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Biomedical subjects

D Camus

Publications and source records attributed to D Camus.

At least 55 records · Page 3Linked to original sources

Plasmodium falciparum: detection of P-glycoprotein in chloroquine-susceptible and chloroquine-resistant clones and isolates.

Recent studies have suggested the potential involvement of multidrug resistance (mdr) genes in resistance to quinoline-containing compounds in Plasmodium falciparum parasites. Three different antibodies were used to detect the malarial mdr 1 protein product by indirect immunofluorescence and/or immunoblot in fresh clinical isolates and clones of P. falciparum from different geographic origins. A 160-kDa protein was detected in all five parasite clones by immunoblot and around the food vacuole by IFA, regardless of the level of sensitivity to chloroquine and the modulation by desipramine of chloroquine accumulation. Our results suggest that chloroquine resistance is not correlated with the presence of the Pfmdr1 product.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Pneumocystitis carinii organisms from in vitro culture are highly infectious to the nude rat.

Many in vitro systems have been used to cultivate Pneumocystis, but only limited parasite growth has been obtained by different authors. A reliable in vitro system enabling a sustained propagation of Pneumocystis appears to be an important condition for a better definition of the transmission of P. carinii pneumonia. In this work, Pneumocystis in vitro culture was performed on monolayers of L2 rat lung epithelial-like cells. Ultrastructural assessment revealed that culture parasites were structurally intact. Pneumocystis culture samples were intratracheally inoculated into corticosteroid-treated nude rats (nonlatently infected by P. carinii), which developed P. carinii pneumonia at 40 days postinoculation. The infectious power of parasites obtained in vitro was 7-10 times higher than that of parasites freshly extracted from parasitized rat lung. In summary, the present results show that it is possible to obtain in vitro highly infectious Pneumocystis forms, and this study provides a promising infectivity test for use by investigators working on Pneumocystis in vitro systems.

Animals↗

Specific diagnostic antigens of Echinococcus granulosus detected by western blot.

A western blot assay was performed for the detection of Echinococcus granulosus specific antigens useful for the diagnostic of hydatic disease. 191 sera were tested, 105 coming from patients with different localizations of hydatic cysts and 86 from persons either healthy or presenting other diseases. 48 different antigenic bands were detected using sera from patients with hydatidosis. A 35 kDa antigen co-migrating with a band labeled by a McAb specific of antigen 5 was recognized in western blot by only 68% of the sera able to precipitate antigen 5 in immunoelectrophoresis. A 8 kDa antigen corresponding to the specific E. granulosus antigen already described has been recognized by 80% of the sera coming from patients with hydatidosis and not by the 86 control sera. Bands of 21, 30, and 92 kDa appeared also specific and were recognized by at least 50% of tested sera. These antigens appeared unrelated one to each other. 103 out of the 105 sera from patients with hydatidosis were able to recognize at least one of the 8, 21, 30, 35 or 92 kDa specific antigens. The present results suggest that western blot could be useful for the diagnosis of hydatidosis as far as the criteria of positivity is based on the recognition of at least one of the major specific antigens.

Animals↗

[Strongyloides stercoralis myelitis].

A 66 year-old man presented with a myelitis associated with eosinophilia in blood and cerebrospinal fluid. Specific serological procedures in blood and stool examinations led to the diagnosis of myelitis due to Strongyloides stercoralis. Physiopathology of medullary lesions is discussed. To our knowledge, this is the first report of myelitis in the course of Strongyloides infection.

Aged↗

The art of parasite survival.

Parasites develop and survive in an environment which is often hostile to them. When facing aggressive conditions parasites are able to use various and complex strategies. Echinococcus granulosus, Toxocara canis, Pneumocystis carinii, Entamoeba or Toxoplasma gondii are able to seclude from the environment when stressed by surrounding (immunologic or non-immunologic) aggressive factors. Specific antigens which exert a functional activity during a short period of time appear to be concealed from the immune attack at this crucial moment. This is the case for rhoptry or dense granule antigens of Plasmodium or Toxoplasma sporozoa involved in the formation of the parasitophorous vacuole which are released in a space perfectly isolated from the outside and therefore from antibodies. Some parasites like Schistosoma mansoni or Trypanosoma brucei reveal an amazing opportunistic behavior when they use cytokines of host origin induced by the infectious process for their own development. Leishmania, Toxoplasma and Trypanosoma cruzi are able to invade immunologically competent macrophages and to avoid the triggering of killing mechanisms of these cells. Parasites also take advantage of the genetic restriction of the immune response and it has been observed for Plasmodia that some high molecular weight antigens are unable to induce an immune response in particular strains of mice. Parasite receptors involved in the invasion of host cells by parasites can function in the presence of antibodies which can explain the failure of vaccination attempts targeting this type of molecules. Among the mechanisms developed by parasites to resist to drugs it appears that transmembrane transporters described in many protozoa or helminth parasites could play a role. Moreover, the description of parasite-specific enzymes able to protect them against the damaging effects of oxygen radicals suggests that parasites are potentially able to develop a resistance phenomenon against drugs acting via an oxidative burst.

Adaptation, Physiological↗

Similarities between the primary structures of two distinct major surface proteins of Toxoplasma gondii.

Toxoplasma gondii possesses a 43-kDa surface protein (SAG3) that is expressed by all invasive stages. We have cloned and sequenced cDNAs encoding SAG3, with the longest one encoding a primary product of 385 amino acid residues. The deduced amino acid sequence contains a putative NH2-terminal signal sequence, as well as a glycosylphosphatidylinositol anchor attachment site. It is characterized by 12 cysteine residues whose distribution suggests a tandem duplication of a single ancestral motif containing 6 cysteine residues. Although no DNA sequence analogies were found, comparative amino acid sequence analysis detected a resemblance to SAG1, which is the major surface antigen specifically expressed by the proliferative tachyzoite stage. Despite a low degree of identity between the two amino acid sequences (24%), the conservative distribution of the cysteine and tryptophan residues, as well as of repeated motifs, together with oligopeptide identities suggest similar folding and possibly similar function for both proteins.

Amino Acid Sequence↗

Experimental induction of bradyzoite-specific antigen expression and cyst formation by the RH strain of Toxoplasma gondii in vitro.

The differentiation of Toxoplasma gondii tachyzoites into bradyzoites has been studied experimentally in vitro using the virulent RH strain. The differentiation was monitored by immunofluorescence detection of stage-specific proteins by monoclonal antibodies and by electron microscopy. The expression of bradyzoite-specific proteins has been induced by modifying the culture conditions in any of the following three ways: increasing the pH of the culture medium (pH 8), shifting temperature from 37 to 43 degrees C, or performing a sodium arsenite treatment. Interferon-gamma, described as involved in the control of toxoplasmosis in vivo, was inefficient to trigger bradyzoite proteins expression in HFF host cells in vitro. The pH increase and heat treatment, but not the sodium arsenite, induced the formation of cysts whose fine structure was similar to that of cysts found in the brain of mice infected by avirulent strains. Our results therefore show that the tachyzoite-bradyzoite switch is not directly dependent on an immunomodulator, but is likely to arise from an alteration of the environment of the host cell-parasite complex.

Animals↗

Purification, characterization and amino terminal sequence of the superoxide dismutase from Babesia hylomysci.

Babesia hylomysci was found to contain two superoxide dismutase (SOD) isoenzymes with isoelectric points (pI) of 4.9 and 5.2. The two isoenzymes (45 and 47 kDa) were composed of two subunits of 22 kDa. An unique amino terminal sequence was determined up to 34 residues from the pooled isoenzymes and was identified as a sequence of SOD. The comparison of this N-terminal sequence of B. hylomysci SOD with 29 known Fe- or Mn-SODs showed more homologies with Fe-SODs.

Amino Acid Sequence↗

The yeast killer phenomenon: a hypothetical way to control Pneumocystis carinii pneumonia.

Pneumocystis carinii is an important agent of pneumonia in immunocompromised individuals, especially in acquired immunodeficiency syndrome AIDS patients P. carinii attaches specifically to type 1 pneumocytes. Although this phenomenon must play a marked role in pneumocystosis pathophysiology, no therapeutic molecules able to inhibit specifically the parasite attachment were found. A killer toxin, secreted by the yeast Pichia anomala, induced a significant decrease in P. carinii in vitro attachment and inhibited the parasite infectivity in SCID mice. Killer toxins cannot be used as systemic antibiotics. However, it was possible to produce antiidiotypic antibodies against a monoclonal antibody specific of the toxin active site. These antilds were shown to mimic the in vitro killer effect for the toxin and were called 'antibiobodies'. The susceptibility of P. carinii to the antimicrobial activity of the killer toxin made it possible to hypothesize that the killer phenomenon could constitute a new way for the treatment and prophylaxis of P. carinii infections.

Animals↗

H-2b restriction of the immune response to the p126 Plasmodium falciparum antigen.

Inbred BALB/c (H-2d), CBA (H-2k) and C57B1/6 (H-2b) mice immunized with Plasmodium falciparum schizonts or culture supernates develop antibodies of different antigenic specificities. It has been observed that C57B1/6 mice were unable to produce detectable antibodies against the p126 antigen (native molecule and p73 or p50 processed fragments) compared with other inbred mice. Similar results were obtained using BALB congenic mice with a lack of p126 antibody response in H-2b mice, while H-2d and H-2k mice produced antibodies against the p126. Lymphocyte proliferation assays performed by incubation of spleen cells with immunopurified p126 were positive for immunized BALB/c (H-2d) and congenic H-2d or H-2k mice. On the other hand, no lymphocyte stimulation was observed with either C57B1/6 (H-2b) or congenic H-2b mice. These results suggest an MHC restriction of the immune response against the entire p126 (found in schizonts) and its p73 and p50 naturally processed fragments (found in culture supernates).

Animals↗

Plasmodium yoelii in mice: antigen reactivity of CD4- and CD8-bearing T cells.

Mice infected with Plasmodium yoelii (265 BY, a nonlethal strain) after recovering from parasitemia become resistant to reinfection. In the present study, we have attempted to define the role of T cell subsets in primary vs secondary P. yoelii infection. We have evaluated the in vivo effects of selective depletion of each subset of T cells on the course of infection and also investigated the in vitro expansion of each subset in response to homologous antigen. Depletion of CD4- or CD8-bearing T cells did not result in reappearance of parasitemia in animals cured from primary infection. However, 25% of reinfected animals treated with anti-CD4 mAb, but not with anti-CD8 mAb, displayed a low level (2 to 3%) of parasitemia late in the secondary infection. The splenocyte response to P. yoelii antigen or to T-cell mitogens was impaired during patient infection, even in the 25% of CD4-depleted animals with low parasitemia. A markedly high lymphocyte reactivity to antigen was observed in mice recovered from primary infection, and this was enhanced in animals exposed to a challenge infection. In the case of animals cured from primary infection, a marked decrease in antigen-induced in vitro lymphocyte proliferation occurred in CD8-depleted but not in CD4-depleted animals when total splenic cell populations were assayed. Although less dramatic, a significant diminution in antigen reactivity was observed also with T-rich populations in CD8-depleted animals. In contrast, there was no such decrease in CD4-depleted mice. Treatment of resistant animals which were challenged with a second infection, with anti-CD4 or anti-CD8 mAbs, resulted in a significant decrease in the proliferative response to antigen by both T-rich and total cell populations. In the secondary infection, the T-rich cell populations from CD8-depleted mice responded better to P. yoelii antigen than the total cell populations, indicating an inhibitory role on the expansion of CD4+ T cells of B cells or their product(s) which were removed during T cell enrichment. The results of our study suggest that CD8-bearing T cells were more reactive in the primary infection. In the secondary infection, although both CD8+ and CD4+ T cells were antigen reactive, the latter T cell subset appeared to play a superior role in controlling the parasitemia.

Animals↗

Toxoplasma gondii: kinetics of bradyzoite-tachyzoite interconversion in vitro.

Stage-specific monoclonal antibodies have been used to investigate the bradyzoite-tachyzoite interconversion of Toxoplasma gondii in vitro. The differentiation of bradyzoites isolated from brain cysts (strains 76K and BQNC2) and grown in culture proceeded through intermediate stages which expressed both the specific markers of bradyzoites (P36, P34, P21, and P18) and a specific marker of tachyzoites (SAG1-P30). Differentiation started before parasite division, but large vacuoles containing intermediate stages were also found, suggesting that these were able to multiply. Intermediate stages were also observed during the differentiation of peritoneal tachyzoites (strain Prugniaud) into bradyzoites in vitro. Triggering of bradyzoite protein synthesis is not a single event since one of the four bradyzoite-specific proteins (P21) always appeared later than the others during bradyzoite differentiation. During interconversion, heterogeneous vacuoles containing parasites expressing different levels of bradyzoite or tachyzoite proteins were observed. This observation together with the fact that differentiation is not synchronous within a culture or within a host cell suggest a complex triggering process.

Animals↗

Presence of an endogenous superoxide dismutase activity in three rodent malaria species.

Superoxide dismutase (SOD) was investigated in three species of rodent malaria (Plasmodium berghei, P. yoelii and P. vinckei). The isoelectric points (pI) of isozymes found in purified parasites were identical. SOD activities detected by isoelectrofocusing at pl 5.0, 5.6, and 6.4 were cyanide-sensitive and could be considered as having been adopted by the parasites from the host red blood cell. The three rodent malaria parasites also contained a cyanide-resistant, hydrogen peroxide-sensitive SOD activity not found in the host red blood cell. It is therefore concluded that the three rodent malaria parasites possess an endogenous SOD. Two bands of endogenous SOD were found at pl 6.2 and 6.8 for the three species, and one additional band was detected at pl 5.7 for P. berghei and P. vinckei. This first report in rodent Plasmodium of a cyanide-resistant, hydrogen peroxide-sensitive SOD suggests that these parasites may be capable of at least partly resisting activated oxygen species using an endogenous SOD.

Animals↗

In vitro attachment of Pneumocystis carinii from mouse and rat origin.

The attachment of Pneumocystis carinii to lung cells could play a role in the pathophysiology of P carinii pneumonia. The trophozoite attaches to type I alveolar epithelial cells. Physical, chemical, and extracellular matrix factors, involved in the mouse-or rat-derived P carinii attachment to fibroblastic cells in culture, were examined using a new model of in vitro adherence. The development of parasite filopodia penetrating deeply the host cell cytoplasm was observed using transmission electronic microscopy. Killed P carinii organisms were unable to attach to cultured cells. Also, parasites were unable to attach to killed target cells. The P carinii in vitro attachment was partially inhibited by cytochalasin B. In contrast, the parasite attachment was not affected when the target cell cytoskeleton was altered. In our work conditions, sialic acids were not involved in the attachment process. Present results showed that fibronectin (Fn) plays a role in the parasite attachment, and suggest that a specific Fn-binding receptor is present at the surface of mouse-derived P carinii organisms.

Amino Acid Sequence↗

T-cell recognition of a cross-reactive antigen(s) in erythrocyte stages of Plasmodium falciparum and Plasmodium yoelii: inhibition of parasitemia by this antigen(s).

In the current study, we investigated the presence of a cross-reactive antigen(s) in the erythrocyte stage from Plasmodium yoelii (265 BY strain) and Plasmodium falciparum through recognition by T cells primed in vivo with antigens from each of these parasites. BALB/c mice are naturally resistant to P. falciparum but are susceptible to P. yoelii infection. Mice that had recovered from P. yoelii primary infection became resistant to a second infection. A higher in vitro proliferative response to a soluble blood stage preparation of P. falciparum was observed in splenic cells from immune animals than in those from mice with a patent P. yoelii infection. The antigen-induced proliferative response was enhanced when animals were exposed to a secondary infection. Animals exposed to a challenge infection were treated with anti-CD4 or anti-CD8 monoclonal antibodies to deplete the corresponding subset of T cells. There was a marked diminution in P. falciparum antigen-induced proliferative response in the total splenic cell populations from CD8-depleted but not from CD4-depleted mice. In CD8-depleted and nondepleted animals, the antigen-induced proliferation in the total cell populations was markedly lower than in the T-cell-rich populations, indicating inhibitory activities of B cells and/or macrophages. There was no such difference in the stimulation between total and T-enriched cell populations from CD4-depleted animals. Flow cytometry analysis demonstrated the presence of an almost equal percentage of CD8+ (59.6%) and CD4+ (64%) T cells in the spleen preparations following in vivo depletion of CD4- and CD8-bearing T cells, respectively. When cultured with P. yoelii blood stage antigen, splenocytes from animals immunized with P. falciparum antigen displayed a significant proliferative response which was markedly diminished by treatment with anti-Thy-1.2 antibody plus complement. Animals immunized with P. falciparum antigen and then challenged with P. yoelii blood stage parasites displayed about a 50% lower level of parasitemia. These results demonstrated the existence of a cross-reactive antigen(s) between a murine and a human Plasmodium species, as determined from both in vivo and in vitro biological assays, and indicated the reactivity of mainly CD8+ T cells with this antigen.

Animals↗

Immunogenicity of the Plasmodium falciparum serine repeat antigen (p126) expressed by vaccinia virus.

cDNA encoding the serine repeat antigen (SERA) (also called p126) of Plasmodium falciparum has been isolated from the FCR3 strain and inserted into a recombinant vaccinia virus designated vP870. Expression analysis of vP870-infected Vero cells by immunoprecipitation has demonstrated several intracellular forms of SERA and a single secreted SERA peptide. Endoglycosidase digestion of these immunoprecipitated SERA peptides indicated that the intracellular SERA peptides contain simple, high-mannose N-linked oligosaccharides and that the secreted SERA peptide contains complex N-linked oligosaccharides. Pulse-chase experiments indicate that the multiple intracellular SERA peptides in infected Vero cells represent a trafficking pathway whereby the smallest SERA peptide is converted into larger peptides by co- and posttranslational modifications, including glycosylation, and eventually secreted from the cell with complex N-linked oligosaccharides. To study the immunogenicity of vaccinia virus-expressed SERA, rabbits were immunized with vP870 and their sera were analyzed for reactivity with authentic, parasite-derived SERA protein. The anti-vP870 rabbit sera reacted with P. falciparum-infected erythrocytes by immunofluorescence analysis, recognized authentic SERA from schizonts by both immunoprecipitation and Western blot (immunoblot) analyses, and recognized proteolytically processed fragments of SERA secreted into the culture medium by Western blot analysis. These results indicate that when expressed by vaccinia virus, SERA is glycosylated and secreted from infected cells and that in immunized rabbits, vaccinia virus-expressed SERA can stimulate a humoral immune response against SERA derived from blood-stage parasites.

Animals↗