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Biomedical subjects

J Dupouy-Camet

Publications and source records attributed to J Dupouy-Camet.

At least 19 recordsLinked to original sources

Evidence for the existence of a proteasome in Toxoplasma gondii: intracellular localization and specific peptidase activities.

The proteasome is a large intracellular protein complex whose main function is proteolytic removal of damaged proteins. It has recently been shown that the proteasome has a crucial role in the pathogenesis of protozoan parasites. We attempted to characterize the proteasome of T. gondii (RH strain). In immunoblot experiments, we showed that MCP231 monoclonal antibody, directed against the human 20S proteasome, labelled homologous proteins in T. gondii with a pattern similar to that observed in mammalian cells. The study of in vitro proteolytic activities showed that chymotrypsin-like activity (the only activity obtained with archaebacteria) was present in Toxoplasma, with Km and specific activity values close to those observed with eukaryotic cells. Immunofluorescence studies showed that the Toxoplasma proteasome predominated in the cytosol.

Animals↗

Detection of tyrosine phosphorylated proteins in Trichinella spiralis L1 larvae.

Western-blotting analysis showed the presence of tyrosine phosphorylated proteins in crude extracts of T. spiralis larvae and these phosphorylated proteins were located by immunofluorescence on the striations of the larval cuticle. The patterns of phosphorylated proteins were modified when larvae were incubated with bile.

Animals↗

Trichinella murrelli: pathological features in human muscles at different delays after infection.

The authors describe the pathological aspects of muscles of three patients infected with Trichinella murrelli. Biopsies were carried out at various intervals. Six weeks after infection, the muscular larvae were not encapsulated whereas encapsulation was seen 10 weeks after infection. Six years after infection, the larvae were still alive in a nurse cell surrounded by a very thick capsule. Fourteen years after infection, cuticular larvae remnants were seen in degenerating nurse cells. The late encapsulation of Trichinella murrelli in human muscles could explain some clinical differences noticed during the outbreak during which these three patients were infected.

Adult↗

[Mitogen activated protein kinases (MAPK) and Toxoplasma gondii host cell invasion].

Toxoplasmosis is still a big concern in Public Health in France, regarding two particular aspects: congenital toxoplasmosis and reactivated toxoplasmosis in immunodeficient patients. Toxoplasma gondii is an obligate intracellular parasite, that can invade almost all nucleated cells. The invasion step has been widely studied, but its accurate mechanism and the cell receptor remain largely unknown. In this work, we have attempted to investigate the role of kinases and signal transduction in the host cell penetration. We characterized mitogen-activated protein kinases (MAPK). in the parasite itself by immunoblotting, immunofluorescence, and determination of enzymatic activity. In particular, we identified two proteins of 43 and 47 kDa, that could be homologues of extracellular signal-regulated kinases (ERK), i.e. ERK2 and ERK1, respectively. These parasite MAPK are activated by calcium and phorbolmyristyl acetate and inhibited by RO 31-8220, suggesting an activation through protein kinases C (PKC). Indeed the MAPK kinase (= MEK) inhibitor PD98059 inhibits the activation of parasite MAPK, suggesting that a MEK homologue could be responsible for the dual phosphorylation of MAPK on tyrosine and threonine residues, necessary for their activation. Finally, we demonstrated that activation or inhibition of parasite MAPK by preincubation of parasites with various activators or inhibitors led to an increased or reduced host cell invasion in vitro by parasites, respectively. All these results are in favour of a role of ERK-type parasite kinases in T. gondii infectivity in vitro.

Animals↗

Trichinellosis: a worldwide zoonosis.

Trichinella spp. are some of the most widespread parasites infecting people and other mammals all over the world, regardless of climate. This paper attempts to describe the present status of trichinellosis worldwide and to determine if and why trichinellosis is emerging or re-emerging. The global prevalence of the disease is difficult to evaluate but as many as 11 million people may be infected. More than 10000 cases of human trichinellosis were reported by the International Commission on Trichinellosis from 1995 to June 1997 and about 10000 porcine infections were reported by the Office International des Epizooties in 1998. The disease is particularly worrisome in the Balkans, Russia, the Baltic republics, in some parts of China and Argentina. Horsemeat-related outbreaks have been reported in France and Italy and have involved about 3000 patients in the past 25 years. The emergence of trichinellosis in some countries is explained by a better knowledge of the disease (formerly often misdiagnosed as influenza), modifications of consumer habits, re-forestation in Europe and increase of wild game, importation of meats from countries where trichinellosis is endemic and failure of veterinary control due to human error or to social upheavals. This disease linked to meat-consumption which is theoretically easy to prevent by adequate cooking, freezing and veterinary controls, should deserve the attention of all persons involved in public health and it could be eradicated at least from domestic pigs.

Animals↗

Biochemical characterization of mitogen-activated protein (MAP) kinase activity in Toxoplasma gondii.

Mitogen-activated protein (MAP) kinase or extracellular signal-regulated kinase (ERK) are activated by many extracellular stimuli. In this study, we investigated whether MAP kinase and tyrosine kinases were involved in transducing signals in Toxoplasma gondii. Using anti-phosphotyrosine and anti-active ERK antibodies, we identified several phosphorylated proteins in Toxoplasma. In particular, phosphorylation of a 47 kDa and a 43 kDa protein increased strongly after calcium influx. MAP kinase activity, caused by calcium influx, was determined using either a specific synthetic peptide, or an in gel kinase assay. Conversely, calcium chelators (BAPTA and EGTA) and a calcium channel blocker (nifedipine) inhibited this activation. Also, a specific inhibitor of MAP kinase kinase (PD 098059) blocked MAP kinase activity. Three specific anti-MAP kinase antibodies recognized the 47 kDa and 43 kDa proteins, which were putatively identified as ERK1- and ERK2-homologs, respectively. These findings provide early evidence of signal transduction involving members of the MAP kinase family in T. gondii.

Animals↗

Neosynthesized IgG detected by Western blotting in Toxoplasma-seropositive heart or lung transplant recipients.

Toxoplasmosis is a life-threatening disease in heart- or lung transplant recipients that can result either from the reactivation of a latent infection or from an organ-transmitted infection. The diagnosis of acute toxoplasmosis is easy in cases of seroconversion following a mismatch. However, when the recipient is Toxoplasma-seropositive before transplantation, usual serological techniques do not allow the differentiation between endogenous and organ-related reinfection. The aim of this study was to determine whether western blotting could contribute to this differentiation. Sequential sera from two heart- and one liver- and lung transplant patients whose anti-Toxoplasma antibody titers strongly increased after transplantation, were analyzed by western blotting. Neosynthesized IgG were observed on blots incubated with the sera from two patients who had received transplants from Toxoplasma-seropositive donors, whereas no neosynthesized IgG was detected on blots from the patient who had received a transplant from a Toxoplasma-seronegative donor. Our results suggest that the detection of neosynthesized IgG in the recipient may be related to the recognition of a new parasite strain possibly brought by the transplant from a Toxoplasma-seropositive donor.

Adolescent↗

Involvement of the mitogen-activated protein (MAP) kinase signalling pathway in host cell invasion by Toxoplasma gondii.

Little is known about signalling in Toxoplasma gondii, but it is likely that protein kinases might play a key role in the parasite proliferation, differentiation and probably invasion. We previously characterized Mitogen-Activated Protein (MAP) kinases in T. gondii lysates. In this study, cultured cells were tested for their susceptibility to Toxoplasma gondii infection after tachyzoite pretreatment with drugs interfering with MAP kinase activation pathways. Protein kinases inhibitors, i.e. genistein, RO31-8220 and PD098059, reduced tachyzoite infectivity by 38 +/- 4.5%, 85.5 +/- 9% and 56 +/- 10%, respectively. Conversely, protein kinases activators, i.e. bombesin and PMA, markedly increased infectivity (by 202 +/- 37% and 258 +/- 14%, respectively). These results suggest that signalling pathways involving PKC and MAP kinases play a role in host cell invasion by Toxoplasma.

Animals↗

Lack of utility of specific immunoglobulin G antibody avidity for serodiagnosis of reactivated toxoplasmosis in immunocompromised patients.

The avidities of Toxoplasma-specific immunoglobulin G serum antibodies were measured in immunocompromised patients presenting with cerebral or extracerebral toxoplasmosis and/or serological reactivation. Since avidity remained high and stable in 39 of 40 patients with toxoplasmosis and 27 of 28 patients with serological reactivation, we conclude that this test cannot help diagnose toxoplasmosis in these patients.

Animals↗

Performance of a Western blot assay to compare mother and newborn anti-Toxoplasma antibodies for the early neonatal diagnosis of congenital toxoplasmosis.

The aim of this study was to retrospectively evaluate the performance of a Western blot assay to compare mother and newborn anti-Toxoplasma gondii antibodies for the early neonatal diagnosis of congenital toxoplasmosis. Since specific anti-Toxoplasma IgM or IgA is detected inconstantly at birth in the neonate, the diagnosis of congenital toxoplasmosis is often delayed until 6-9 months, after IgG titers have been observed persistently. In this study, 81 paired samples from 60 mother/child pairs were tested for IgG and IgM patterns. All mothers had (or were strongly suspected to have) acquired toxoplasmosis during pregnancy. Specific IgM and IgA were simultaneously detected by immunocapture tests, and IgG was titrated. A serological and clinical follow-up of infants was conducted during the first year of life until the diagnosis of congenital toxoplasmosis could be either confirmed or ruled out. Seventeen of the 60 newborns were congenitally infected. Specific IgM or IgA was detected by immunocapture at birth in 76.5% and 70.6% of cord sera from infected neonates, respectively, with an equal specificity of 77.5%. Comparative Western blot allowed the detection of neosynthesized IgG and IgM in the cord blood of 50% and 78.6% of infected infants, respectively, with a specificity of 100%. The combination of IgA and IgM immunocapture tests, the analysis of IgG and IgM Western blot patterns, and the combination of both techniques allowed the detection of 94%, 94%, and 100% of cases within the first 3 months of life, respectively. In conclusion, Western blotting seems to be a useful complementary tool for the early postnatal diagnosis of congenital toxoplasmosis.

Animals↗

Localized oral Fusarium infection in an AIDS patient with malignant lymphoma.

We report here a case of localized oral Fusarium infection in an AIDS patient who developed an ulceration in the soft palate. Fusarium solani was identified by histopathology and culture. We believe this to be the second reported case of oral Fusarium infection in a patient with haematological malignancy and the first reported association of oral Fusarium infection with AIDS.

AIDS-Related Opportunistic Infections↗

Value of prenatal diagnosis and early postnatal diagnosis of congenital toxoplasmosis: retrospective study of 110 cases.

We reviewed the files of 110 women with Toxoplasma seroconversion during pregnancy. Prenatal diagnosis was attempted for 94 women by amniotic fluid sampling. Toxoplasma gondii was detected by PCR, with or without tissue culture and mouse inoculation. The early neonatal diagnostic procedure included placental testing by PCR and/or mouse inoculation, cord blood serological testing, and comparison of maternal and newborn antibodies by Western blotting (WB). Serological follow-up of the infants was conducted during the first year of life or until the diagnosis of congenital toxoplasmosis (CT) could be ruled out. Congenital infection was diagnosed in 27 individuals (20 live births) in the prenatal and/or neonatal period. The sensitivity and specificity of prenatal diagnosis were 81 and 100%, respectively. Placental examination was positive for 66.7% of individuals with CT and was always negative for neonates without CT. Cord blood serology detected immunoglobulin M (IgM) and/or IgA in 80% of infected newborns, with respective specificities of 91.2 and 87.7%. By WB we detected bands on IgG and IgM blots recognized by the newborn serum but not by the maternal serum (neosynthesized IgG and/or IgM) for 88.2% of infected infants within the first 2 months of life with a specificity of 100%. Early postnatal diagnosis was negative for 2 of the 20 neonates with CT. Both of these newborns had a negative prenatal diagnosis and were asymptomatic, suggesting a very low parasite load. In conclusion, despite the use of advanced methods, some cases of congenital toxoplasmosis cannot be detected early, which underlines the importance of careful follow-up of newborns who are at risk.

Animals↗

Comparison of four commercialized biochemical systems for clinical yeast identification by colour-producing reactions.

We compared the ability of four commercially available yeast identification systems for routine laboratory hospital use: Auxacolor (AUX) (Sanofi Diagnostics Pasteur, Marne-la-Coquette), Fungichrom I (FUC) and Fungifast I Twin (FUF) (International Microbio, Toulon), Api Candida (API) (bioMérieux, Lyon). These systems are based on obtaining a biochemical profile easily defined by colorimetric reactions. We tested 202 yeasts belonging to 19 species which were included or were not included in the manufacturer's data base of the identification systems. Without extra tests, for all the organisms tested, after 24 h of incubation, the percentage of organisms correctly identified was 48% for AUX, 75% for FUC, 77% for FUF and 81% for API. However, if we consider the ratio of the number of correct identifications without extra tests with the number of yeasts included in the manufacturers' data bases (sensitivity) the results increased to 61% for AUX, 81% for FUC, 91% for FUF and 83% for API. These systems are particularly well adapted to medical use, they are simple to set up, interpret, and have very good efficiency for the yeasts most commonly isolated in clinical specimens. The findings reported here indicate that the most favourable results were obtained with FUF and API systems.

Colorimetry↗

Neurons in primary culture are less efficiently infected by Toxoplasma gondii than glial cells.

Infection by Toxoplasma gondii is asymptomatic, leading to an immune response that controls the disease. In immune-compromised patients, however, quiescent cysts can reactivate, leading to toxoplasmic encephalitis. We studied the infection of cells of the central nervous system in an attempt to understand the process leading to this complication. Primary cultures of rat hippocampal glial cells and neurons were infected with the virulent strain RH and examined by immunofluorescent microscopy after fixation of cells and staining with antibodies specific to the different cell types. After 24 h of infection, glial cells were highly infected and showed active division of the parasite. Neurons, on the other hand, were much less efficiently infected than glial cells, but actual penetration of the parasites was demonstrated by confocal microscopy. Whereas glial cells contained vacuoles with several parasites, the vacuoles observed in neurons usually contained one parasite or, rarely, two, indicating that the parasites inside neurons did not undergo active division. This was corroborated by determination of the incorporation of [3H]-uracil. Little is known about the mechanism of neuronal infection by Toxoplasma. The experimental setup used in this study should help to improve our understanding of neuronal infection and bring insight into the physiopathology of toxoplasmic encephalitis.

Animals↗