Search results for "ANTIFUNGAL"

showing 10 items of 348 documents

Choosing a Study Population for the Evaluation of Antifungal Prophylaxis

2005

Microbiology (medical)Antifungalmedicine.medical_specialtybusiness.industrymedicine.drug_classMEDLINEMicafunginInfectious DiseasesmedicinePopulation studyIntensive care medicinebusinessEchinocandinsmedicine.drugClinical Infectious Diseases
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Epidemiological cutoff values for fluconazole, itraconazole, posaconazole, and voriconazole for six Candida species as determined by the colorimetric…

2013

ABSTRACT In the absence of clinical breakpoints (CBP), epidemiological cutoff values (ECVs) are useful to separate wild-type (WT) isolates (without mechanisms of resistance) from non-WT isolates (those that can harbor some resistance mechanisms), which is the goal of susceptibility tests. Sensititre YeastOne (SYO) is a widely used method to determine susceptibility of Candida spp. to antifungal agents. The CLSI CBP have been established, but not for the SYO method. The ECVs for four azoles, obtained using MIC distributions determined by the SYO method, were calculated via five methods (three statistical methods and based on the MIC 50 and modal MIC). Respectively, the median ECVs (in mg/lit…

Microbiology (medical)AzolesPosaconazolemedicine.medical_specialtyAntifungal AgentsItraconazoleMycologyMicrobial Sensitivity TestsBiologyMicrobiology:Organisms::Eukaryota::Animals::Chordata::Vertebrates::Mammals::Primates::Haplorhini::Catarrhini::Hominidae::Humans [Medical Subject Headings]EpidemiologymedicineHumansCutoffCandida albicansPruebas de sensibilidad microbianaCandidaVoriconazoleCandidiasisLiter:Chemicals and Drugs::Heterocyclic Compounds::Heterocyclic Compounds 1-Ring::Azoles [Medical Subject Headings]:Diseases::Bacterial Infections and Mycoses::Mycoses::Candidiasis [Medical Subject Headings]biology.organism_classification:Chemicals and Drugs::Chemical Actions and Uses::Pharmacologic Actions::Therapeutic Uses::Anti-Infective Agents::Antifungal Agents [Medical Subject Headings]:Analytical Diagnostic and Therapeutic Techniques and Equipment::Diagnosis::Diagnostic Techniques and Procedures::Clinical Laboratory Techniques::Microbiological Techniques::Microbial Sensitivity Tests [Medical Subject Headings]:Organisms::Eukaryota::Fungi::Mitosporic Fungi::Candida [Medical Subject Headings]AntifúngicosFluconazolemedicine.drug
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Fungal Biofilms as a Valuable Target for the Discovery of Natural Products That Cope with the Resistance of Medically Important Fungi—Latest Findings

2021

The development of new antifungal agents that target biofilms is an urgent need. Natural products, mainly from the plant kingdom, represent an invaluable source of these entities. The present review provides an update (2017–May 2021) on the available information on essential oils, propolis, extracts from plants, algae, lichens and microorganisms, compounds from different natural sources and nanosystems containing natural products with the capacity to in vitro or in vivo modulate fungal biofilms. The search yielded 42 articles; seven involved essential oils, two Brazilian propolis, six plant extracts and one of each, extracts from lichens and algae/cyanobacteria. Twenty articles deal with th…

Microbiology (medical)FusariumCyanobacteriaFUNGAL BIOFILMnatural productsMicroorganism<i>Candida</i> spp.CryptococcusCANDIDA SPPRM1-950ReviewBiochemistryMicrobiologyCRYPTOCOCCUS SPPFUSARIUM SPPmechanisms of antibiofilm actionNATURAL PRODUCTSAspergillus fumigatusMicrobiology//purl.org/becyt/ford/1 [https]//purl.org/becyt/ford/1.4 [https]Pharmacology (medical)General Pharmacology Toxicology and PharmaceuticsLichenFusarium spp.ANTIFUNGAL RESISTANCECandida spp.MECHANISMS OF ANTIBIOFILM ACTIONbiology<i>Cryptococcus</i> spp.filamentous fungiBiofilmCryptococcus spp.PropolisFILAMENTOUS FUNGIantifungal resistancebiology.organism_classificationInfectious Diseases<i>Fusarium</i> spp.fungal biofilmTherapeutics. PharmacologyAntibiotics
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Control of Fusarium graminearum in Wheat With Mustard-Based Botanicals: From in vitro to in planta

2020

Fusarium graminearum is a phytopathogenic fungus that causes Fusarium head blight in small-grain cereals, such as wheat, with significant yield reductions. Moreover, it contaminates the cereal grains with health-threatening mycotoxins, such as deoxynivalenol (DON), jeopardizing food and feed safety. Plant-based biopesticides, i.e. botanicals, have recently gained increased interest in crop protection as alternatives to synthetic chemical products. The main objective of this study was to test the control efficacy of botanicals based on white or Indian/Oriental mustard seed flours (Tillecur – Ti, Pure Yellow Mustard – PYM, Pure Oriental Mustard – POM, Oriental Mustard Bran – OMB) on F. gramin…

Microbiology (medical)Fusariumfood.ingredientascosporeslcsh:QR1-502conidiaBiologyantifungal botanicalMicrobiologylcsh:Microbiologymycotoxin03 medical and health scienceschemistry.chemical_compoundfoodwheatMycotoxinMyceliumOriginal Research030304 developmental biology2. Zero hunger0303 health sciencesBranphenolic acid030306 microbiologyfood and beveragesPhenolic acidMustard seedbiology.organism_classificationFungicideFusarium head blight; Antifungal botanical; Isothiocyanate; Phenolic acids; Mycotoxin; Conidia; Ascospores; WheatBiopesticideHorticultureFusarium head blightchemistryisothiocyanateFrontiers in Microbiology
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Potential of Antifungal Proteins (AFPs) to Control Penicillium Postharvest Fruit Decay

2021

Penicillium phytopathogenic species provoke severe postharvest disease and economic losses. Penicillium expansum is the main pome fruit phytopathogen while Penicillium digitatum and Penicillium italicum cause citrus green and blue mold, respectively. Control strategies rely on the use of synthetic fungicides, but the appearance of resistant strains and safety concerns have led to the search for new antifungals. Here, the potential application of different antifungal proteins (AFPs) including the three Penicillium chrysogenum proteins (PAF, PAFB and PAFC), as well as the Neosartorya fischeri NFAP2 protein to control Penicillium decay, has been evaluated. PAFB was the most potent AFP against …

Microbiology (medical)Penicillium italicumQH301-705.5Penicillium italicumPlant SciencePenicillium digitatumPenicillium italicumArticle03 medical and health sciencesPenicillium digitatumpostharvest protectionmedicineFood scienceBiology (General)Penicillium expansumEcology Evolution Behavior and Systematics030304 developmental biology0303 health sciencesPenicillium digitatumPenicillium decay<i>Penicillium</i> <i>italicum</i>biology030306 microbiologyChemistry<i>Penicillium</i> <i>expansum</i>Penicillium expansum<i>Penicillium</i> <i>digitatum</i>Blue moldfood and beveragesbiology.organism_classificationPenicillium chrysogenumPostharvest protectionFungicidemedicine.drug_formulation_ingredient<i>Penicillium</i> decayPAFB antifungal proteinPenicilliumPostharvestPenicillium expansumJournal of Fungi
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Comparison of disc diffusion assay with the CLSI reference method (M27-A2) for testing in vitro posaconazole activity against common and uncommon yea…

2007

Objectives To evaluate the suitability of disc diffusion (DD) assay for testing posaconazole activity and to corroborate its activity against recently isolated yeasts by the CLSI reference microdilution M27-A2 method. Methods A total of 224 yeast isolates (7 species with 52 to 11 isolates each, and 15 species with 1 to 6 isolates) were evaluated, 125 were recent bloodstream isolates, 30 isolates from other sources and six ATCC isolates that included amphotericin B-resistant Candida albicans ATCC 200955, Candida lusitaniae (ATCC 200950, 200951, 200952 and 200953) and amphotericin B- and itraconazole-resistant Candida tropicalis ATCC 200956. MICs were determined at 24 and 48 h by following th…

Microbiology (medical)PosaconazoleAntifungal AgentsItraconazoleCoefficient of variationMicrobial Sensitivity TestsDrug resistanceBiologyMicrobiologyCandida tropicalisDrug Resistance FungalAmphotericin BmedicineHumansPharmacology (medical)Candida albicansCandidaPharmacologyCandida lusitaniaeCandidiasisReproducibility of ResultsReference StandardsTriazolesbiology.organism_classificationInfectious Diseasesmedicine.drugJournal of Antimicrobial Chemotherapy
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In vitro and in vivo anticryptococcal activities of a new pyrazolo-isothiazole derivative

2003

We investigated the activity of a pyrazolo-isothiazole derivative (G8) against Cryptococcus neoformans. A first screening test showed that G8 at 10 mg/L inhibited the growth of 14 of 15 clinical isolates tested. Killing experiments showed that fungicidal activity was achieved after 8 h of treatment with G8 at concentrations > or =10 mg/L. In a murine model of systemic cryptococcosis, G8 was effective at prolonging survival compared with the controls. Our data indicate that this new derivative has a potential therapeutic role in infections caused by C. neoformans.

Microbiology (medical)Settore MED/07 - Microbiologia E Microbiologia ClinicaAntifungal AgentsRatónMicrobial Sensitivity TestsPharmacologyMicechemistry.chemical_compoundOral administrationIn vivomedicineAnimalsHumansPharmacology (medical)Cryptococcus neoformansPharmacologyIsothiazolebiologyFungi imperfectibiology.organism_classificationmedicine.diseaseIn vitroThiazolesInfectious DiseaseschemistryCryptococcosisImmunologyCryptococcus neoformansPyrazolesFemale
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Comparison between Disk Diffusion and Microdilution Methods for Determining Susceptibility of Clinical Fungal Isolates to Caspofungin

2007

ABSTRACT We compared the caspofungin (CAS) susceptibility testing results generated by the disk diffusion (DD) assay with the results of the Clinical and Laboratory Standards Institute (CLSI) broth microdilution (BD) reference method for 106 yeast isolates. The isolates represented 11 different fungal species, including Candida albicans ( n = 50), C. parapsilosis ( n = 10), C. glabrata ( n = 10), C. tropicalis ( n = 10), C. guillermondii ( n = 6), C. rugosa ( n = 5), C. krusei ( n = 5), C. kefyr ( n = 2), C. pelliculosa ( n = 2), Saccharomyces cerevisiae ( n = 3), and Geotrichum candidum ( n = 3). The DD assay was performed in supplemented Mueller-Hinton agar with CAS, which was tested at c…

Microbiology (medical)Settore MED/07 - Microbiologia E Microbiologia ClinicaSusceptibility testingAntifungal AgentsInhibition zonefood.ingredientGeotrichumMicrobial Sensitivity TestsMycologyMicrobiologyDiffusionEchinocandinsLipopeptideschemistry.chemical_compoundfoodCaspofunginCandida albicansAgarCandida albicansCaspofungin Candida Disk diffusion antimicrobial testingbiologyBroth microdilutionFungibiology.organism_classificationYeastchemistryCaspofunginJournal of Clinical Microbiology
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incidence and risk factors of bacterial sepsis and invasive fungal infection in neonates and infants requiring major surgery: an Italian multicentre …

2022

Background: Limited data are currently available on the incidence rates and risk factors for bacterial sepsis and invasive fungal infections (IFIs) among neonates and infants undergoing major surgery. Aim: To assess the incidence of bacterial sepsis and IFI, fungal colonization, risk factors for sepsis, and mortality in neonates and infants aged &lt;3 months undergoing major surgery. Methods: A multicentre prospective study was conducted involving 13 level-3 neonatal intensive care units in Italy, enrolling all infants aged ≤3 months undergoing major surgery. Findings: From 2018 to 2021, 541 patients were enrolled. During hospitalization, 248 patients had a bacterial infection, and 23 patie…

Microbiology (medical)Settore MED/38 - Pediatria Generale e SpecialisticaFungal infectionAntifungal AgentsIncidenceInfant NewbornInfantGeneral MedicineCandida; Fungal colonization; Fungal infection; Neonatal sepsis; SurgerySurgery.Infectious DiseasesMycosesRisk FactorsSepsisNeonatal sepsisHumansSurgeryProspective StudiesNeonatal sepsifungal infection Fungal colonization Neonatal sepsis Surgery CandidaInvasive Fungal InfectionsCandidaFungal colonization
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Evaluation of the Disk Diffusion Method Compared to the Microdilution Method in Susceptibility Testing of Anidulafungin against Filamentous Fungi

2008

ABSTRACT Susceptibility testing of anidulafungin (AFG) against 32 mold isolates showed an excellent correlation between disk diffusion (DD) and broth microdilution methods. Based on our data, a 2-μg disk of AFG and a 24-h reading time might represent the best parameters for AFG DD testing against filamentous fungi.

Microbiology (medical)Susceptibility testingAntifungal AgentsDisk Diffusion; Yeasts; CaspofunginDisk diffusion anidulafungin MIC MECMycologyMicrobial Sensitivity TestsBiologyAnidulafunginSettore MED/42 - Igiene Generale E ApplicataDisk DiffusionMicrobiologyEchinocandinsCaspofunginYeastsmedicineHumansAgar diffusion testFood scienceAspergillus Anidulafungin Disk Diffusion1 3 β glucan synthaseAnidulafungineBroth microdilutionFungiAnidulafunginaMycosesAnidulafunginmedicine.drugJournal of Clinical Microbiology
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