Search results for "Salts"

showing 10 items of 258 documents

One-step large-scale deposition of salt-free DNA origami nanostructures

2015

AbstractDNA origami nanostructures have tremendous potential to serve as versatile platforms in self-assembly -based nanofabrication and in highly parallel nanoscale patterning. However, uniform deposition and reliable anchoring of DNA nanostructures often requires specific conditions, such as pre-treatment of the chosen substrate or a fine-tuned salt concentration for the deposition buffer. In addition, currently available deposition techniques are suitable merely for small scales. In this article, we exploit a spray-coating technique in order to resolve the aforementioned issues in the deposition of different 2D and 3D DNA origami nanostructures. We show that purified DNA origamis can be …

FabricationMaterials scienceNanostructureta221educationNanotechnologySubstrate (electronics)DNA nanostructuresArticleDeposition (phase transition)DNA origamiDNA nanotechnologyBiochipNanoscopic scaleMultidisciplinaryta114PhysicsDNAself-assembly113 Computer and information sciencesMaterials scienceNanostructuresChemistryspray-coatingNanolithographySaltsDNA origamiDNA origamisBiotechnology
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Synthèse de pinces à fluorures dérivées d'aminoacides pour l'imagerie TEP

2014

This thesis project, which is part of a collaboration between the Institut de Chimie Moléculaire de l’Université de Bourgogne and the Positron Emission Tomography Research Centre, is about the synthesis of fluoride pincers derived from amino acids based on 18F-B bond construction to get a new class of PET imaging agents. First, this project concerned the design, synthesis and characterisation of new boronato and trifluoroborato phosphonium amino acid salts. Quaternisation of o-boronate phenyl phosphine with β-iodo amino esters or γ-iodo amino ester leads to the corresponding salts without racemisation and in yields up to 88%. Saponification of boronato phosphonium amino esters afford the fr…

Fluoride pincersPhosphonium salts[CHIM.ORGA]Chemical Sciences/Organic chemistry[18F]-radiosynthesisPinces à fluorures[CHIM.ORGA] Chemical Sciences/Organic chemistry[ CHIM.ORGA ] Chemical Sciences/Organic chemistry[CHIM.RADIO] Chemical Sciences/RadiochemistryPhosphonium[18F]-Radiofluoration[CHIM.RADIO]Chemical Sciences/RadiochemistryAminoacidsAminoacides[ CHIM.RADIO ] Chemical Sciences/Radiochemistry
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Synthesis of No-Carrier-Added 4-[18F]Fluorophenol from 4-Benzyloxyphenyl-(2-thienyl)iodonium Bromide

2011

4-[(18)F]Fluorophenol is a versatile synthon for the synthesis of more complex radiopharmaceuticals bearing a 4-[(18)F]fluorophenoxy moiety. In order to prepare 4-[(18)F]fluorophenol in no-carrier-added (n.c.a.) form only a nucleophilic labelling method starting from [(18)F]fluoride is suitable. In this paper a new, two step radiosynthesis starting from 4-benzyloxyphenyl-(2-thienyl)iodonium bromide and [(18)F]fluoride with subsequent deprotection is described, yielding n.c.a. [(18)F]fluorophenol in 34 to 36% radiochemical yield.

Fluorine Radioisotopespositron emission tomographyTwo stepNo carrier addedPharmaceutical ScienceThiophenesMedicinal chemistryAnalytical Chemistrylcsh:QD241-441chemistry.chemical_compoundOnium CompoundsPhenolsNucleophilelcsh:Organic chemistryBromideDrug DiscoveryMoietyOrganic chemistryPhysical and Theoretical Chemistrydiaryl iodonium saltsCommunicationOrganic ChemistrySynthonRadiosynthesischemistryChemistry (miscellaneous)fluorine-18Molecular MedicineradiosynthesisRadiopharmaceuticalsFluoride4-[18F]fluorophenolMolecules
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An innovative method to produce green table olives based on "pied de cuve" technology

2015

The technology of “pied de cuve” (PdC) is applied in food process only to produce wines with an enriched community of pro-technological yeasts. PdC promotes the growth of the desirable microbial strains in a small volume of grape must acting as a starter inoculums for higher volumes. The aim of the present work was to investigate the use of partially fermented brines, a technology known as PdC, developed with lactic acid bacteria (LAB) on the microbiological, chemical and sensory characteristics of green fermented table olives during two consecutive campaigns. The experimental plan included two trials based on different PdCs: trial A, PdC obtained with Lactobacillus pentosus OM13; trial B, …

Food HandlingLactic acid bacteria; Lactobacillus pentosus; Nocellara del Belice table olive; Pied de cuve; Volatile organic compounds; Yeasts; Food Science; MicrobiologyColony Count MicrobialLactobacillus pentosusSensory analysisMicrobiologychemistry.chemical_compoundStarterOleaYeastsLactic acid bacteriaCluster AnalysisFood scienceAromaPrincipal Component AnalysisVolatile Organic Compoundsbiologybusiness.industrySmall volumeLactobacillus pentosufood and beverageshemic and immune systemsBiodiversitySettore AGR/15 - Scienze E Tecnologie AlimentariHydrogen-Ion ConcentrationVolatile organic compoundbiology.organism_classificationNocellara del Belice table oliveYeastBiotechnologyLactic acidSettore AGR/03 - Arboricoltura Generale E Coltivazioni ArboreeLactobacillusPhenotypechemistryTasteFermentationFood MicrobiologyFood TechnologyFermentationSaltsPied de cuvebusinessBacteriaFood ScienceSettore AGR/16 - Microbiologia Agraria
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Cytotoxic effects of mycotoxin combinations in mammalian kidney cells

2011

The cytotoxicity of three Fusarium mycotoxins (beauvericin, deoxynivalenol and T-2 toxin) has been investigated using the NR assay, after 24, 48 and 72h of incubation. The IC(50) values ranged from 6.77 to 11.08, 3.30 to 10.00 and 0.004 to 0.005 for beauvericin, deoxynivalenol and T-2 toxin, respectively. Once the potential interaction has been detected, a quantitative assessment is necessary to ensure and characterize these interactions, that is, each mycotoxin contributes to the toxic effect in accord with its own potency. Combination of mycotoxins was determined in Vero cells after 24, 48 and 72h of exposure. Isobolograms and median effect method of Chou and Talalay were used to assess t…

FusariumStereochemistryTetrazolium SaltsPharmacologyBiologyKidneyToxicologymedicine.disease_causeInhibitory Concentration 50chemistry.chemical_compoundDepsipeptidesChlorocebus aethiopsmedicineAnimalsHumansPotencyMycotoxinCytotoxicityVero CellsIncubationCell ProliferationFormazansDose-Response Relationship DrugToxinfood and beveragesGeneral Medicinebiology.organism_classificationBeauvericinT-2 ToxinchemistryVero cellTrichothecenesFood ScienceFood and Chemical Toxicology
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Metabolite Sensing GPCRs: Promising Therapeutic Targets for Cancer Treatment?

2020

G-protein-coupled receptors constitute the most diverse and largest receptor family in the human genome, with approximately 800 different members identified. Given the well-known metabolic alterations in cancer development, we will focus specifically in the 19 G-protein-coupled receptors (GPCRs), which can be selectively activated by metabolites. These metabolite sensing GPCRs control crucial processes, such as cell proliferation, differentiation, migration, and survival after their activation. In the present review, we will describe the main functions of these metabolite sensing GPCRs and shed light on the benefits of their potential use as possible pharmacological targets for cancer treat…

G-protein-coupled receptorMetaboliteReviewComputational biologyBiologyReceptors G-Protein-CoupledBile Acids and Saltschemistry.chemical_compoundNeoplasmsmetabolite sensing GPCRBiomarkers TumormedicinecancerAnimalsHumansMolecular Targeted TherapyAmino AcidsReceptorlcsh:QH301-705.5G protein-coupled receptorCell growthDisease ManagementCancerGeneral MedicineLipid Metabolismmedicine.diseaseCancer treatmentlcsh:Biology (General)Gene Expression RegulationchemistryHuman genomeDisease SusceptibilityCancer developmentEnergy MetabolismSignal TransductionCells
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As2O3-induced oxidative stress and cycle progression in a human intestinal epithelial cell line (Caco-2)

2007

Foods and drinking water are the main routes for human exposure to inorganic arsenic, the intestinal epithelium being the first barrier against such exogenous toxicants. The present study evaluates the effect of As(III) (0.5-25 microM) upon Caco-2 cells as an intestinal epithelia model. Cell viability, intracellular formation of reactive oxygen species (ROS), mitochondrial membrane potential (Deltapsim) changes, and cell cycle distribution in exposed cultures were evaluated. The intracellular production of ROS was seen to increase in a non-dose dependent manner at all concentrations tested, with impairment of cell mitochondrial enzyme function secondary to a loss of Deltapsim. Concentration…

G2 PhaseCell SurvivalCellTetrazolium SaltsOxidative phosphorylationBiologyToxicologymedicine.disease_causeArsenicalsMembrane PotentialsArsenic TrioxidemedicineHumansViability assaychemistry.chemical_classificationReactive oxygen speciesCell CycleG1 PhaseOxidesGeneral MedicineCell cycleIntestinal epitheliumMitochondriaCell biologyOxidative StressThiazolesmedicine.anatomical_structurechemistryMitochondrial MembranesCaco-2 CellsReactive Oxygen SpeciesOxidative stressIntracellularToxicology in Vitro
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The Gelling Ability of Some Diimidazolium Salts: Effect of Isomeric Substitution of the Cation and Anion

2013

The gelling ability of some geminal imidazolium salts was investigated both in organic solvents and in water solution. Organic salts differing either in the cation or anion structure were taken into account. In particular, the effects on the gel-phase formation of isomeric substitution on the cation or anion as well as of the use of mono- or dianions were evaluated. As far as the cation structure is concerned, isomeric cations, such as 3,3′-di-n-octyl-1,1′-(1,4-phenylenedimethylene)diimidazolium and 3,3′-di-n-octyl-1,1′-(1,3-phenylenedimethylene)diimidazolium, were used. On the other hand, in addition to the bromide anion, isomeric dianions, such as the 1,5- and 2,6-naphthalenedisulfonate a…

GeminalScanning electron microscopeOrganogels Self-Assembly Imidazolium saltsInorganic chemistrySubstitution (logic)General ChemistrySettore CHIM/06 - Chimica OrganicaResonance (chemistry)IonSolventchemistry.chemical_compoundchemistryBromidePolymer chemistrySelf-assembly
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Insights into the anion effect on the self assembly of perylene bisimide diimidazolium salts

2017

Abstract We studied how changing the anion affects the self-assembly of three diimidazolium salts bearing a perylene bisimide spacer. In particular we used [BF 4 − ] and [NTf 2 − ] based salts together with a mixed salt bearing both [I − ] and [BF 4 − ] anions. Thermal as well as concentration and temperature dependent spectroscopic investigations revealed that changing the anion impacts on solid state and solution aggregation, leading to articulate thermotropic behaviors and contrasting solvent effects, respectively. We also studied the electrochemical behavior of the salts to verify if changing the anion alters the redox properties of the salts. Finally, different anions also lead to very…

General Chemical EngineeringDiimidazolium saltSalt (chemistry)010402 general chemistryPhotochemistryElectrochemistry01 natural sciencesThermotropic crystalRedoxIonchemistry.chemical_compoundAnion effectPolymer chemistryChemical Engineering (all)chemistry.chemical_classification010405 organic chemistryProcess Chemistry and TechnologyDiimidazolium saltsAnion effect; Diimidazolium salts; Perylene bisimide; Self assembly; Chemical Engineering (all); Process Chemistry and TechnologySettore CHIM/06 - Chimica OrganicaSelf assembly0104 chemical scienceschemistryPerylene bisimideSelf-assemblySolvent effectsPeryleneDyes and Pigments
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Porphyrin-bile acid conjugates: from saccharide recognition in the solution to the selective cancer cell fluorescence detection.

2008

This paper describes the preparation and use of conjugates of porphyrins and bile acids as ligands to bind to tumor expressed saccharides. Bile acid-porphyrin conjugates were tested for recognition of saccharides that are typically present on malignant tumor cells. Fluorescence microscopy, in vitro PDT cell killing, and PDT of subcutaneous 4T1 mouse tumors is reported. High selectivity for saccharide cancer markers and cancer cells was observed. This in vivo and in vitro study demonstrated high potential use for these compounds in targeted photodynamic therapy.

GlycosylationPorphyrinsmedicine.drug_classmedicine.medical_treatmentCarbohydratesPhotodynamic therapyApoptosisDNA FragmentationLigandsBiochemistrySensitivity and SpecificityCell LineBile Acids and Saltschemistry.chemical_compoundMiceStructure-Activity RelationshipIn vivoNeoplasmsmedicineFluorescence microscopeBiomarkers TumorAnimalsHumansPhysical and Theoretical ChemistryCell Line TransformedCell ProliferationMice Inbred BALB CBinding SitesBile acidDose-Response Relationship DrugMolecular StructureChemistryOrganic ChemistryCancer3T3 Cellsmedicine.diseasePorphyrinSolutionsCell killingBiochemistryMicroscopy FluorescencePhotochemotherapyCancer cellDrug Screening Assays AntitumorHeLa CellsOrganicbiomolecular chemistry
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