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M Capron

Publications and source records attributed to M Capron.

249 records · Page 14Linked to original sources

Molecular cloning of a protective antigen of schistosomes.

The complementary DNA sequence encoding the Mr 28,000 antigen of Schistosoma mansoni has been isolated and expressed in Escherichia coli. Experimental vaccination of rats, hamsters and monkeys with a recombinant fusion protein induces a strongly cytotoxic antibody response. Immunization of rats and hamsters with this protein leads to significant protection against a natural challenge infection with live cercariae.

Amino Acid Sequence↗

Expression of Th1 and Th2 immunoregulatory cytokines by human eosinophils.

Besides cytotoxic mediators, human eosinophils can produce proinflammatory and anti-inflammatory cytokines, as well as growth factors and chemokines. The demonstration that eosinophils from patients could produce IL-5, IL-4 and IL-2 suggested their participation in the regulation of immune response. In the present work, we have examined the presence of Th1 (IFN-gamma, IL-2) and Th2 (IL-4, IL-5, IL-10 and IL-13) cytokines in eosinophils from patients or donors by intracellular flow cytometry, and by immunocytochemistry. Whereas almost 100% eosinophils expressed intracellular IFN-gamma, IL-2 and IL-10, the expression of IL-4, IL-5 and IL-13 is more variable and increased in patients versus donors. The differential release by eosinophils of Th2 versus Th1 cytokines is suggested both by the decrease of the intracellular content after culture, restricted to IL-4, IL-5 and IL-13, associated with an accumulation of IL-4 and IL-5 in the presence of Brefeldin. These results indicate that, through the preferential release of Th2 cytokines, human eosinophils can participate in the polarization of the immune response.

Animals↗

Vaccine strategies against schistosomiasis: from concepts to clinical trials.

Schistosomiasis, the second major parasitic disease in the world after malaria, affects 200 million people. Vaccine strategies represent an essential component of the control of this chronic debilitating disease where the deposition of millions of eggs in the tissues is the main cause of pathology. Research developed in our laboratory over the last 20 years has led to the identification of novel effector mechanisms, pointing for the first time to the protective role of Th2 responses and of IgE antibodies now supported by seven studies in human populations. The identification and molecular cloning of a target antigen, a glutathione S-transferase (GST), has made it possible to demonstrate its vaccine potential in several animal species (rodents, cattle, primates) and to establish consistently the capacity of vaccination to reduce female worm fecundity and egg viability through the production of neutralizing antibodies (IgA and IgG). Following promising preclinical studies, clinical trials (phase I and II) have been undertaken using Schistosoma haematobium GST, Sh28GST. High titers of neutralizing antibodies were produced (IgG3 and IgA) together with Th2 cytokines, consistently with the concepts developed from experimental models. With these results we are on the way towards a feasible approach of vaccine development against a major human parasitic disease.

Animals↗

Synthesis of cytokines by eosinophils and their regulation.

In addition to cytotoxic and proinflammatory mediators, eosinophils can produce a variety of cytokines and growth factors. Besides interleukin (IL)-5, we show in the present work that human eosinophils can synthesize interferon (IFN)-gamma and IL-10, by RT-PCR, in situ hybridization and immunostaining. Double-labelling procedures revealed the coexpression of IL-5 and IL-10 but not IL-5 and IFN-gamma, indicating the existence of subpopulations of eosinophils expressing type 1 or type 2 cytokines. IFN-alpha efficiently used for the treatment of hypereosinophilic syndromes can significantly decrease eosinophil degranulation and IL-5 release by eosinophils, through binding to a receptor for IFN-alpha. Thus, eosinophils can represent major sources of cytokines with regulatory functions, especially in allergic diseases and parasitic infections.

Cytokines↗

Differentiation of eosinophils from cord blood cell precursors: kinetics of Fc epsilon RI and Fc epsilon RII expression.

Expression of Fc epsilonRI and Fc epsilonRII/CD23 was examined by immunocytochemistry and flow cytometry on eosinophils differentiated from human cord blood cells in the presence of human interleukin-3 (rhIL-3), granulocyte/macrophage colony stimulating factor (rhGM-CSF) and interleukin-5 (rhIL-5) and on blood eosinophils purified from normal donors or patients with idiopathic hypereosinophilic syndrome (HES). On cord blood derived eosinophils, Fc epsilonRI expression started at 1 week of culture and increased to reach a plateau at 3 weeks of culture. Fc epsilonRII/CD23 appeared slightly later, after 2 weeks of culture, and the percentage of Fc epsilonRII/CD23-positive eosinophilic cells increased and stayed in plateau. Fc epsilonRI expression on cord blood derived eosinophils was downregulated after culture with interleukin-2 (rhIL-2), interleukin-4 (rhIL-4), rhIL-5, interferon-alpha (rhIFN-alpha), interferon-gamma (rhIFN-gamma). In contrast, the expression of Fc epsilonRII/CD23 on cord blood derived eosinophilic cells was upregulated after culture with rhIL-4, rhIL-5 and rhIFN-gamma, and downregulated with rhIL-2 and rhIFN-alpha. Fc epsilonRI was expressed on about 30% normal donor eosinophils as well as on normodense eosinophils from HES patients but significantly decreased on hypodense eosinophils. In contrast, Fc epsilonRII/CD23, expressed on a very small proportion of normal donor eosinophils, increased from normodense to hypodense eosinophils. These results suggest that Fc epsilonRI on eosinophils might represent one differentiation antigen expressed relatively early, with decreased expression through maturation or activation, whereas Fc epsilonRII/CD23 might rather be considered as a marker of eosinophil activation.

Cell Differentiation↗

Development of a vaccine strategy against human and bovine schistosomiasis. Background and update.

Schistosomiasis is a chronic and debilitating parasitic disease that affects over 200 million people throughout the world and causes about 500,000 deaths annually. Two specific characteristics of schistosome infection are of primordial importance to the development of a vaccine: schistosomes do not multiply within the tissues of their definitive hosts (unlike protozoan parasites) and a partial non-sterilizing immunity can have a marked effect on the incidence of pathology and on disease transmission. Since viable eggs are the cause of disease pathology, a reduction in worm fecundity whether or not accompanied by a reduction in parasite burden is a sufficient goal for vaccine induced immunity. We originally showed that IgE antibodies played in experimental models a pivotal role for the development of protective immunity. These laboratory findings have been now confirmed in human populations. Following the molecular cloning and expression of a protein 28 kDa protein of Schistosoma mansoni and its identification as a glutathion S-transferase, immunization experiments have been undertaken in several animal species (rats, mice, baboons). Together with a significant reduction in parasite burden, vaccination with Sm28 GST was recently shown to reduce significantly parasite fecundity and egg viability leading to a decrease in liver pathology. Whereas IgE antibodies were shown to be correlated with protection against infection, IgA antibodies have been identified as one of the factors affecting egg laying and viability. In human populations, a close association was found between IgA antibody production to Sm28 GST and the decrease of egg output.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Induction of CD23, CD25 and CD4 expression on an eosinophilic cell line (EoL-3) by interleukin-3 (IL-3), granulocyte-macrophage colony-stimulating factor (GM-CSF) and interleukin-5 (IL-5).

The effects of IL-3, GM-CSF and IL-5 on the expression of CD23 (Fc epsilon RII), CD25 (IL-2R/p55) and CD4 on an eosinophilic cell line (EoL-3) were investigated by flow cytometry. A separate incubation with IL-3, GM-CSF or IL-5 alone, did not induce the expression of CD23, CD25, or CD4. However, a sequential incubation with IL-3 for 6 days, then with IL-3 and GM-CSF for the following 6 days, induced a significant expression of CD23 and CD25. After a further incubation for 6 days with IL-3, GM-CSF and IL-5, CD4 was then expressed, while CD23 and CD25 expression still increased. The kinetics of expression of CR3/CD11b were parallel to that of CD23, but the expression of the transferrin receptor (CD71) remained negative. Northern blot analysis revealed the presence of mRNA encoding CD23, CD25 and CD4 in EoL-3 stimulated by IL-3, GM-CSF and IL-5. Culture with GM-CSF induced the binding of radiolabeled IL-5 to EoL-3 cells, with an increased affinity after incubation with IL-3, GM-CSF and IL-5. These data indicate that IL-3, GM-CSF and IL-5, might be involved in the expression of functional markers on eosinophil membrane.

Adult↗

Delaying rejection in discordant heart xenografts in the rat: efficacy of cyclosporin, prostaglandin I2 and exchange transfusion.

If effective modes of prevention of hyperacute rejection were available, the problem of the absence of enough suitable donors could be solved by the use of organ xenografts. Organ xenograft rejection is principally mediated by preformed antibodies which are responsible for the hyperacute pattern of rejection. We decided therefore to study various methods of prevention of rejection in the guinea pig to Lewis rat combination (donor-recipient discordant species) in which hyperacute rejection is particularly intense. Three series of experiments were performed. In the first series immunosuppression of the recipient was induced using an oral solution of cyclosporin A. In the second series antiplatelet-aggregation therapy was administered to the recipient, using intravenous prostacyclin (PGI2). In the third series antibody depletion of the recipient was attempted using exchange transfusion with or without prostacyclin perfusion. The most significant (p less than 0.01) prolongation of graft survival time was observed when combining exchange transfusion (8 ml) and PGI2 infusion (620 ng/kg/min). This observation suggests that, if antibody depletion in the recipient is the primary goal, measures aiming at reducing the consequences of the antigen-antibody reaction are also necessary to improve the results of organ xenografting.

Animals↗

Complement studies in BN rats with mercuric chloride-induced immune glomerulonephritis.

Whole complement haemolytic activity (CH50) changes were examined in 71 rats, developing and HgCl2-induced biphasic immune glomerulonephritis. In some rats, serum C4 level was also studied. Whole CH50 level was compared with proteinuria and C3 glomerular deposits. In control rats or in rats injected with low doses of HgCl2, there was no complement decrease. In rats injected with a high dose, after an initial increase (also observed in controls), CH50 level decreased between day 12 and day 20, sometimes dramatically. This decrease, observed during the first phase, was transient, CH50 levels returning to normal before day 30. Serum C4 level varied in accordance with CH50, indicating a classical pathway activation of complement. Fall in CH 50 and proteinuria was correlated: the heavier the proteinuria, the greater the fall in complement (p < 0.01). Whether proteinuria is or is not the consequence of the complement activation, remains to be demonstrated.

Animals↗