necrosis factor alpha and interleukin-6 production by human mononuclear phagocytes from allergic asthmatics after IgE-dependent stimulation.

We have previously demonstrated the production of tumor necrosis factor alpha (TNF) and interleukin-6 (IL-6) by alveolar macrophages (AM) from allergic asthmatics developing a late asthmatic reaction after bronchial allergen challenge. In order to explain the modalities of this monokine synthesis, we tested in vitro the effect of an IgE-dependent stimulation on blood monocytes (BM) and AM from control and asthmatic subjects. TNF and IL-6 secretions were evaluated in 24-h supernatants by radioimmunoassay and by the 7TD1 cell proliferation test, respectively. AM from allergic asthmatics secreted spontaneously higher concentrations of TNF and IL-6 than did BM or AM from control subjects. BM from asthmatics also produced spontaneously increased levels of TNF, but at a lesser degree than did AM. The addition of anti-IgE induced a significant increase of TNF and IL-6 secretions by mononuclear phagocytes from control subjects only after previous sensitization with IgE-rich medium. In contrast, the direct stimulation by allergen or anti-IgE of AM and BM from asthmatics enhanced significantly the production of TNF and IL-6 when compared with cells cultured in medium alone. In these conditions, IgE-dependent activation of cells from allergic asthmatics compared with those from control subjects increased monokine production in a similar manner. Costimulation by recombinant human interferon gamma and IgE-dependent triggering had a synergistic effect on TNF production, but it had only an additive action on IL-6 synthesis (respective increase index: 9.8 compared with 2.9 and 9.8 compared with 2.1, respectively, for BM from control and asthmatic subjects).(ABSTRACT TRUNCATED AT 250 WORDS)

Asthma

Diagnostic value of a synthetic peptide derived from Echinococcus granulosus recombinant protein.

A specific monoclonal antibody (MAb; EG 02 154/12) directed against a protein epitope of Echinococcus granulosus antigen 5 was used to screen a cDNA library constructed from E. granulosus protoscoleces RNA. One clone designated Eg14 was selected and shown to code for an amino acid sequence partially homologous to that of the clone Eg6 previously identified with the same MAb. Hydrophobic cluster analysis showed that both recombinant antigens may adopt a similar alpha-helical organization and share a common conformational epitope. A synthetic peptide (89-122) mimicking the conformational site of Eg6 and Eg14 was constructed and demonstrated to be able to inhibit binding of the MAb and human hydatid sera to the Eg6 fusion protein (FP6) or to native hydatid antigens. To assess the diagnostic value of the peptide 89-122, we tested sera from patients infected with different parasites for their antibody reactivity with this peptide in ELISA. A high binding sensitivity and specificity of IgG-A-M antibodies were obtained with E. granulosus-infected patient sera. Moreover, the peptide 89-122 was found to be specifically recognized by IgE antibodies from patients with hydatid disease. These results indicate the particular interest of this synthetic peptide as a standardized antigen in diagnosis and treatment surveillance of hydatidosis.

Amino Acid Sequence

Vaccine strategies against schistosomiasis.

In this review the authors analyze the effector and regulatory mechanisms in the immune response to schistosomiasis. To study these mechanisms two animal models were used, mouse and rat. The mouse totally permissive host like human, show prominent-T cell control in the acquisition of resistance. But other mechanisms like antibody mediated cytotoxicity (ADCC) involving eosinophils and IgG antibodies described in humans, are observed in rats. Also in this animal, it is observed specific IgE antibody high production and blood and tissue eosinophilia. Using the rat model and schistosomula as target, some ADCC features have emerged: the cellular population involved are bone marrow derived inflammatory cell (mononuclear phagocytes, eosinophils and platelets), interacting with IgE through IgE Fc receptors. Immunization has been attempted using the recombinant protein Sm28/GST. Protection has been observed in rodents with significant decrease of parasite fecundity and egg viability affecting the number, size and volume of liver egg granulomas. The association of praziquantel and immunization with Sm28/GST increases the resistance to infection and decreases egg viability. The authors suggest the possibility of the establishment of a future vaccine against Schistosoma mansoni.

Animals

Effector functions of eosinophils in schistosomiasis.

The dual function of eosinophils is clearly illustrated in schistosomiasis. Well equipped in membrane receptors for immunoglobulins and complement, and due to the presence of granule basic proteins, eosinophils can become cytotoxic for parasite larvae and thus participate to protective immunity. However, mediators can also exert their cytolytic effect on normal cells or tissues, inducing therefore pathology. through ADCC mechanisms against schistosome larvae in vitro involving different antibody isotypes (IgG, IgE and IgA) and also in experiments performed in vivo, eosinophils have been clearly involved in protective immunity. Although no direct evidence of the protective role of eosinophils were brought in humans, the striking association of eosinophil-dependent cytotoxic antibody isotypes with resistance to reinfection (for instance IgE and IgA antibodies), whereas in vitro blocking antibody isotypes (IgG4, IgM) were detected in susceptible subjects, strongly, suggested the participation of eosinophils in antibody-dependent protective immune response. However eosinophils could also participate to granuloma formation around S. mansoni eggs and consequently to the pathological reactions induced by schistosomiasis.

Animals

Vaccine strategies against schistosomiasis.

Schistosomiasis, the second major parasitic disease in the world after malaria affects at least 200 million people, 500 million being exposed to the risk of infection. It is widely agreed that a vaccine strategy which could lead to the induction of effector mechanisms reducing the level of reinfection and ideally parasite fecundity would deeply affect the incidence of pathological manifestations as well as the parasite transmission potentialities. Extensive studies performed in the rat model have allowed the identification of novel effector mechanisms involving IgE antibodies and various inflammatory cell populations (eosinophils, macrophages and platelets) whereas regulation of immune response by blocking antibodies has been evidenced. Recent epidemiological studies have now entirely confirmed in human populations the role of IgE antibodies in the acquisition of resistance and the association of IgG4 blocking antibodies with increased susceptibility. On the basis of these concepts, several schistosome target proteins have been identified and their encoding genes cloned. One of them, a schistosome glutathione S-transferase (Sm 28 GST) appears as a promising vaccine candidate. Immunization experiments have shown that two complementary goals can be achieved: (a) a partial but significant reduction of the worm population (up to 60% in rats); (b) a significant reduction of parasite fecundity (up to 70% in mice and 85% in cattle) and egg viability (up to 80%). At least two distinct immunological mechanisms account for these two effects. IgE antibodies appear as a major humoral component of acquired resistance whereas IgA antibodies appear as a major humoral factor affecting parasite fecundity.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals