Search results for "Cryptosporidium parvum"

showing 10 items of 25 documents

Characterisation of a Cryptosporidium parvum-specific cDNA clone and detection of parasite DNA in mucosal scrapings of infected mice.

1998

A cDNA library was constructed using total RNA extracted from oocysts and sporozoites of the protozoan parasite Cryptosporidium parvum. The expression library was screened with an anti-C. parvum antiserum and a clone, Cp3.4, with a 2043 bp insert, was extracted. Southern blot analysis demonstrated a single copy gene that was located on a 1.6 Mb chromosome. The gene was found to be C. parvum specific as Cp3.4 did not cross-hybridise with chromosomal DNA from three other apicomplexan parasites. The cDNA encodes a polypeptide with a predicted membrane helix at its C-terminal end which is flanked by stretches of acidic amino acids. Overall, the polypeptide has a low isoelectric point (pI) of 3.…

DNA ComplementaryGenes ProtozoanMolecular Sequence DataProtozoan ProteinsCryptosporidiosisBiologyMolecular cloninglaw.inventionMicelawIleumComplementary DNAparasitic diseasesParasite hostingAnimalsAmino Acid SequenceRNA MessengerCloning MolecularIntestinal MucosaMolecular BiologyGenePolymerase chain reactionSouthern blotRepetitive Sequences Nucleic AcidCryptosporidium parvumcDNA libraryReverse Transcriptase Polymerase Chain ReactionChromosome MappingSequence Analysis DNADNA Protozoanbiology.organism_classificationMolecular biologyElectrophoresis Gel Pulsed-FieldBlotting SouthernCryptosporidium parvumParasitologyRNA ProtozoanMolecular and biochemical parasitology
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Immunodetection of the microvillous cytoskeleton molecules villin and ezrin in the parasitophorous vacuole wall of Cryptosporidium parvum (Protozoa: …

1999

Microvilli - actin - villin - ezrin - Cryptosporidium parvum The sporozoites and merozoites of the Apicomplexan protozoan Cryptosporidium parvum (C. parvum) invade the apical side of enterocytes and induce the formation of a parasitophorous vacuole which stays in the brush border area and disturbs the distribution of microvilli. The vacuole is separated from the apical cytoplasm of the cell by an electron-dense layer of undetermined composition. In order to characterize the enterocyte cytoskeleton changes that occur during C. parvum invasion and development, we used both confocal immunofluorescence and immunoelectron microscopy to examine at the C.parvum-enterocyte interface the distributio…

Feces/microbiologyIntestines/parasitologyMicrofilament Proteins/ analysisVacuoleddc:616.07Actins/analysisRats Sprague-DawleyFecesMiceEzrinCarrier Proteins/ analysisCryptosporidium/ chemistry/pathogenicity/ultrastructureCytoskeletonMicroscopy ImmunoelectronCytoskeletonMice Inbred BALB CMicroscopy ConfocalbiologyMicrovilliMicrofilament ProteinsCytoskeleton/ chemistryGeneral MedicineCell biologyIntestinesCryptosporidium parvumFemaleVillinHistologyImmunoelectron microscopyVacuoles/ultrastructurePhosphoproteins/ analysisCryptosporidiummacromolecular substancesPathology and Forensic Medicineparasitic diseasesAnimalsApical cytoplasmActinCell Biologybiology.organism_classificationPhosphoproteinsActinsRatsMicrovilli/ chemistryCytoskeletal ProteinsMicroscopy ElectronVacuolesbiology.proteinCarrier ProteinsEuropean journal of cell biology
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Amylopectin: a major component of the residual body inCryptosporidium parvumoocysts

2004

Amylopectin is used for carbohydrate storage in different life-stages of a number of apicomplexan parasites. We have performed an ultrastructural analysis of amylopectin granules from the oocyst residual body and sporozoites ofCryptosporidium parvum. Amylopectin granules were studiedin situand after isolation from ‘French’ press disrupted parasites, by conventional transmission electron microscopy (TEM) of sectioned oocysts and various negative staining and cryoelectron microscopy techniques. Within the membrane-enclosed oocyst residuum large amylopectin granules (0·1–0·3 μm) can be found besides a characteristic large lipid body and a crystalline protein inclusion. Smaller granules were de…

Glycoside HydrolasesAmylopectinResidual bodyBiologylaw.inventionchemistry.chemical_compoundCell WalllawAnimalsCryptosporidium parvumCryoelectron MicroscopyOocystsfood and beveragesbiology.organism_classificationNegative stainStainingcarbohydrates (lipids)Microscopy ElectronInfectious DiseasesCryptosporidium parvumBiochemistrychemistryAmylopectinUltrastructureCarbohydrate storageAnimal Science and ZoologyParasitologyElectron microscopeParasitology
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Humoral immune response in IL-12 and IFN-gamma deficient mice after infection with Cryptosporidium parvum.

2008

Infection with Cryptosporidium spp. causes diarrhoeal disease and has become an important medical and veterinary problem especially in the immunocompromised host. The importance of the adaptive immune response, with CD4+ T-lymphocytes being the major players, has been clearly demonstrated. The requirement of IL-12 and IFN-gamma identifies this response as a Th1-dominated reaction. IFN-gamma is also important in the early phase of the host-parasite interaction. We analysed the outcome of infection in IL-12p40 (IL-12KO) and IFN-gamma (GKO) deficient C57BL/6 mice after primary and secondary challenge with the parasite and, for the first time, we demonstrate the resulting Ig response in sera an…

ImmunologyAntibodies ProtozoanCryptosporidiosisMicrobiologyFecesInterferon-gammaMiceImmune systemIleumParasite Egg CountParasite hostingAnimalsParasite Egg CountCryptosporidium parvumMice KnockoutbiologyCryptosporidiumAcquired immune systembiology.organism_classificationInterleukin-12Immunoglobulin AMice Inbred C57BLCryptosporidium parvumImmunoglobulin GImmunologyVaginaInterleukin 12biology.proteinVaginal DouchingParasitologyFemaleAntibodyParasite immunology
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Structural analysis of Cryptosporidium parvum.

2004

Cryptosporidium parvum(Apicomplexa, formerly Sporozoa) is the causative agent of cryptosporidiosis, an enteric disease of substantial medical and veterinary importance.C. parvumshows a number of unique features that differ from the rest of the class of coccidea in which it is currently grouped taxonomically. Differences occur in the overall structure of the transmission form and the invasive stages of the parasite, its intracellular location, the presence of recently described additional extracellular stages, the host range and target cell tropism, the ability to autoinfection, the nonresponsiveness to anticoccidial drugs, the immune response of the host, and immunochemical and genetic char…

InfectivityCryptosporidium parvumbiologyCryptosporidiumbiology.organism_classificationVirologyImmunohistochemistryApicomplexaCryptosporidium parvumImmune systemMicroscopy Electron TransmissionCell Line Tumorparasitic diseasesIntestine Smallbiology.proteinParasite hostingAnimalsHumansAntibodyInstrumentationTropismSubcellular FractionsMicroscopy and microanalysis : the official journal of Microscopy Society of America, Microbeam Analysis Society, Microscopical Society of Canada
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Morphology and in vitro infectivity of sporozoites of Cryptosporidium parvum.

2009

An important obstacle in studying Cryptosporidium parvum is the lack of a permanent in vitro cultivation system of the parasite. While short-term cultures using various host cell lines have been widely employed, long-term cultures that would facilitate the immortalization of C. parvum isolates have not yet been developed. The description of the complete development of C. parvum in cell-free culture in 2004 has been received with great interest and also with some astonishment. Unfortunately, attempts to reproduce these results with different isolates of C. parvum and also C. hominis have failed. In this report, we provide an alternative interpretation of the nature of a parasite stage that o…

InfectivityCryptosporidium parvumbiologyReverse Transcriptase Polymerase Chain Reactionanimal diseasesFluorescent Antibody Techniquebiology.organism_classificationVirologyIn vitroMicrobiologyCryptosporidium parvumCell cultureCell Line Tumorparasitic diseasesParasite hostingHumansParasitologyMicroscopy InterferenceEcology Evolution Behavior and SystematicsRNA ProtozoanThe Journal of parasitology
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Effect of antiretroviral protease inhibitors alone, and in combination with paromomycin, on the excystation, invasion and in vitro development of Cry…

2003

With the spread of the human immunodeficiency virus in the early 1980s, cryptosporidiosis was regarded as an AIDS-defining disease. As an opportunistic pathogen, the intestinal parasite Cryptosporidium parvum became an important cause of chronic diarrhoea, leading to high morbidity and mortality in immunocompromised patients. To date, no effective chemotherapy is available. With the introduction of protease inhibitors (PIs) in highly active antiretroviral therapy (HAART), the incidence of cryptosporidiosis in AIDS patients has declined substantially in western countries. We have therefore tested the effect of five PIs used in HAART on the excystation, invasion and development of the parasit…

Microbiology (medical)Cell SurvivalParomomycinvirusesCryptosporidiosisParomomycinHost-Parasite InteractionsMicrobiologyImmunoenzyme Techniquesimmune system diseasesIndinavirAntiretroviral Therapy Highly ActiveCell Line TumormedicineAnimalsHumansPharmacology (medical)Protease inhibitor (pharmacology)AmebicidesAntibacterial agentCryptosporidium parvumPharmacologybiologyvirus diseasesDrug SynergismHIV Protease Inhibitorsbiochemical phenomena metabolism and nutritionbiology.organism_classificationVirologyInfectious DiseasesCryptosporidium parvumNelfinavirRitonavirSaquinavirmedicine.drugJournal of Antimicrobial Chemotherapy
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Epidemiological study ofCryptosporidium parvum in sera of persons from Germany

1998

In a seroprevalence study including 495 sera from persons of all age-groups, the presence of anti-Cryptosporidium parvum antibodies was evaluated in an enzyme immunoassay. Despite the fact that C. parvum is only found in approximately 2% of patients with diarrhea in Germany, specific antibodies could be detected in 15.4% of all samples. This figure indicates that a substantial proportion of the German population has been confronted with this parasite and it raises the question of whether C. parvum is a potential health risk to the general population.

Microbiology (medical)medicine.medical_specialtyeducation.field_of_studybiologymedicine.diagnostic_testanimal diseasesPopulationGeneral Medicinebiology.organism_classificationVirologySerologyDiarrheaInfectious DiseasesCryptosporidium parvumImmunoassayparasitic diseasesImmunologyEpidemiologymedicinebiology.proteinSeroprevalenceAntibodymedicine.symptomeducationInfection
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Caspase-dependent apoptosis during infection with Cryptosporidium parvum

1999

The protozoan parasite Cryptosporidium parvum causes persistent diarrhea and malnutrition in children and the diarrhea-wasting syndrome in AIDS. No therapy exists for eliminating the parasite in the absence of a healthy immune response. Although it had been reported that infection of intestinal cell lines with C. parvum leads to host cell death, the mechanisms of cytolysis have not been characterized. We show here that infection with C. parvum leads to typical apoptotic nuclear condensation and DNA fragmentation in host cells. Both nuclear condensation and DNA fragmentation are inhibited by a caspase inhibitor, showing that caspases are involved in this type of apoptosis. Finally, blocking …

Programmed cell deathImmunologyCryptosporidiosisApoptosisDNA FragmentationCysteine Proteinase InhibitorsMicrobiologyCaspase-Dependent ApoptosisAmino Acid Chloromethyl KetonesCell LineImmune systemparasitic diseasesAnimalsHumansComputingMilieux_MISCELLANEOUSCaspaseCryptosporidium parvumbiologybiology.organism_classificationCaspase InhibitorsVirologyCytolysisPOUVOIR PATHOGENE[SDV.MP]Life Sciences [q-bio]/Microbiology and ParasitologyInfectious DiseasesCryptosporidium parvumMicroscopy FluorescenceApoptosisCaspasesbiology.proteinDNA fragmentationHeLa CellsMicrobes and Infection
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Speculation on whether a vaccine against cryptosporidiosis is a reality or fantasy

1999

In this paper the authors question whether the development of a vaccine against cryptosporidiosis could be taken into consideration. The necessity and feasibility of such a vaccine for human and veterinary application is discussed. Developmental stages within the life cycle of the parasite that might act as possible targets for vaccine development are summarised, as well as the target antigens offered by molecular biology and immunology studies. Vaccination trials against cryptosporidiosis carried out so far, including the active and passive immunisation approach, are also overviewed. It seems that with respect to a Cryptosporidium vaccine two target groups can be considered: children of th…

Protozoan VaccinesRuminantCloneProtozoan ProteinsTarget groupsCryptosporidiosisRuminant animalArticleImmunityAnimalsHumansImmune responseSpeculationCryptosporidium parvumbiologyCryptosporidiumbiology.organism_classificationVaccinationInfectious DiseasesCryptosporidium parvumAntigenApical organellesPassive immunisationImmunologyParasitologyVaccineHumanInternational Journal for Parasitology
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