Search results for "lcsh:QD241-441"

showing 10 items of 438 documents

Enhancement of Wound Healing in Normal and Diabetic Mice by Topical Application of Amorphous Polyphosphate. Superior Effect of a Host⁻Guest Composite…

2017

The effect of polyphosphate (polyP) microparticles on wound healing was tested both in vitro and in a mice model in vivo. Two approaches were used: pure salts of polyphosphate, fabricated as amorphous microparticles (MPs, consisting of calcium and magnesium salts of polyP, “Ca–polyp-MPs” and “Mg–polyp-MPs”), and host–guest composite particles, prepared from amorphous collagen (host) and polyphosphate (guest), termed “col/polyp-MPs”. Animal experiments with polyP on healing of excisional wounds were performed using both normal mice and diabetic mice. After a healing period of 7 days “Ca–polyp-MP” significantly improved re-epithelialization in normal mice from 31% (control) to 72% (polyP micr…

0301 basic medicinecollagenMaterials sciencePolymers and PlasticsPAI-1chemistry.chemical_elementpolyphosphate; microparticles; delayed wound healing; collagen; PAI-1; re-epithelialization; diabetic mice02 engineering and technologymacromolecular substancesCalciumdiabetic miceArticlelcsh:QD241-44103 medical and health scienceschemistry.chemical_compoundlcsh:Organic chemistryIn vivootorhinolaryngologic diseasesre-epithelializationneoplasmsmicroparticlesPolyphosphateDiabetic mousepolyphosphateGeneral Chemistry021001 nanoscience & nanotechnologyMolecular biologyIn vitrodigestive system diseases3. Good healthAmorphous solid030104 developmental biologysurgical procedures operativechemistry0210 nano-technologyWound healingPlasminogen activatordelayed wound healingPolymers
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Restoration of Impaired Metabolic Energy Balance (ATP Pool) and Tube Formation Potential of Endothelial Cells under “high glucose”, Diabetic Conditio…

2017

Micro-vascularization is a fast, energy-dependent process that is compromised by elevated glucose concentrations such as in diabetes mellitus disease. Here, we studied the effect of the physiological bioinorganic polymer, polyphosphate (polyP), on the reduced ATP content and impaired function of endothelial cells cultivated under "high glucose" (35 mM diabetes mellitus conditions) concentrations. This high-energy biopolymer has been shown to provide a source of metabolic energy, stored in its phosphoanhydride bonds. We show that exposure of human umbilical vein endothelial cells (HUVEC cells) to "high glucose" levels results in reduced cell viability, increased apoptotic cell death, and a d…

0301 basic medicinemedicine.medical_specialtyPolymers and PlasticsCelltube formationATP poolUmbilical veinArticlelcsh:QD241-44103 medical and health sciencesHUVEClcsh:Organic chemistryDiabetes mellitusInternal medicinemedicineViability assayglucoseTube formationdiabetesChemistryapoptosispolyphosphateGeneral Chemistrymedicine.diseaseIn vitroendothelial cellsATP pool; diabetes; tube formation; apoptosis; glucose; polyphosphate; endothelial cells; HUVEC030104 developmental biologyEndocrinologymedicine.anatomical_structureBiochemistryApoptosisIntracellularPolymers; Volume 9; Issue 11; Pages: 575
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In Vivo Cardiotoxicity Induced by Sodium Aescinate in Zebrafish Larvae

2016

Sodium aescinate (SA) is a widely-applied triterpene saponin product derived from horse chestnut seeds, possessing vasoactive and organ-protective activities with oral or injection administration in the clinic. To date, no toxicity or adverse events in SA have been reported, by using routine models (in vivo or in vitro), which are insufficient to predict all aspects of its pharmacological and toxicological actions. In this study, taking advantage of transparent zebrafish larvae (Danio rerio), we evaluated cardiovascular toxicity of SA at doses of 1/10 MNLC, 1/3 MNLC, MNLC and LC10 by yolk sac microinjection. The qualitative and quantitative cardiotoxicity in zebrafish was assessed at 48 h p…

0301 basic medicinesodium aescinateEmbryo NonmammalianHeart malformationDrug Evaluation PreclinicalPharmaceutical Science010501 environmental sciencesPharmacology01 natural sciencesAnalytical ChemistryHeart RateDrug DiscoveryToxicity Tests ChronicZebrafishYolk SacbiologyCommunicationHeartLC10medicine.anatomical_structureChemistry (miscellaneous)LarvaToxicityMolecular MedicineHeart Defects CongenitalMicroinjectionscardiotoxicityHemorrhagelarvaelcsh:QD241-44103 medical and health scienceslcsh:Organic chemistryIn vivoHeart ratemedicineMNLCAnimalsPhysical and Theoretical ChemistryYolk sacAdverse effect0105 earth and related environmental sciencesCardiotoxicityDose-Response Relationship DrugOrganic ChemistryThrombosisSaponinsbiology.organism_classificationzebrafishTriterpenes030104 developmental biologyMolecules
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Salt and Aroma Compound Distributions Influence Flavour Release and Temporal Perception While Eating Hot-Served Flans.

2021

International audience; To counteract the negative effect of salt overconsumption on health, strategies have been developed to reduce the salt content in food products. Among them, two promising strategies based on odour-induced saltiness enhancement and the heterogeneous distribution of flavour compounds were combined and assessed in four-layer cream-based snacks. To investigate the relationship between saltiness enhancement, temporal release and perception of flavour compounds in hot snacks with heterogeneous distribution of salt and aroma compounds, complementary techniques were used: nose space PTR-Tof-MS (Proton Transfer Reaction-Time of Flight–Mass Spectrometry) to assess the release …

030309 nutrition & dieteticsFood HandlingFlavourPharmaceutical ScienceMass SpectrometryAnalytical Chemistrychemistry.chemical_compoundDrug DiscoveryAroma compoundsaltFood science2. Zero hungerchemistry.chemical_classification0303 health sciencesbiologyspatial distributionfood and beveragesTaste Perception04 agricultural and veterinary sciences040401 food scienceTaste intensitytemporal dominance of sensationsChemistry (miscellaneous)TasteMolecular MedicineSalt (chemistry)alternate time intensityArticlelcsh:QD241-44103 medical and health sciences0404 agricultural biotechnologylcsh:Organic chemistryHumansPhysical and Theoretical ChemistrySodium Chloride DietaryAromaflavour releaseOrganic Chemistrybiology.organism_classificationFlavoring AgentschemistryaromaFood productsOdorantsSaltsSalty tastedescriptive sensory analysisTemporal perception[SDV.AEN]Life Sciences [q-bio]/Food and NutritionFood AnalysisMolecules (Basel, Switzerland)
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Synthesis of Isoxazole and 1,2,3-Triazole Isoindole Derivatives via Silver- and Copper-Catalyzed 1,3-Dipolar Cycloaddition Reaction.

2016

International audience; The CuI-or Ag 2 CO 3-catalyzed [3+2] cycloaddition of propargyl-substituted dihydroisoindolin-1-one (3) with arylnitrile oxides 1a-d (Ar = Ph, p-MeC 6 H 4 , p-MeOC 6 H 4 , p-ClC 6 H 4) produces in good yields novel 3,5-disubstituted isoxazoles 4 of the ethyl-2-benzyl-3-oxo-1-((3-arylisoxazol-5yl)methyl)-2,3-dihydro-1H-isoindole-1-carboxylate type. With aryl azides 2a-d (Ar = Ph, p-MeC 6 H 4 , p-OMeC 6 H 4 , p-ClC 6 H 4), a series of 1,4-disubstituted 1,2,3-triazoles 6 (ethyl-2-benzyl-3-oxo-1-((1-aryl-1H-1,2,3-triazol-4-yl)methyl)-2,3-dihydro-1H-isoindole-1-carboxylates) was obtained. The reactions proceed in a regioselective manner affording exclusively racemic adduc…

123-TriazoleMagnetic Resonance SpectroscopySilverSpectrophotometry Infrared12Pharmaceutical Science[3+2] dipolar cycloaddition; arylnitrile oxides; arylazides; isoxazole; 123-triazolesarylazidesIsoindoles010402 general chemistryCrystallography X-Ray01 natural sciencesMedicinal chemistryCatalysisArticleAnalytical Chemistrylcsh:QD241-441chemistry.chemical_compoundlcsh:Organic chemistryDrug DiscoveryOrganic chemistryPhysical and Theoretical ChemistryIsoxazoleCycloaddition Reaction010405 organic chemistryArylOrganic ChemistryisoxazoleRegioselectivityIsoxazolesarylnitrile oxidesTriazolesCycloaddition0104 chemical scienceschemistryChemistry (miscellaneous)13-Dipolar cycloaddition[3+2] dipolar cycloadditionMolecular Medicine123-triazoles3-triazolesIsoindoleSelectivity[PHYS.ASTR]Physics [physics]/Astrophysics [astro-ph]CopperMolecules (Basel, Switzerland)
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Studies to Elucidate the Mechanism of Cardio Protective and Hypotensive Activities of Anogeissus acuminata (Roxb. ex DC.) in Rodents

2020

Anogeissus acuminata (Roxb. ex DC.) is a folkloric medicinal plant in Asia

1Pharmaceutical Scienceacute myocardial infarction 3030204 cardiovascular system & hematologyPharmacologyCreatineAnalytical ChemistryNitric oxidelcsh:QD241-44103 medical and health scienceschemistry.chemical_compound0302 clinical medicinevasorelaxant 4lcsh:Organic chemistryIn vivoDrug DiscoveryRenin–angiotensin systemleft ventricular hypertrophy 2Physical and Theoretical ChemistryCyclic guanosine monophosphate030304 developmental biology0303 health sciencesbiologyOrganic ChemistryAngiotensin-converting enzymehypotensivechemistryChemistry (miscellaneous)biology.proteinMolecular MedicineCreatine kinasehistopathology 6cardio relaxant 5Ex vivoMolecules
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Synthesis of disparlure and monachalure enantiomers from 2,3-butanediacetals

2020

2,3-Butanediacetal derivatives were used for the stereoselective synthesis of unsymmetrically substituted cis-epoxides. The procedure was applied for the preparation of both enantiomers of disparlure and monachalure, the components of the sex pheromones of the gypsy moth (Lymantria dispar) and the nun moth (Lymantria monacha) using methyl (2S,3R,5R,6R)-3-ethylsulfanylcarbonyl-5,6-dimethoxy-5,6-dimethyl-1,4-dioxane-2-carboxylate as the starting material.

23-butanediacetalStereochemistry2010402 general chemistry01 natural sciencesFull Research Papercis-epoxidelcsh:QD241-441lcsh:Organic chemistryLymantria dispar3-butanediacetallcsh:Science(+)-monachalurebiology010405 organic chemistryChemistryOrganic Chemistry(−)-monachalureLymantria monachaGypsy mothbiology.organism_classification0104 chemical sciences(−)-disparlureChemistrySex pheromonelcsh:QEnantiomer(+)-disparlureBeilstein Journal of Organic Chemistry
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Past, Present and Future Perspectives on Halloysite Clay Minerals

2020

Halloysite nanotubes (HNTs), clay minerals belonging to the kaolin groups, are emerging nanomaterials which have attracted the attention of the scientific community due to their interesting features, such as low-cost, availability and biocompatibility. In addition, their large surface area and tubular structure have led to HNTs’ application in different industrial purposes. This review reports a comprehensive overview of the historical background of HNT utilization in the last 20 years. In particular it will focus on the functionalization of the surfaces, both supramolecular and covalent, following applications in several fields, including biomedicine, environmental science and catalysis.

2019-20 coronavirus outbreakCoronavirus disease 2019 (COVID-19)Surface PropertiesSevere acute respiratory syndrome coronavirus 2 (SARS-CoV-2)Pharmaceutical ScienceNanotechnologyReviewhalloysite nanotubesengineering.materialHalloysiteAnalytical Chemistrylcsh:QD241-441lcsh:Organic chemistryDrug DiscoveryPhysical and Theoretical ChemistryParticle SizeMineralsMolecular StructureOrganic ChemistrySettore CHIM/06 - Chimica Organicahistorical backgroundsupramolecular functionalizationChemistry (miscellaneous)engineeringMolecular MedicineClayClay mineralschemical modificationMolecules
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PEG 400/Cerium Ammonium Nitrate Combined with Microwave-Assisted Synthesis for Rapid Access to Beta-Amino Ketones. An Easy-to-Use Protocol for Discov…

2018

Compound libraries are important requirement in target-based drug discovery. In the present work, a small focused compound library based on β-aminoketone scaffold has been prepared combining microwave-assisted organic synthesis (MAOS) with polymer-assisted solution phase synthesis (PASPS) and replacing reaction workup standard purification procedures with solid phase extraction (SPE). Specifically, the effects of solvent, such as dioxane, dimethylformamide (DMF), polyethylene glycol 400 (PEG 400), temperature, irradiation time, stoichiometric ratio of reagents, and catalysts (HCl, acetic acid, cerium ammonium nitrate (CAN)) were investigated to maximize both conversion and yield. The optimi…

3003Transcription FactorPharmaceutical ScienceNitratePolyethylene Glycol01 natural sciencesPolyethylene GlycolsPolymer-assisted solution phase synthesiAnalytical Chemistrychemistry.chemical_compoundDrug DiscoveryMannich reactionSolid phase extractionMicrowavesβ-aminoketonesCeriumKetonesKetoneDNA-Binding ProteinsSolventCeriumChemistry (miscellaneous)Molecular MedicineDimethylformamideMicrowave-assisted organic synthesiMannich reaction; β-aminoketones; microwave-assisted organic synthesis; polymer-assisted solution phase synthesis; solid phase extraction; drug discoveryDNA-Binding ProteinBacterial Proteinchemistry.chemical_elementPolyethylene glycol010402 general chemistryArticlelcsh:QD241-441Bacterial Proteinslcsh:Organic chemistryΒ-aminoketonePhysical and Theoretical ChemistrySolid phase extractionpolymer-assisted solution phase synthesisPEG 400Nitrates010405 organic chemistryDrug Discovery3003 Pharmaceutical ScienceOrganic ChemistrySettore CHIM/08 - Chimica FarmaceuticaCombinatorial chemistry0104 chemical scienceschemistryYield (chemistry)microwave-assisted organic synthesisOrganic synthesisMicrowaveTranscription FactorsMolecules
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Site-specific DBCO modification of DEC205 antibody for polymer conjugation

2018

The design of multifunctional polymer-based vectors, forming pDNA vaccines, offers great potential in cancer immune therapy. The transfection of dendritic immune cells (DCs) with tumour antigen-encoding pDNA leads to an activation of the immune system to combat tumour cells. In this work, we investigated the chemical attachment of DEC205 antibodies (aDEC205) as DC-targeting structures to polyplexes of P(Lys)-b-P(HPMA). The conjugation of a synthetic block copolymer and a biomacromolecule with various functionalities (aDEC205) requires bioorthogonal techniques to avoid side reactions. Click chemistry and in particular the strain-promoted alkyne-azide cycloaddition (SPAAC) can provide the req…

540 Chemistry and allied sciencesRAFT polymerizationpDNA polyplexvaccinationbioorthogonal chemistryArticleDEC205 antibodylcsh:QD241-441strain-promoted alkyne-azide cycloaddition (SPAAC)lcsh:Organic chemistry540 Chemiecancer immune therapydendritic cells (DCs)targeting
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