Search results for "microbial"

showing 10 items of 2041 documents

Synthesis and Influence of 3-Amino Benzoxaboroles Structure on Their Activity against Candida albicans

2020

Benzoxaboroles emerged recently as molecules of high medicinal potential with Kerydin&reg

Antifungal AgentsStereochemistrySubstituentPharmaceutical Sciencechemistry.chemical_elementMicrobial Sensitivity Tests01 natural sciencesArticleAnalytical Chemistrylcsh:QD241-441030207 dermatology & venereal diseases03 medical and health sciencesMinimum inhibitory concentrationchemistry.chemical_compound0302 clinical medicinebenzoxaboroleslcsh:Organic chemistryDrug DiscoveryCandida albicansformylPhysical and Theoretical ChemistryCandida albicanschemistry.chemical_classificationTavaboroleKerydinMolecular Structurebiology010405 organic chemistryChemistryOrganic Chemistrybiology.organism_classificationpiperazine0104 chemical sciences<i>Candida albicans</i>PiperazineChemistry (miscellaneous)Heterocyclic amineFluorineMolecular MedicineAmine gas treatingantifungalMolecules
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Mechanisms of nanotoxicity – biomolecule coronas protect pathological fungi against nanoparticle-based eradication

2020

Whereas nanotoxicity is intensely studied in mammalian systems, our knowledge of desired or unwanted nano-based effects for microbes is still limited. Fungal infections are global socio-economic health and agricultural problems, and current chemical antifungals may induce adverse side-effects in humans and ecosystems. Thus, nanoparticles are discussed as potential novel and sustainable antifungals via the desired nanotoxicity but often fail in practical applications. In our study, we found that nanoparticles' toxicity strongly depends on their binding to fungal spores, including the clinically relevant pathogen

Antifungal AgentsSurface PropertiesBiomedical EngineeringMedizinNanoparticleNanotechnology02 engineering and technology010501 environmental sciencesToxicologyModels Biological01 natural sciencesDrug Resistance FungalAnimalsHumansEcosystem0105 earth and related environmental scienceschemistry.chemical_classificationMicrobial ViabilityBiomoleculeSpores FungalSilicon Dioxide021001 nanoscience & nanotechnologychemistryNanotoxicologyNanoparticlesNanomedicineAdsorptionBotrytis0210 nano-technologyBiologie
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Whey fermented by using Lactobacillus plantarum strains: A promising approach to increase the shelf life of pita bread

2019

Nowadays, there is an increasing concern regarding the shelf life of food products, leading producers to research natural antimicrobial agents to use in food preparation. In this study, we evaluated the antifungal activity of Lactobacillus plantarum fermented whey and then added the whey during preparation of pita bread to study shelf-life improvement. The fermented whey showed a satisfactory inhibitory (antifungal) effect against Penicillium expansum and Penicillium brevicompactum strains: the minimum inhibitory and minimum fungicidal concentrations ranged from 3.9 to 39.0 g/L and from 62.5 to 250 g/L, respectively. Addition of fermented whey increased the shelf life of the pita bread. Aft…

Antifungal Agentsanimal structureswheyPenicillium brevicompactumShelf life03 medical and health sciencesfluids and secretionsFood PreservationGeneticsFood science030304 developmental biology0303 health sciencesbiologyChemistryantifungal activitydigestive oral and skin physiologyPenicilliumPenicillium strain0402 animal and dairy scienceFood preservationfood and beveragesBread04 agricultural and veterinary sciencesbiology.organism_classificationAntimicrobial040201 dairy & animal sciencepita breadFermentationPenicilliumshelf lifeAnimal Science and ZoologyFermentationPenicillium expansumLactobacillus plantarumLactobacillus plantarumFood ScienceJournal of Dairy Science
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Antifungal activity and tautomeric cyclization equilibria of formylphenylboronic acids

2019

2-Formylphenylboronic acid and four isomeric fluoro-2-formylphenylboronic acids have been found active against a series of fungal strains: Aspergillus, Fusarium, Penicillium and Candida. The level of antifungal activity was evaluated by agar diffusion tests as well as the determination of minimum inhibitory concentrations (MICs) by serial dilution method. Among the tested compounds, 4-fluoro-2-formylphenylboronic acid - an analogue of the known antifungal drug Tavaborole (AN2690) - proved to be the most potent antifungal agent. The tautomeric equilibrium leading to the formation of 3-hydroxybenzoxaboroles as well as the position of the fluorine substituent were revealed to play a crucial ro…

Antifungal Agentsfood.ingredientSerial dilutionStereochemistryAntifungal drugSubstituentMicrobial Sensitivity TestsFormylphenylboronic acid01 natural sciencesBiochemistryStructure-Activity Relationshipchemistry.chemical_compoundfoodFusariumDrug DiscoveryAgarAntifungal activityTautomerizationMolecular BiologyCandidaAspergillusTavaboroleDose-Response Relationship DrugMolecular Structurebiology010405 organic chemistryChemistryOrganic ChemistryPenicilliumCyclization equilibriaOrganoboron compoundsbiology.organism_classificationBoronic AcidsTautomer0104 chemical sciences010404 medicinal & biomolecular chemistryAspergillusCyclizationPenicilliumBioorganic Chemistry
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Synthesis, Properties and Antimicrobial Activity of 5-Trifluoromethyl-2-formylphenylboronic Acid

2020

2-Formylphenylboronic acids display many interesting features, not only from synthetic but also from an application as well as structural points of view. 5-Trifluoromethyl-2-formyl phenylboronic acid has been synthesized and characterized in terms of its structure and properties. The presence of an electron-withdrawing substituent results in a considerable rise in the acidity in comparison with its analogues. In some solutions, the title compound isomerizes with formation of the corresponding 3-hydroxybenzoxaborole. Taking into account the probable mechanism of antifungal action of benzoxaboroles, which blocks the cytoplasmic leucyl-tRNA synthetase (LeuRS) of the microorganism, docking stud…

Antifungal AgentstrifluoromethylStereochemistryphenylboronicBacillus cereusAntifungal drugbenzoxaborolePharmaceutical ScienceMicrobial Sensitivity Tests010402 general chemistry01 natural sciencesequilibriumArticleAnalytical Chemistrycrystallcsh:QD241-441chemistry.chemical_compoundTavaborolelcsh:Organic chemistryCandida albicansDrug DiscoveryEscherichia colimedicineformylPhysical and Theoretical ChemistryPhenylboronic acidCandida albicansacidityTrifluoromethylKerydinbiology010405 organic chemistryChemistryOrganic ChemistryActive sitebiology.organism_classificationBoronic AcidsAnti-Bacterial Agents0104 chemical sciencesMechanism of actionChemistry (miscellaneous)Docking (molecular)Benzaldehydesdockingbiology.proteinMolecular MedicineantimicrobialLeucine-tRNA Ligasemedicine.symptomMolecules
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Synthesis and antifungal activity of new N-(1-phenyl-4-carbetoxypyrazol-5-yl)-, N-(indazol-3-yl)- and N-(indazol-5-yl)-2-iodobenzamides

2002

N-(1-Phenyl-4-carbetoxypyrazol-5-yl)-, N-(indazol-3-yl)- and N-(indazol-5-yl)-2-iodobenzamides 6, with a Benodanil-like structure, were synthesized by refluxing in acetic acid the corresponding benzotriazinones 5 with potassium iodide for 1 h in order to study the role on the antifungal activity of the N-substitution with an aromatic heterocyclic system on benzamide moiety. Among the tested iododerivatives, compounds 6d,f,g,h possess interesting activities toward some phytopathogenic fungal strains.

AntifungalAntifungal AgentsIndazolesMagnetic Resonance SpectroscopySpectrophotometry Infraredmedicine.drug_classStereochemistryColony Count MicrobialPharmaceutical Sciencechemistry.chemical_elementCarboxamideMicrobial Sensitivity TestsIodineChemical synthesisAcetic acidchemistry.chemical_compoundN-(1-phenyl-4-carbetoxypyrazol-5-yl)-2-iodobenzamides N-(indazol-3-yl)-2-iodobenzamides N-(indazol-3-yl)-2-iodobenzamides antifungal activityDrug DiscoverymedicineMoietyBenzamideChemistryFungiSettore CHIM/08 - Chimica FarmaceuticaBenzamidesPyrazolesIl Farmaco
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Chemical and antifungal investigations of six Lippia species (Verbenaceae) from Brazil

2012

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AntifungalAntifungal AgentsIridoidStereochemistrymedicine.drug_classPharmaceutical ScienceMicrobial Sensitivity TestsCandida parapsilosisAntifungalAnalytical Chemistrychemistry.chemical_compoundVerbascosideCandida kruseiBotanyVerbenaceaeDrug DiscoverymedicineCandida albicansCandida spp.Cryptococcus neoformansPharmacologyLippiaTraditional medicinebiologyPlant ExtractsChemistryVerbenaceaeOrganic ChemistryFungiGeneral MedicineDereplicationbiology.organism_classificationComplementary and alternative medicineCryptococcus neoformansMolecular MedicineLippiaLippia sppBrazilFood SciencePlanta Medica
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Bioactive Steroidal Saponins from Smilax medica

2006

Two new spirostanol saponins ( 1 and 2) were isolated from the roots of Smilax medica, together with the known smilagenin 3-O-beta-D-glucopyranoside (3). Their structures were determined by spectroscopic methods including 1D- and 2D-NMR experiments. Compounds 1 and 2 exhibited antifungal activity against the human pathogenic yeasts Candida albicans, C. glabrata and C. tropicalis (MICs between 6.25 and 50 microg/mL) whereas 3 was inactive.

AntifungalAntifungal AgentsMagnetic Resonance Spectroscopymedicine.drug_classSmilageninSaponinPharmaceutical ScienceMicrobial Sensitivity TestsPharmacognosyAnalytical ChemistryDrug DiscoverymedicineCandida albicansCandidaPharmacologychemistry.chemical_classificationbiologyTraditional medicineLiliaceaeOrganic ChemistrySmilaxSaponinsbiology.organism_classificationComplementary and alternative medicinechemistrySmilaxMolecular MedicinePlanta Medica
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Antibacterial and Antifungal Activities of Acetonic Extract from Paullinia cupana Mart Seeds

2013

The antibacterial and antifungal activities of the acetone extract from Paullinia cupana var. sorbilis Mart. (Sapindaceae) seeds, commonly called guarana, were assessed against selected bacterial and fungal strains. We tested the extract against both standard American Type Culture Collection (ATCC) and clinically isolated (CI) bacterial strains and three fungal strains. Minimum inhibitory concentration (MIC) and minimum bactericidal concentration (MBC) values for bacteria and MIC and minimum fungicidal concentration for fungi were determined. The extract showed an activity against the nine bacterial strains tested, both CI and ATCC strains (MIC comprised between 32 and 128 μm/mL and MBC bet…

AntifungalAntifungal Agentsmedicine.drug_classPlant ScienceAntibacterial effectMicrobial Sensitivity TestsSapindaceaeAntifungalBiochemistryAnalytical ChemistryMicrobiologyMinimum inhibitory concentrationfoodmedicinePaulliniaPaullinia cupanaMinimum fungicidal concentrationSettore BIO/15 - Biologia FarmaceuticaPaullinia cupanaMinimum bactericidal concentrationbiologyTraditional medicinePlant ExtractsOrganic ChemistrySettore CHIM/06 - Chimica Organicabiology.organism_classificationfood.foodAnti-Bacterial AgentsAntibacterialSeedsBacteria
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Novel isoquinoline derivatives as antimicrobial agents.

2013

The wide variety of potent biological activities of natural and synthetic isoquinoline alkaloids encouraged us to develop novel antimicrobial isoquinoline compounds. We synthesized a variety of differently functionalized 1-pentyl-6,7-dimethoxy-1,2,3,4-tetrahydroisoquinolines (THIQs), including dihydroisoquinolinium salts (2 and 5), methyl pentanoate-THIQ (6), 1-pentanol-THIQ (7), ester derivatives (8-15) and carbamate derivatives (16-23). We employed classic intramolecular Bischler-Napieralski cyclodehydration to generate the isoquinoline core. All the structures were characterized by nuclear magnetic resonance and mass spectrometry. The bactericide and fungicide activities were evaluated f…

AntifungalCarbamateAntifungal Agentsmedicine.drug_classmedicine.medical_treatmentClinical BiochemistryPharmaceutical ScienceMicrobial Sensitivity TestsGram-Positive BacteriaBiochemistrychemistry.chemical_compoundStructure-Activity RelationshipAnti-Infective AgentsDrug DiscoveryGram-Negative BacteriamedicineOrganic chemistryStructure–activity relationshipIsoquinolineMolecular BiologyEster derivativesChemistryOrganic ChemistryFungiAntimicrobialIsoquinolinesAnti-Bacterial AgentsIntramolecular forceMolecular MedicineBioorganicmedicinal chemistry
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