Search results for "Caps"

showing 10 items of 745 documents

Teschoviruses and sapeloviruses in faecal samples from wild boar in Spain

2013

Teschovirus and Sapelovirus are two genera of the Picornaviridae family, comprising highly variable and heterogeneous enteric viruses, commonly found in faecal samples from domestic pigs. Although both of them are also known to infect wild boar, studies on their presence in these wild suids are scarce. The present study aimed at determining the presence of porcine teschovirus (PTV) and sapelovirus (PSV) in free-living wild boar populations, as well as to study their relationships with similar viruses present in pigs. Fresh faecal samples (n = 63) from wild boar were collected in Doñana Biological Reserve (SW Spain) during 2007 and 2011, and analysed using multiplex RT-PCR for the simultaneo…

food.ingredientPicornavirusgenetic structuresTeschovirusSwineCharacterizationSus scrofaRT-PCRPicornaviridaeWild boarMicrobiologyFecesfoodWild boarPhylogeneticsbiology.animalAnimalsMultiplexSapelovirusPhylogenySwine DiseasesPicornaviridae InfectionsGeneral VeterinarybiologyCoinfectionPicornavirusGeneral MedicineAmpliconbiology.organism_classificationVirologyDomestic pigSpainTeschovirusCapsid ProteinsSapelovirus
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Molecular insights into shellac film coats from different aqueous shellac salt solutions and effect on disintegration of enteric-coated soft gelatin …

2014

The purpose of this investigation was to study the effect of using different salts of shellac on the disintegration properties of shellac-based enteric coatings. In the last two decades, shellac has been increasingly used as an aqueous solution for enteric coating purposes, with the ammonium salt being the form typically used. Little investigation has been performed on using other salts, and therefore, this was the focus of our work. Enteric coatings, based on different shellac salts (ammonium, sodium, potassium and composite ammonium-sodium), were applied onto soft gelatin capsules. Disintegration testing of the coated soft gelatin capsules showed that alkali metal salts promote faster dis…

food.ingredientPotassiumInorganic chemistryPharmaceutical Sciencechemistry.chemical_elementCapsulesGelatinchemistry.chemical_compoundAmmoniafoodShellacmedicineAmmoniumSolubilityAqueous solutionWaterEnteric coatingPharmaceutical SolutionschemistryChemical engineeringvisual_artvisual_art.visual_art_mediumGelatinSaltsTablets Enteric-CoatedResins Plantmedicine.drugInternational journal of pharmaceutics
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Thermus bacteriophage P23-77 : key member of a novel, but ancient family of viruses from extreme environments

2015

geenitviruksetviral selfsystematiikkaextreme environmentsvirus taxonomyääriolotbakteriofagitvirion assemblyviral lineagesmorfologiacapsid-associated proteinsproteiinitkuumat lähteetkapsidi
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Design and construction of halogen-bonded capsules and cages

2017

This thesis describes the design, synthesis and characterization of supramolecular halogen-bonded capsules and cages from multivalent ligands. In the first part of the thesis, an overview to halogen bonding is provided. After discussing the general features of the halogen bonding, the most frequently used halogen bond donors are introduced and examples of their utilization in halogen-bonded systems are discussed. The chapter also presents recent advances made in the field of halogen-bonded supramolecular capsules. The first part of the thesis also includes a review of halogen-bonded complexes involving halonium ions, and a brief introduction to [N···X+···N] halogen bonds is provided along w…

halogeenitcation exchangemolekyylitkompleksiyhdisteetself-assemblycavitandssupramolecular chemistrykavitanditkemialliset sidoksetsupramolekyylikemiahalogen-bonded capsuleshalogen bondhalogeenisidoshalonium ionsmolekyylikapselitröntgenkristallografiaX-ray crystallography
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The “nitrogen effect” : Complexation with macrocycles potentiates fused heterocycles to form halogen bonds in competitive solvents

2023

Weak intermolecular forces are typically very difficult to observe in highly competitive polar protic solvents as they are overwhelmed by the quantity of competing solvent. This is even more challenging for three-component ternary assemblies of pure organic compounds. In this work, we overcome these complications by leveraging the binding of fused aromatic N-heterocycles in an open resorcinarene cavity to template the formation of a three-component halogen-bonded ternary assembly in a protic polar solvent system. peerReviewed

halogeenitkemiaOrganic ChemistryN-Heterocyclesdimeric capsulesmolekyylitGeneral ChemistryBiochemistrytyppiresorcinareneshalogen bondternary assembliesorgaaniset yhdisteetliuottimet
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Endothelial cells loss to the hyperopic pacients during phacoemulsification

2018

Introduction The phacoemulsification cataract surgery is the most frequently performed surgery and it generally improves vision in over 90% of the patients. Hyperopic patients are a challenge during phacoemulsification especially because of their short eyeball and shallow anterior chamber. A shallow anterior chamber is associated with overall reduction of the safe zone, which may lead to difficulty in creating the corneal incisions, harder capsulorhexis performing, or endothelial complications. Purpose The aim of the study was to present the endothelial cells loss after the phacoemulsification procedure in the hyperopic patients. Material and methods A number of 1775 patients operated in th…

hyperopiaspecular microscopyCorneal endotheliummedicine.medical_specialtygenetic structuresEndotheliummedicine.medical_treatmentHypermetropiaEmmetropiaCataractLens Implantation IntraocularCorneaOphthalmologymedicineHumansCapsulorhexisPhacoemulsificationbusiness.industryEndothelium Cornealshallow anterior chamberEndothelial CellsGeneral MedicinePhacoemulsificationCataract surgeryeye diseasesmedicine.anatomical_structureGeneral ArticlesbusinessRomanian Journal of Ophthalmology
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Nuclear entry and egress of parvoviruses.

2022

Parvoviruses are small non-enveloped single-stranded DNA viruses, which depend on host cell nuclear transcriptional and replication machinery. After endosomal exposure of nuclear localization sequence and a phospholipase A2 domain on the capsid surface, and escape into the cytosol, parvovirus capsids enter the nucleus. Due to the small capsid diameter of 18–26 nm, intact capsids can potentially pass into the nucleus through nuclear pore complexes (NPCs). This might be facilitated by active nuclear import, but capsids may also follow an alternative entry pathway that includes activation of mitotic factors and local transient disruption of the nuclear envelope. The nuclear entry is followed b…

import and exportCell NucleusisäntäsolutviruksetparvovirusesNuclear Envelopenuclear pore complexesnucleusActive Transport Cell NucleusDNA Single-Strandednuclear envelopeVirus ReplicationMicrobiologyinfektiotParvovirusPhospholipasestumaNuclear PoreCapsid ProteinsMolecular BiologyparvoviruksetkapsidiMolecular microbiologyREFERENCES
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Research on conversion of Carrizo citrange [C. sinensis (L.) Osb. × P. trifoliata (L.) Raf.] synthetic seeds.

2008

in vitro culture citrus rootstockMicrocuttings; calcium alginate; encapsulation; regrowth; conversionMicrocuttingsencapsulationregrowthcalcium alginateconversion
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More than a Confinement: “Soft” and “Hard” Enzyme Entrapment Modulates Biological Catalyst Function

2019

Catalysis makes chemical and biochemical reactions kinetically accessible. From a technological point of view, organic, inorganic, and biochemical catalysis is relevant for several applications, from industrial synthesis to biomedical, material, and food sciences. A heterogeneous catalyst, i.e., a catalyst confined in a different phase with respect to the reagents’ phase, requires either its physical confinement in an immobilization matrix or its physical adsorption on a surface. In this review, we will focus on the immobilization of biological catalysts, i.e., enzymes, by comparing hard and soft immobilization matrices and their effect on the modulation of the catalysts’ function. Indeed, …

inorganic chemicals02 engineering and technology010402 general chemistryHeterogeneous catalysisbiosensor01 natural sciencesCatalysischemistry.chemical_compoundbioreactorAdsorptionBioreactorMoleculePhysical and Theoretical ChemistrytrehalosecatalysisSilica gelsilica gel021001 nanoscience & nanotechnology0104 chemical sciencesenzymeChemical engineeringchemistryReagentencapsulation0210 nano-technologyBiosensor
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Halogen bonding and host-guest chemistry between

2019

Single crystal X-ray structures of halogen-bonded assemblies formed between host N-hexylammonium resorcinarene bromide (1) or N-cyclohexylammonium resorcinarene chloride (2), and 1,4-diiodooctafluorobutane and accompanying small solvent guests (methanol, acetonitrile and water) are presented. The guests’ inclusion affects the geometry of the cavity of the receptors 1 and 2, while the divalent halogen bond donor 1,4-diiodooctafluorobutane determines the overall nature of the halogen bond assembly. The crystal lattice of 1 contains two structurally different dimeric assemblies A and B, formally resulting in the mixture of a capsular dimer and a dimeric pseudo-capsule. 1H and 19F NMR analyses …

inorganic chemicalsChemistryresorcinarene saltshalogen bondingcapsuleOrganic Chemistryhost–guest chemistryFull Research Paperdimeric assembliesX-ray crystallographyBeilstein journal of organic chemistry
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