Search results for "Lactone"

showing 10 items of 335 documents

Asymmetric synthesis of α,β-diamino acid derivatives with an aziridine-, azetidine- and γ-lactone-skeleton via Mannich-type additions across α-chloro…

2012

The efficient asymmetric synthesis of new chiral γ-chloro-α,β-diamino acid derivatives via highly diastereoselective Mannich-type reactions of N-(diphenylmethylene) glycine esters across a chiral α-chloro-N-p-toluenesulfinylimine was developed. The influence of the base, LDA or LiHMDS, used for the formation of the glycine enolates, was of great importance for the anti-/syn-diastereoselectivity of the Mannich-type reaction. The γ-chloro-α,β-diamino acid derivatives proved to be excellent building blocks for ring closure towards optically pure anti- and syn-β,γ-aziridino-α-amino esters, and subsequent ring transformation into trans-3-aminoazetidine-2-carboxylic acid derivatives and α,β-diami…

Models MolecularStereochemistryAziridinesAzetidineDiamino acidRing (chemistry)BiochemistryLactoneschemistry.chemical_compoundBiosynthesisAmino AcidsPhysical and Theoretical Chemistryta116chemistry.chemical_classificationMolecular StructureSulfur CompoundsOrganic ChemistryEnantioselective synthesisStereoisomerismAziridinechemistryGlycineAzetidinesIminesChlorine CompoundsLactoneOrganic & Biomolecular Chemistry
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3-acetylaltholactone and related styryl-lactones, mitochondrial respiratory chain inhibitors.

2000

A novel furano-pyrone, 3-acetylaltholactone, and two other known styryl-lactones, altholactone and 5-acetoxyisogoniothalamin oxide, have been isolated from Goniothalamus arvensis (Annonaceae) stem bark. We report here the isolation and structural elucidation of these compounds with furane-pyrone and styryl-pyrone skeletons, postulating also for the first time their mechanism of cytotoxicity based on inhibition on mammalian mitochondrial respiratory chain.

Models MolecularStereochemistryChemical structureSubmitochondrial ParticlesMolecular ConformationPlant ScienceHorticultureBiochemistryMitochondria HeartStyrenesLactonesOxygen ConsumptionAnimals3-acetylaltholactoneCytotoxicityFuransMolecular BiologyGoniothalamusStem barkPlants MedicinalbiologyMolecular StructurePlant StemsUncoupling AgentsGeneral Medicinebiology.organism_classificationNADKineticsMitochondrial respiratory chainAnnonaceaePyronesvisual_artvisual_art.visual_art_mediumBarkCattlePhytochemistry
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Synthesis of C-17-functionalized spongiane diterpenes: diastereoselective synthesis of (-)-spongian-16-oxo-17-al, (-)-acetyldendrillol-1, and (-)-apl…

2003

The diastereoselective synthesis of spongiane diterpenes (-)-spongian-16-oxo-17-al 2, (-)-acetyldendrillol-1 15, and (-)-aplyroseol-14 16 has been completed efficiently via the common intermediate 14. Compound 14 was prepared in five synthetic steps from (+)-podocarp-8(14)-en-13-one 13, easily available from commercial (-)-abietic acid. The key steps in the syntheses were a regioselective reduction of a 1,4-dialdehyde unit, a one-pot acetalization-acetylation, and a translactonization. The synthesis of 15 and 16 has led us to a revision of the configuration at C-17 for natural (-)-acetyldendrillol-1 and a structural reassignment for aplyroseol-14. Thus, aplyroseol-14 16 presents an unpreced…

Models MolecularStereochemistryHerpesvirus 2 HumanMolecular ConformationAntineoplastic AgentsAldehydeChemical synthesisAntiviral AgentsCatalysischemistry.chemical_compoundAb initio quantum chemistry methodsTumor Cells CulturedAnimalsHumansNuclear Magnetic Resonance Biomolecularchemistry.chemical_classificationNatural productMolecular StructureOrganic ChemistryRegioselectivityStereoisomerismPhenanthrenesPoriferachemistryAbietanesIndicators and ReagentsDiterpeneDiterpenesEnoneLactoneHeLa CellsThe Journal of organic chemistry
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Enantiospecific semisynthesis of (+)-almuheptolide-A, a novel natural heptolide inhibitor of the mammalian mitochondrial respiratory chain.

1998

The development of novel styryl lactone derivatives as bioactive compounds and the semisynthesis of both 4,5-dialkoxylated eight-membered-ring lactones with a heptolide skeleton (almuheptolide-A (1) type) and 7-alkoxylated delta-lactones with a saturated furanopyrone skeleton (etharvensin (8) type) have been successfully achieved from the chiral unsaturated alpha-pyrone altholactone (7). This new method is a direct and one-step enantiospecific alkoxylation of altholactone (7) in concentrated acid medium, followed by formation of the eight-membered-ring zeta-lactone. The reaction mechanism operating in the synthesis of the heptolide skeleton is postulated to be a direct Michael-type addition…

Models MolecularStereochemistryRespiratory chainEtherIn Vitro TechniquesMitochondria HeartElectron Transportchemistry.chemical_compoundDrug DiscoveryAnimalsMitochondrial respiratory chain complex INADH NADPH OxidoreductasesEnzyme InhibitorsTetrahydrofuranchemistry.chemical_classificationElectron Transport Complex IStereoisomerismSemisynthesisAntineoplastic Agents PhytogenicKineticsMitochondrial respiratory chainchemistryMolecular MedicineCattleEnantiomerOxidation-ReductionLactoneJournal of medicinal chemistry
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A novel caryophyllene type sesquiterpene lactone from Asparagus falcatus (Linn.); Structure elucidation and anti-angiogenic activity on HUVECs

2011

Abstract In this study the novel caryophyllene type sesquiterpene lactone (aspfalcolide) has been isolated from the leaves of Asparagus falcatus (Linn.) and characterized by IR, 1D NMR, 2D NMR, EI–MS, HR–ESI–MS and X-ray single crystal diffraction analysis. The aspfalcolide crystallizes in the orthorhombic space group P212121 with a = 6.37360(10), b = 7.6890(2), c = 27.3281(6) A, α = β = γ = 90° and Z = 4. One intermolecular O–H⋯O hydrogen bond enforces these natural molecules to form infinite chains through the crystal. Aspfalcolide was screened for its anti-angiogenic activity in human umbilical vein endothelial cells (HUVECs) and the result showed the remarkable inhibitory effect of aspf…

Models MolecularVascular Endothelial Growth Factor AStereochemistryMolecular ConformationAngiogenesis InhibitorsSesquiterpene lactoneUmbilical veinLactoneschemistry.chemical_compoundCell MovementDrug DiscoveryHuman Umbilical Vein Endothelial CellsHumansta116Cell ProliferationAsparagus falcatusPolycyclic SesquiterpenesPharmacologychemistry.chemical_classificationTube formationbiologyHydrogen bondCaryophylleneOrganic ChemistryGeneral Medicinebiology.organism_classificationchemistryOrthorhombic crystal systemAsparagus PlantSesquiterpenesTwo-dimensional nuclear magnetic resonance spectroscopyEuropean Journal of Medicinal Chemistry
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Enthalpy/entropy compensation effects from cavity desolvation underpin broad ligand binding selectivity for rat odorant binding protein 3

2014

Evolution has produced proteins with exquisite ligand binding specificity, and manipulating this effect has been the basis for much of modern rational drug design. However, there are general classes of proteins with broader ligand selectivity linked to function, the origin of which is poorly understood. The odorant binding proteins (OBPs) sequester volatile molecules for transportation to the olfactory receptors. Rat OBP3, which we characterize by X-ray crystallography and NMR, binds a homologous series of aliphatic gamma-lactones within its aromatic-rich hydrophobic pocket with remarkably little variation in affinity but extensive enthalpy/entropy compensation effects. We show that the bin…

Models Molecular[SDV.BIO]Life Sciences [q-bio]/BiotechnologyOdorant bindingolfactory receptor[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionEnthalpywaterDrug designCrystallography X-RayLigandsReceptors Odorantentropy compensationBiochemistryHydrophobic effectLactonesdifferent chemical classessiteAnimalsMoleculeNuclear Magnetic Resonance Biomolecularisotopically enriched proteinsbiologyChemistrycarbonic-anhydrase[ SDV.BIO ] Life Sciences [q-bio]/BiotechnologyLigand (biochemistry)RatsCrystallographyEnthalpy–entropy compensationSolventsOdorant-binding proteinbiology.proteinBiophysicsThermodynamicsidentificationrecognitionsolvent reorganization[SDV.AEN]Life Sciences [q-bio]/Food and NutritionProtein Binding
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The biotransformation of the Diterpenoid, Rosenonolactone by Mucor Plumbeus

2003

The biotransformation of rosenonolactone by the fungus, Mucor plumbeus involves hydroxylation at C-2α C-6β C-12α and epoxidation of the Δ15-alkene.

Mucor plumbeusbiologyChemistryStereochemistryGeneral MedicineGeneral ChemistryFungusbiology.organism_classificationTerpenoidRosenonolactoneTerpeneHydroxylationchemistry.chemical_compoundBiotransformationOrganic chemistryJournal of Chemical Research
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1-n-Butyl-3-methylimidazolium-2-carboxylate: a versatile precatalyst for the ring-opening polymerization of ε-caprolactone and rac-lactide under solv…

2013

The ring-opening polymerization of ε-caprolactone (ε-CL) and rac-lactide (rac-LA) under solvent-free conditions and using 1-n-butyl-3-methylimidazolium-2-carboxylate (BMIM-2-CO2) as precatalyst is described. Linear and star-branched polyesters were synthesized by successive use of benzyl alcohol, ethylene glycol, glycerol and pentaerythritol as initiator alcohols, and the products were fully characterized by 1H and 13C{1H} NMR spectroscopy, gel permeation chromatography (GPC), and differential scanning calorimetry (DSC). BMIM-2-CO2 acts as an N-heterocyclic carbene precursor, resulting from in situ decarboxylation, either by heating under vacuo (method A) or by addition of NaBPh4 (method B)…

N-heterocarbene precursorLactideLetterOrganic ChemistryRing-opening polymerizationPentaerythritollcsh:QD241-441chemistry.chemical_compoundChemistryimidazolium-2-carboxylateschemistryPolymerizationlcsh:Organic chemistryBenzyl alcoholgreen polymerization reactionPolymer chemistryaliphatic polyestersOrganic chemistrylcsh:QorganocatalysisCarboxylatelcsh:ScienceCaprolactoneEthylene glycolBeilstein Journal of Organic Chemistry
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Mechanism of nanocapsules formation by the emulsion-diffusion process.

2007

International audience; A detailed investigation into the mechanisms of nanocapsule formation by means of the two stages “emulsion–diffusion” process is reported. Such widely used process is still poorly understood. An emulsion of oil, polymer and ethyl acetate is fabricated as a first step; dilution with pure water allows ethyl acetate to diffuse out from the droplets, leaving a suspension of nanocapsules at the end. It has been shown that the size of nanocapsules was related to the chemical composition of the organic phase and the size of primary emulsion through a simple geometrical relationship. As a consequence, most of the properties of the nanocapsules were decided at the emulsificat…

NanocapsuleDiffusionEthyl acetate02 engineering and technologyEmulsion–diffusion010402 general chemistry01 natural sciencesNanocapsulesSuspension (chemistry)Biomaterialschemistry.chemical_compoundColloid and Surface ChemistryPhase (matter)Polymer chemistry[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process Engineeringchemistry.chemical_classificationEmulsionAqueous two-phase systemPolymer021001 nanoscience & nanotechnology0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsPolycaprolactoneProcesschemistryChemical engineeringEmulsion0210 nano-technologyJournal of colloid and interface science
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Production of polymeric micro- and nanostructures with tunable properties as pharmaceutical delivery systems

2020

Abstract The production of novel graft copolymers based on poly-e-caprolactone (PCL) and polyaspartamide are useful to realize structures for potential biomedical applications. Here, the synthesis of pegylated PCL/polyhydroxyethyl aspartamide (PHEA) graft copolymers (PHEA-g-SUCC-PCL-g-PEG) with tunable composition, was achieved by followpling a synthetic strategy that involved first the grafting of preformed PCL on PHEA backbone, then polyethylen glycol (PEG), by using 1,1′-carbonyldiimidazole (CDI) to speed up the condensation reaction. Graft copolymers with a Derivatization Degree (DD) in PCL ranging between 1.1 and 4.4 mol% were obtained, and processable with different technologies for t…

NanostructureMaterials sciencePolymers and PlasticsMicrofluidicsNanoparticlemacromolecular substances02 engineering and technology010402 general chemistry01 natural sciencesPEG ratioMaterials ChemistryCopolymerOrganic Chemistrytechnology industry and agricultureαβ-poly(N-2-hydroxyethyl)-DL-aspartamide (PHEA)equipment and suppliesmusculoskeletal system021001 nanoscience & nanotechnologyCondensation reactionGrafting0104 chemical sciencesGraft copolymerChemical engineeringMicrofluidicMicroparticlePoly-ε-caprolactone (PCL)Settore CHIM/09 - Farmaceutico Tecnologico ApplicativoNanoparticles0210 nano-technologyNanoprecipitation
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