Search results for "Antiserum"

showing 5 items of 45 documents

Wall mannoproteins in cells from colonial phenotypic variants of Candida albicans.

1990

Candida albicans ATCC 26555 switched at high frequency (10(-1) to 10(-3)) between several phenotypes identified by colony morphology on a defined mineral amino-acid-containing agar medium supplemented with arginine and zinc (LAZ medium). When cells taken from colonies exhibiting distinct morphologies were plated directly onto LAZ agar, spontaneous conversion to all the variant phenotypes occurred at combined frequencies of 2.1 x 10(-1) to 9.5 x 10(-3). However, when cells taken from the different colonial phenotypes were plated directly onto an undefined medium (yeast extract/peptone/dextrose; YPD medium), or first incubated in liquid YPD medium and then cloned on YPD agar, all colonies obs…

food.ingredientHydrolasesPhenotypic switchingMicrobiologyMicrobiologyAgar plateCell wallFungal Proteinschemistry.chemical_compoundfoodCell WallCandida albicansConcanavalin AAgarCandida albicansAntiserumGrowth mediumMembrane GlycoproteinsbiologyTemperaturebiology.organism_classificationYeastCulture MediaPhenotypechemistryElectrophoresis Polyacrylamide GelJournal of general microbiology
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Characterization of a multimeric polypeptide complex on the surface of thymus-derived cells in the Mexican axolotl.

1993

We previously raised a rabbit antiserum (L12) against a 38 kD polypeptide which is expressed on the surface of thymocytes and peripheral T cells of an Urodele Amphibian, the Mexican axolotl (Ambystoma mexicanum). Here we show that L12 antibodies immunoprecipitate several labelled molecules from surface iodinated axolotl spleen cells, including the 38 kD molecule, but also two polypeptides of 43 and 22 kD which are covalently linked to other elements. Another rabbit antiserum (L10) was raised against detergent-solubilized axolotl thymocyte membranes and shown to recognize the majority of thymocytes and about half of the splenocytes in immunofluorescence. In Western blotting, L10 antibodies r…

medicine.drug_classT-LymphocytesImmunologyBlotting WesternFluorescent Antibody TechniqueThymus GlandBiologyImmunofluorescenceMonoclonal antibodyAntigen-Antibody ReactionsMiceAxolotlAntibody SpecificitymedicineSplenocyteAnimalsAntiserumB-LymphocytesMice Inbred BALB Cmedicine.diagnostic_testAntibodies MonoclonalGeneral MedicineT lymphocytebiology.organism_classificationMolecular biologyAmbystoma mexicanumMolecular WeightThymocyteAntigens Surfacebiology.proteinElectrophoresis Polyacrylamide GelRabbitsAntibodyPeptidesBiomarkersSpleenScandinavian journal of immunology
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Production and characterization of a monoclonal antibody to the trichothecene mycotoxin diacetoxyscirpenol.

1988

A monoclonal antibody was obtained by the fusion of mouse myeloma cells with splenocytes isolated from Balb/c mice, which had been immunized with diacetoxyscirpenol-hemiglutarate (DAS-hemiglutarate) and verrucarol-hemiglutarates covalently bound to ethylenediamine-modified bovine serum albumin. The anti-DAS-antibody that could be induced was of the IgM type with kappa-chains. The titer of the monoclonal anti-DAS-antibody in ascites fluid obtained from mice injected the selected cell line was much higher than those of conventional antisera. An enzyme-linked immunosorbent assay based on the competitive binding principle in which the antibody was applied had a sensitivity of 1 ng DAS per assay…

medicine.drug_classTrichotheceneEnzyme-Linked Immunosorbent AssayCross ReactionsMonoclonal antibodyBiochemistryDiacetoxyscirpenolchemistry.chemical_compoundMicemedicineAnimalsBovine serum albuminAntiserumMice Inbred BALB CbiologyAntibodies MonoclonalMycotoxinsMolecular biologyTiterchemistryMonoclonalbiology.proteinFemaleAntibodyTrichothecenesSesquiterpenesBiological chemistry Hoppe-Seyler
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Induction of Type-Specific Neutralizing Antibodies by Capsomeres of Human Papillomavirus Type 33

2001

Abstract The immunogenicity of capsomeres of human papillomavirus type 33 was evaluated in a dose–response analysis. Capsomeres were obtained free of capsids by expression of L1 carrying the single point mutation C427S. Neutralizing antibodies were detected using an in vitro pseudoinfection assay. Capsomeres induced type-specific, neutralizing antibodies in mice even in the absence of adjuvant. The neutralization titers of immune sera raised without adjuvant were 10- to 20-fold lower than those of antisera to virus-like particles, but virtually identical using Freund's adjuvant. These data indicate that capsomeres may substitute for virus-like particles in future vaccines when used with an …

medicine.medical_treatmentDose-Response Relationship ImmunologicEnzyme-Linked Immunosorbent AssayAntibodies ViralpapillomavirusNeutralizationMiceCapsidNeutralization Testsdose responseVirologymedicineAnimalsHumansPapillomaviridaeAntiserumMice Inbred BALB CbiologyImmunogenicityCapsomereVirionneutralizationvaccinationVirologyTiterCapsidbiology.proteincapsomeresImmunizationAntibodyAdjuvantVirology
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Generation and neutralization of pseudovirions of human papillomavirus type 33

1997

Since human papillomaviruses (HPV) cannot be propagated in cell culture, the generation of infectious virions in vitro is a highly desirable goal. Here we report that pseudovirions can be generated by the assembly of virus-like particles (VLPs) in COS-7 cells containing multiple copies of a marker plasmid. Using recombinant vaccinia viruses, we have obtained spherical VLPs of HPV type 33 (HPV-33) which fractionate into heavy and light VLPs in cesium chloride density gradients. VLPs in the heavy fraction (1.31 g/cm3) carry the plasmid in DNase-resistant form and are capable of transferring the genetic marker located on the plasmid to COS-7 cells in a DNase-resistant way (pseudoinfection). Th…

virusesImmunologyBiologyAntibodies Viralcomplex mixturesMicrobiologyNeutralizationlaw.inventionchemistry.chemical_compoundCapsidPlasmidNeutralization TestslawVirologyAnimalsDeoxyribonuclease IHumansAntigens ViralPapillomaviridaeAntiserumVirus AssemblyVirionvirus diseasesOncogene Proteins ViralVirologyMolecular biologyIn vitroTiterchemistryCapsidInsect ScienceCOS CellsDNA ViralRecombinant DNACapsid ProteinsDNAResearch ArticleJournal of Virology
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