Search results for "Nuclear magnetic resonance spectroscopy"

showing 10 items of 843 documents

Clerodane diterpenoids from Salvia splendens.

2006

Four new clerodane diterpenoids, salvisplendins A-D (1-4), have been isolated from an acetone extract of the flowers of SalVia splendens, together with an artifact (5), arising from salvisplendin D (4) by addition of diazomethane, and the already known clerodane olearin (6). The structures of the new compounds (1-5) were established mainly by 1D and 2D NMR spectroscopic studies and, in the case of salvisplendin A (1), by chemical correlation with splenolide B (7). Complete 1H and 13C NMR assignments for olearin (6), not published hitherto, are also reported.

StereochemistryPharmaceutical ScienceFlowersSalviaAnalytical ChemistryDiterpenes Clerodanechemistry.chemical_compoundFour new clerodane diterpenoids salvisplendins A-D (1-4) have been isolated from an acetone extract of the flowers of SalVia splendens together with an artifact (5) arising from salvisplendin D (4) by addition of diazomethane and the already known clerodane olearin (6). The structures of the new compounds (1-5) were established mainly by 1D and 2D NMR spectroscopic studies and in the case of salvisplendin A (1) by chemical correlation with splenolide B (7). Complete 1H and 13C NMR assignments for olearin (6) not published hitherto are also reportedDrug DiscoveryOrganic chemistrySalviaNuclear Magnetic Resonance BiomolecularPharmacologychemistry.chemical_classificationPlants MedicinalbiologyMolecular StructureChemistryDiazomethaneOrganic ChemistryCarbon-13 NMRbiology.organism_classificationChemical correlationTerpenoidComplementary and alternative medicineItalyMolecular MedicineDiterpeneTwo-dimensional nuclear magnetic resonance spectroscopyLactoneJournal of natural products
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Trimeric Hemibastadin Congener from the Marine Sponge Ianthella basta

2012

The first naturally occurring trimeric hemibastadin congener, sesquibastadin 1 (1), and the previously reported bastadins 3, 6, 7, 11, and 16 (2-6) were isolated from the marine sponge Ianthella basta, collected in Indonesia. The structure of 1 was elucidated on the basis of 1D and 2D NMR measurements and by HRMS. Among all the isolated compounds, the linear sesquibastadin 1 (1) and bastadin 3 (2) showed the strongest inhibition rates for at least 22 protein kinases (IC(50) = 0.1-6.5 μM), while the macrocyclic bastadins (3-6) demonstrated a strong cytotoxic potential against the murine lymphoma cell line L5178Y (IC(50) = 1.5-5.3 μM).

StereochemistryPharmaceutical ScienceMarine BiologySesquibastadinAnalytical ChemistryMiceIanthella bastaDrug DiscoveryHalogenated Diphenyl EthersAnimalsNuclear Magnetic Resonance BiomolecularProtein Kinase InhibitorsPharmacologyMolecular StructurebiologyMurine lymphomaOrganic Chemistrybiology.organism_classificationPoriferaSpongeCongenerComplementary and alternative medicineIndonesiaMolecular MedicineDrug Screening Assays AntitumorTwo-dimensional nuclear magnetic resonance spectroscopyJournal of Natural Products
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Steroidal saponins from Chlorophytum deistelianum.

2016

Abstract Phytochemical investigation of the aerial parts of Chlorophytum deistelianum led to the isolation of four previously undescribed steroidal saponins called chlorodeistelianosides A–D with five known ones. Their structures were established mainly by extensive 1D and 2D NMR spectroscopic techniques and mass spectrometry as (25R)-3β-[(β- d -glucopyranosyl-(1 → 3)-[α- l -rhamnopyranosyl-(1 → 4)]-β- d -xylopyranosyl-(1 → 3)-[β- d -glucopyranosyl-(1 → 2)]-β- d -glucopyranosyl-(1 → 4)-β- d -galactopyranosyl)oxy]-5α-spirostan-12-one, (24S,25S)-24-[(β- d -glucopyranosyl)oxy]-3β-[(β- d -glucopyranosyl-(1 → 2)-[β- d -xylopyranosyl-(1 → 3)]-β- d -glucopyranosyl-(1 → 4)-β- d -galactopyranosyl)ox…

StereochemistryPlant ScienceHorticulture01 natural sciencesBiochemistryLiliaceaeSpirostansAnimalsHumansCameroonMolecular BiologyNuclear Magnetic Resonance Biomolecularchemistry.chemical_classificationbiologyMolecular Structure010405 organic chemistryGlycosidePhytosterolsStereoisomerismGeneral MedicineSaponinsbiology.organism_classificationAntineoplastic Agents Phytogenic0104 chemical sciencesRats010404 medicinal & biomolecular chemistrychemistryDrug Screening Assays AntitumorChlorophytumTwo-dimensional nuclear magnetic resonance spectroscopyHuman cancerPhytochemistry
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Triterpenoid saponins from Hydrocotyle bonariensis Lam

2011

Abstract Phytochemical investigation of the under-ground parts of Hydrocotyle bonariensis led to the isolation of five oleanane-type triterpenoid saponins, 3- O -{β- d -glucopyranosyl-(1 → 2)-[α- l -arabinopyranosyl-(1 → 3)]-β- d -glucuronopyranosyl}-21- O -(2-methylbutyroyl)-22- O -acetyl-R 1 -barrigenol, 3- O -{β- d -glucopyranosyl-(1 → 2)-[α- l -arabinopyranosyl-(1 → 3)]-β- d -glucuronopyranosyl}-21- O -(2-methylbutyroyl)-28- O -acetyl-R 1 -barrigenol, 3- O -{β- d -glucopyranosyl-(1 → 2)-[α- l -arabinopyranosyl-(1 → 3)]-β- d -glucuronopyranosyl}-21- O -acetyl-R 1 -barrigenol, 3- O -{β- d -glucopyranosyl-(1 → 2)-[α- l -arabinopyranosyl-(1 → 3)]-β- d -glucuronopyranosyl}-R 1 -barrigenol, a…

StereochemistryPlant ScienceHorticultureBiochemistryHydrocotyle bonariensisTriterpenoidHumansCameroonNuclear Magnetic Resonance BiomolecularMolecular BiologyMolecular StructurebiologyChemistryStereoisomerismGeneral MedicineSaponinsHCT116 Cellsbiology.organism_classificationAntineoplastic Agents PhytogenicTriterpenesHuman colon cancerDrug Screening Assays AntitumorHT29 CellsTwo-dimensional nuclear magnetic resonance spectroscopyRhizomeApiaceaePhytochemistry
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Triterpene saponins from Billia rosea.

2017

Five previously undescribed triterpene saponins, billiosides A-E, and a known analogue, were isolated from the seeds of Billia rosea (Planch. & Linden) C. Ulloa & P. Jorg. Their structures were elucidated on the basis of extensive 1D and 2D NMR experiments (1H, 13C, DEPT, COSY, TOCSY, NOESY, ROESY, HSQC, and HMBC) and mass spectrometry as (3β,21β,22α)-3-[(2-O-β-D-glucopyranosyl-O-[α-L-arabinopyranosyl-(1 → 4)]-β-D-glucopyranosyl)oxy]-21-[((2E,6S)-2,6-dimethyl-6-hydroxyocta-2,7-dienoyl)oxy]-22-(acetyloxy)-24-hydroxyolean-12-en-28-oic acid, (3β,21β,22α)-3-[(2-O-β-D-galactopyranosyl-β-D-glucopyranosyl)oxy]-21,22-dihydroxyolean-12-en-28-yl O-α-L-arabinopyranosyl-(1 → 4)-β-D-glucopyranoside, (3β…

StereochemistryPlant ScienceHorticultureDEPTBillia rosea01 natural sciencesBiochemistryIntestinal absorptionTriterpeneOrganic chemistryAnimalsHypoglycemic AgentsMolecular Biologychemistry.chemical_classificationMolecular Structure010405 organic chemistryChemistryHippocastanaceaeGeneral MedicineSaponinsTriterpenes0104 chemical sciencesRatsIntestines010404 medicinal & biomolecular chemistryGlucoseIntestinal AbsorptionSeedsMicrosomes LiverTwo-dimensional nuclear magnetic resonance spectroscopyPhytochemistry
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Formation of New η5-Rhodium(III) Complexes from η5-Rh(I) Rhodacarborane-Containing Charge-Compensated Ligands

2004

A series of new Rh(I) half-sandwich complexes of formula [3,3-(PPh 3 ) 2 -8-L-closo-3,1,2-RhC 2 B 9 H 1 0 )] (L = SMe 2 (2a), SEt 2 (2b), S(CH 2 ) 4 (2c), SEtPh (2d)) and [1-Me-3,3-(PPh 3 ) 2 -8-L-closo-3,1,2-RhC 2 B 9 H 9 )] (L = SMe 2 (2e), SEt 2 (2f)) have been prepared by reaction of the respective monoanionic charge-compensated ligands [10-L-nido-7,8-C 2 B 9 H 1 0 ] - and [7-Me-10-L-7,8-C 2 B 9 H 9 ] - with [RhCl(PPh 3 ) 3 ]. Complex [3,3-(cod)-8-SMe2-closo-3,1,2-RhC 2 B 9 H 1 0 ] (3) has also been prepared by reaction of K[10-SMe 2 -nido-7,8-C 2 B 9 H 1 0 ] with [RhCl(cod)] 2 . Rh(I) complexes 2a-d may be easily oxidized to the corresponding Rh(III) complexes 4a-d under N 2 atmosphere…

StereochemistryRadicalOrganic Chemistrychemistry.chemical_elementCharge (physics)Nuclear magnetic resonance spectroscopyCrystal structureMedicinal chemistryRhodiumlaw.inventionInorganic ChemistrychemistrylawMoleculePhysical and Theoretical ChemistrySpectrum analysisElectron paramagnetic resonanceOrganometallics
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1H-NMR spectroscopic studies of paramagnetic superstructured iron(III) porphyrinsThis article is dedicated to the memory of Professor Michel Momentea…

2002

The electronic properties of several superstructured iron(III) porphyrins, in which the two faces of the porphyrin are protected by two chains linked at the opposite phenyl rings, have been investigated. The paramagnetic 1H NMR spectra of three iron(III) “basket-handle” porphyrins such as FeIII[e-BHP(C12)2], FeIII[a-BHP(C12)2] and FeIII[e-BHP(C12)(ImC11)] in organic solvent have been assigned. The 1H T1 values of the signals were measured and resonance assignments made based on NOESY and COSY experiments. The electronic structure of the iron(III) is discussed on the basis of the temperature dependence of the isotropic shifts and relaxation times. The hyperfine-shifted resonances in these sp…

StereochemistryRelaxation (NMR)ResonanceGeneral ChemistryElectronic structurePorphyrinCatalysisSpectral lineParamagnetismchemistry.chemical_compoundCrystallographychemistryMaterials ChemistryProton NMRTwo-dimensional nuclear magnetic resonance spectroscopyNew Journal of Chemistry
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Glandulosides A-D, triterpene saponins from Acanthophyllum glandulosum.

2004

Four novel triterpenoid saponins, glandulosides A (1), B (2), C (3), and D (4), together with two known saponins (5 and 6) have been isolated from the roots of Acanthophyllum glandulosum. Their structures were elucidated using a combination of homo- and heteronuclear 2D NMR techniques (COSY, TOCSY, NOESY, HSQC, and HMBC) and by FABMS. The new compounds were characterized as 23-O-beta-D-galactopyranosylgypsogenic acid-28-O-beta-D-glucopyranosyl-(1-->3)-[beta-d-galactopyranosyl-(1-->6)]-beta-D-galactopyranoside (1), 3-O-beta-D-galactopyranosyl-(1-->2)-[beta-D-xylopyranosyl-(1-->3)]-beta-D-glucuronopyranosylgypsogenin-28-O-beta-D-xylopyranosyl-(1-->3)-beta-D-xylopyranosyl-(1-->4)-alpha-l-rhamn…

StereochemistrySaponinPharmaceutical ScienceCaryophyllaceaeUronic acidIranPlant RootsAnalytical Chemistrychemistry.chemical_compoundTriterpeneDrug DiscoveryTetrasaccharideTrisaccharideNuclear Magnetic Resonance BiomolecularPharmacologychemistry.chemical_classificationPlants MedicinalMolecular StructureOrganic ChemistryGlycosideStereoisomerismSaponinsTriterpenesComplementary and alternative medicinechemistryHeteronuclear moleculeMolecular MedicineTwo-dimensional nuclear magnetic resonance spectroscopyJournal of natural products
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Antiproliferative Oleanane Saponins from Meryta denhamii

2008

Eight new oleanane saponins (1- 8) together with four know saponins (9-12) were isolated from the aerial parts of Meryta denhamii. Their structures were elucidated by 1D and 2D NMR experiments including 1D TOCSY, DQF-COSY, ROESY, HSQC, and HMBC spectroscopy, as well as ESIMS analysis. The antiproliferative activity of all compounds was evaluated using three murine and human cancer cell lines: J774.A1, HEK-293, and WEHI-164.

StereochemistrySaponinPharmaceutical SciencePharmacognosyAnalytical ChemistryMicechemistry.chemical_compoundTriterpeneDrug DiscoveryAnimalsHumansMeryta denhamiiOleanolic AcidAraliaceaeNuclear Magnetic Resonance BiomolecularOleananePharmacologychemistry.chemical_classificationPlants MedicinalMolecular StructurebiologyOrganic ChemistryGlycosideSaponinsbiology.organism_classificationAntineoplastic Agents PhytogenicSettore CHIM/08 - Chimica FarmaceuticaOleanane Saponins Antiproliferative effectsTerpenoidItalyComplementary and alternative medicinechemistryBiochemistrySettore BIO/14 - FarmacologiaMolecular MedicineDrug Screening Assays AntitumorTwo-dimensional nuclear magnetic resonance spectroscopyJournal of Natural Products
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Diorganotin(IV) Complexes of Methyl 2-{[(E)-8-Oxo-5, 8-dihydroquinolin-5-ylidene]hydrazino}benzoate

2012

Three cis-bis{5-[(E)-2-(2-carbomethoxyphenyl)-1- diazenyl]quinolinolato}-diorganotin(IV), R2Sn(L)2, complexes [R = Me (1), Ph (2) and Bz (3)] were synthesized and characterized by 1H-, 13C-, 119Sn- NMR, IR, and 119Sn Mössbauer spectroscopic techniques in combination with elemental analysis. The structure of diphenyltin(IV) complex Ph2Sn(L)2 (2) was determined by single-crystal X-ray crystallography as its tri-benzene solvate. Each complex was found to adopt a distorted cis-R2 octahedral arrangement around the tin atom with the quinolinolato ligands being N,O-chelating; the oxygen atoms are trans to each other. The complexes retain their solid- state structure in non-coordinating solvents as…

StereochemistryStructure elucidationchemistry.chemical_elementNuclear magnetic resonance spectroscopyMedicinal chemistryInorganic ChemistryNMR spectroscopyOxygen atomchemistryOctahedronTinSettore CHIM/03 - Chimica Generale E InorganicaMössbauer spectroscopyMethyl 2-{[(E)-8-oxo-58-dihydroquinolin-5-ylidene]hydrazino}benzoateSpectroscopyTin119Sn Mössbauer spectroscopyZeitschrift für anorganische und allgemeine Chemie
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