Search results for "Lytic cycle"

showing 5 items of 75 documents

Fluctuating asymmetry and immune function in a field cricket

2004

Recently, fluctuating asymmetry (FA) of morphological traits has attracted great attention as a short-cut measure of individual quality. Whereas there is some evidence that FA of sexual ornaments is negatively associated with immune function, studies concerning FA and immune function in non-ornamental traits are absent. Here, we tested whether FA of three non-ornamental traits in hind limbs is related to male immune function in a population of the Mediterranean field cricket, Gryllus bimaculatus. As different measures of male immune function, we used encapsulation rate and lytic activity. We found that a composite measure of FA (cFA) was negatively related to encapsulation rate. However, ly…

education.field_of_studybiologyEcologyGryllus bimaculatusPopulationZoologybiology.organism_classificationFluctuating asymmetryField cricketLower bodyImmune systemLytic cycleImmunocompetenceeducationEcology Evolution Behavior and SystematicsOikos
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Imidazolium-2-carboxylate as an afficient, expeditious and eco-friendly organocatalyst for glycerol carbonate synthesis

2009

An improved and greener approach towards the synthesis of glycerol carbonate, via transesterification, using 1-n-butyl-3-methylimidazolium-2-carboxylate as catalyst is described. The catalyst loading as low as 1% was sufficient to yield quantitative conversions. A plausible mechanism is proposed for the catalytic cycle leading to product formation.

glycerol carbonate010405 organic chemistryChemistry[CHIM.CATA]Chemical Sciences/CatalysisGeneral ChemistryTransesterification010402 general chemistry01 natural sciencesEnvironmentally friendly0104 chemical sciencesCatalysistransesterificationchemistry.chemical_compoundimidazolium-2-carboxylates[ CHIM.CATA ] Chemical Sciences/CatalysisCatalytic cycleorganic catalysisdimethyl carbonateGlycerolOrganic chemistryCarbonateCarboxylateDimethyl carbonateComputingMilieux_MISCELLANEOUS
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“Release and catch” catalytic systems

2013

In this perspective article the “release and catch” catalytic system concept is discussed. A “release and catch” catalytic system is prepared by non-covalent immobilization of the catalytic moiety on a suitable support, but differently from the usual non-covalently supported catalyst, the catalytic moiety is released in solution over the course of the reaction and it is recaptured at the end of the reaction. Such a “catalyst- sponge like” or “boomerang” system allows one to combine the benefits of homogeneous and heterogeneous catalysis and can be applied to organometallic-based catalysts, organocatalysts and metal-based catalysts.

inorganic chemicalsGreen ChemistryChemistryorganic chemicalssupported catalystSettore CHIM/06 - Chimica OrganicaHeterogeneous catalysisPollutionCatalysisCatalytic cycleHomogeneousEnvironmental ChemistryOrganic chemistryMoietySystem concept
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Precatalyst or dosing-device? The [Pd2{μ-(C6H4) PPh2}2{μ-O2C(C6H5)}2] complex anchored on a carboxypolystyrene polymer as an effective supplier of pa…

2020

Abstract A new catalyst has been synthesized from the precursor [Pd2{μ-(C6H4) PPh2}2 {μ-O2C(C6H5)}2] immobilized on a carboxypolystyrene polymer that exhibits an excellent dispersion of the Pd (II) centers, reusability, and catalytic activity in front of phenyl bromides. The activity of this new material was studied in detail for the Suzuki-Miyaura reaction and compared to that of Pd nanoparticles (NPs) supported on UVM-7 (a mesoporous silica), and Pd NPs stabilized with polyvinylpirrolydone. The homogeneous/heterogeneous character of the catalytic process was determined from the results of the hot-filtration, centrifugation, poisoning, three phases tests, and from differential sensitivity …

inorganic chemicalschemistry.chemical_classification010405 organic chemistryNanoparticlechemistry.chemical_elementPolymerMesoporous silica010402 general chemistry01 natural sciencesCatalysis0104 chemical sciencesCatalysischemistryX-ray photoelectron spectroscopyChemical engineeringCatalytic cycleOxidation statePhysical and Theoretical ChemistryPalladiumJournal of Catalysis
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Isolation of Four Lytic Phages Infecting Klebsiella pneumoniae K22 Clinical Isolates from Spain

2020

This article belongs to the Special Issue Bacteriophage—Molecular Studies.

phage therapyPhage therapyPhage therapyKlebsiella pneumoniae<i>Klebsiella pneumoniae</i>medicine.medical_treatmentGenome ViralArticleHost SpecificityCatalysisMicrobiologylcsh:ChemistryInorganic ChemistryBacteriophageViral Proteins03 medical and health sciencesPodoviridaeProtein DomainsbacteriophagemedicineHumansBacteriophagesTypingPhysical and Theoretical ChemistryBacteriophagelcsh:QH301-705.5Molecular BiologyPhylogenySpectroscopy030304 developmental biologyWhole genome sequencingInfectivityLikelihood Functions0303 health sciencesbiology030306 microbiologyOrganic ChemistryGeneral Medicinebiology.organism_classification3. Good healthComputer Science ApplicationsKlebsiella pneumoniaelcsh:Biology (General)lcsh:QD1-999Lytic cycleSpainInternational Journal of Molecular Sciences
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