Search results for " Medicinal"

showing 10 items of 590 documents

Polysaccharides from Pleurotus eryngii var. elaeoselini (Agaricomycetes), a New Potential Culinary-Medicinal Oyster Mushroom from Italy.

2020

Three water-soluble glucans (PELPS-A1, PELPS-A2, and PELPS-A3) purified from the hot water extract of the basidiomata of an edible mushroom Pleurotus eryngii var. elaeoselini by chromatography on DEAE-cellulose 32 and Sephadex G-100 column were found to consist of only D-glucose as monosaccharide constituent. Structural investigation was carried out by acid hydrolysis, periodate oxidation, and NMR experiments (1H-NMR, 13C-NMR, DQF-COSY, TOCSY, ROESY, HMQC, and HMBC). On the basis of these experiments, the structures of the repeating unit of the three isolated polysaccharides were established as follows: (1) PELPS-A1: {[→3)-α-D-Glcp-(1→]3→4)-α-D-Glcp-(1→2)-α-D-Glcp-(1→6)-α-D-Glcp-(1[→6)-β-D-…

DPPH assayAntioxidantMagnetic Resonance SpectroscopyDPPHmedicine.medical_treatmentpolysaccharidesantioxidant activityPolysaccharidePleurotusApplied Microbiology and BiotechnologyAntioxidantschemistry.chemical_compoundDrug Discoverymedicinehydroxyl radical scavenging activityMonosaccharidePleurotus eryngiiPleurotus eryngii var. elaoseliniGlucansPharmacologychemistry.chemical_classificationMushroombiologymedicinal mushroomsHydroxyl Radicalbiology.organism_classificationPleurotus eryngii var. elaoselini polysaccharides antioxidant activity DPPH assay hydroxyl radical scavenging activity medicinal mushroomsEdible mushroomchemistrySettore BIO/03 - Botanica Ambientale E ApplicataHydroxyl radicalNuclear chemistryInternational journal of medicinal mushrooms
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Phytochemical Constituents, Antioxidant Activity, and Toxicity Assessment of the Aerial Part Extracts from the Infraspecific Taxa of Matthiola frutic…

2021

In a project designed to investigate the specific and infraspecific taxa of Matthiola endemic to Sicily (Italy) as new potential sources of bioactive compounds in this work, the infraspecific taxa of Matthiola fruticulosa were studied, namely, subsp. fruticulosa and subsp. coronopifolia. HPLC–PDA/ESI–MS and SPME–GC/MS analyses of hydroalcoholic extracts obtained from the aerial parts of the two subspecies led to the detection of 51 phenolics and 61 volatile components, highlighting a quite different qualitative–quantitative profile. The antioxidant properties of the extracts were explored through in vitro methods: 1,1-diphenyl-2-picrylhydrazyl (DPPH), reducing power and Fe2+ chelating activ…

DPPHPharmaceutical Sciencebiological activityBrine shrimpMatthiolaSubspecies01 natural sciencesAnalytical Chemistry03 medical and health scienceschemistry.chemical_compoundQD241-441Biological activity; Chemical composition; Matthiola fruticulosa; Native plants; Natural resource; Sicily; Animals; Antioxidants; Artemia; Brassicaceae; Larva; Phytochemicals; Plant Extracts; Sicily; Toxicity Tests.Drug Discoverychemical compositionBioassaySettore BIO/15 - Biologia FarmaceuticaPhysical and Theoretical ChemistrySicily030304 developmental biology0303 health sciencesbiologyTraditional medicineSettore BIO/02 - Botanica Sistematica<i>Matthiola fruticulosa</i>Organic ChemistryBrassicaceaenative plantsnative plantbiology.organism_classificationnatural resource0104 chemical sciences010404 medicinal & biomolecular chemistrychemistryPhytochemicalChemistry (miscellaneous)Matthiola fruticulosaMolecular MedicineArtemia salinaMolecules
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Isolation and identification of new anthraquinones from Rhamnus alaternus L and evaluation of their free radical scavenging activity

2018

From the butanolic and the ethyl acetate extracts of Rhamnus alaternus L root bark and leaves, three new anthraquinone glycosides, alaternosides A-C (1,4,6,8 tetrahydroxy-3 methyl anthraquinone 1-O-ß-D-glucopyranosyl-4,6-di-O-α-L-rhamnopyranoside (1); 1,2,6,8 tetrahydroxy-3 methyl anthraquinone 8-O-ß-D-glucopyranoside (2) and 1, 6 dihydroxy-3 methyl 6 [2′-Me (heptoxy)] anthraquinone (3)) were isolated and elucidated together with the two known anthraquinone glycosides, Physcion-8-O-rutinoside (4) and emodin-6-O-α-L-rhamnoside (5) as well as with the known kaempferol-7-methylether (6), β-sitosterol (7) and β-sitosterol-3-O-glycoside (8). Their chemical structures were elucidated using spectr…

DPPHRadicalEthyl acetateAnthraquinonesPlant Science01 natural sciencesBiochemistryAnthraquinoneMedicinal chemistryAnalytical Chemistrychemistry.chemical_compoundRhamnus alaternusAnthraquinonesGlycosidesKaempferolschemistry.chemical_classificationbiologyMolecular Structure010405 organic chemistryPlant ExtractsOrganic ChemistryGlycosideFree Radical Scavengersbiology.organism_classification0104 chemical sciences010404 medicinal & biomolecular chemistryRhamnuschemistryvisual_artvisual_art.visual_art_mediumBark
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Traditionally used Thai medicinal plants: in vitro anti-inflammatory, anticancer and antioxidant activities.

2009

In order to assess traditional Thai claims about the therapeutic potential of medicinal plants and to select plants for future phytochemical research, nine plant species with anti-inflammatory uses were selected from Thai textbooks and assessed for their in vitro anti-inflammatory, antiproliferative and antioxidant activities.Nuclear factor-kappaB (NF-kappaB) inhibitory effects in stably transfected HeLa cells were determined by luciferase assay, and effects on LPS-induced pro-inflammatory mediators prostaglandin E2 (PGE2), interleukin (IL)-6, IL-1beta, and tumour necrosis factor (TNF)alpha in primary monocytes were assessed by ELISA. Cytotoxic activities were examined against HeLa cells, h…

DPPHmedicine.drug_classCell SurvivalInterleukin-1betaAnti-Inflammatory AgentsPharmacognosyAsteraceaeTransfectionAnti-inflammatoryAntioxidantsDinoprostoneMonocytesHeLachemistry.chemical_compoundInhibitory Concentration 50MagnoliopsidaPhenolsDrug DiscoveryMedicineHumansGynuraPharmacologyPlants MedicinalTraditional medicinebiologyDose-Response Relationship Drugbusiness.industryInterleukin-6Plant ExtractsTumor Necrosis Factor-alphaNF-kappa Bbiology.organism_classificationThailandOroxylum indicumAntineoplastic Agents PhytogenicPolygonaceaeRhinacanthus nasutusPhytochemicalchemistryDrug Resistance NeoplasmBignoniaceaeLipid PeroxidationMedicine TraditionalInflammation MediatorsbusinessHeLa CellsJournal of ethnopharmacology
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Cytotoxic drimane meroterpenoids from the Indonesian marine sponge Dactylospongia elegans

2017

Abstract Chemical investigation of the methanol extract of an Indonesian marine sponge Dactylospongia elegans (family Thorectidae) afforded two undescribed drimane meroterpenoidal metabolites, dactylospongenones G and H (1 and 2) together with thirteen known compounds (3–15) including pelorol, 5-epi-ilimaquinone, 5-epi-smenospongine, 5-epi-smenospongidine, nakijiquinone D, smenospongine C, isospongiaquinone, isosmenospongine, nakijiquinones A-C, G and 5-epi-nakijiquinone Q. The structures of the new metabolites were unambiguously determined by 1D and 2D NMR spectroscopy and by HRESIMS. All isolated compounds were assessed for their antimicrobial, antitubercular and cytotoxic activities. Sev…

Dactylospongia elegansbiology010405 organic chemistryStereochemistrySmenospongine CPlant Sciencebiology.organism_classificationAntimicrobial01 natural sciencesBiochemistry0104 chemical sciences010404 medicinal & biomolecular chemistrySpongeCytotoxic T cellCytotoxicityAgronomy and Crop ScienceTwo-dimensional nuclear magnetic resonance spectroscopyIsospongiaquinoneBiotechnologyPhytochemistry Letters
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Increasing the Coverage of Medicinal Chemistry-Relevant Space in Commercial Fragments Screening

2014

Analyzing the chemical space coverage in commercial fragment screening collections revealed the overlap between bioactive medicinal chemistry substructures and rule-of-three compliant fragments is only ∼25%. We recommend including these fragments in fragment screening libraries to maximize confidence in discovering hit matter within known bioactive chemical space, while incorporation of nonoverlapping substructures could offer novel hits in screening libraries. Using principal component analysis, polar and three-dimensional substructures display a higher-than-average enrichment of bioactive compounds, indicating increasing representation of these substructures may be beneficial in fragment …

Databases PharmaceuticalChemistry PharmaceuticalGeneral Chemical EngineeringDrug Evaluation PreclinicalCompound managementLibrary and Information Sciences01 natural sciencesMedicinal chemistryArticle03 medical and health sciencesDrug Discovery030304 developmental biologyPrincipal Component Analysis0303 health sciencesMolecular StructureDrug discoveryChemistryModels CardiovascularComputational BiologyGeneral ChemistryCombinatorial chemistryChemical space0104 chemical sciencesComputer Science Applications010404 medicinal & biomolecular chemistryDatabases ChemicalJournal of Chemical Information and Modeling
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A new ecdysteroid and other constituents from two Dioscorea species

2008

Phytochemical investigation of the rhizome of Dioscorea dumetorum has led to the isolation by several chromatographic steps on normal and reversed phase silica gel of a new ecdysteroid, (20R)-5β,11α,20-trihydroxyecdysone (1), and two known ecdysteroids, ajugasterone C (2) and herkesterone (3). Their structures were determined by spectroscopic methods including 1D- and 2D-NMR (COSY, TOCSY, HSQC and HMBC). This is the first report on the occurrence of phytoecdysteroids in the Dioscoreaceae family. These compounds were devoid of antifungal activity against three Candida species (Candida albicans, Candida glabrata and Candida tropicalis, MIC > 200 μg/ml).

Dioscoreaceae01 natural sciencesBiochemistryCandida tropicalischemistry.chemical_compoundDioscoreaceaeCandida albicansDioscorea schimperianaDioscorea dumetorumEcology Evolution Behavior and SystematicsEcdysteroidChromatographybiologyCandida glabrata010405 organic chemistryEcdysteroidsbiology.organism_classification0104 chemical sciences3. Good healthRhizome010404 medicinal & biomolecular chemistrychemistryPhytochemicalBiochemistry[SDV.SP.PHARMA]Life Sciences [q-bio]/Pharmaceutical sciences/PharmacologyDioscorea2D-NMR
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Polyoxygenated Cyclohexenes and Other Constituents of Cleistochlamys kirkii Leaves.

2016

Thirteen new metabolites, including the polyoxygenated cyclohexene derivatives cleistodiendiol (1), cleistodienol B (3), cleistenechlorohydrins A (4) and B (5), cleistenediols A-F (6-11), cleistenonal (12), and the butenolide cleistanolate (13), 2,5-dihydroxybenzyl benzoate (cleistophenolide, 14), and eight known compounds (2, 15-21) were isolated from a MeOH extract of the leaves of Cleistochlamys kirkii. The purified metabolites were identified by NMR spectroscopic and mass spectrometric analyses, whereas the absolute configurations of compounds 1, 17, and 19 were established by single-crystal X-ray diffraction. The configuration of the exocyclic double bond of compound 2 was revised base…

Double bondStereochemistryCyclohexenesPlasmodium falciparumCyclohexenePharmaceutical ScienceBreast Neoplasms01 natural sciencesAnalytical Chemistrychemistry.chemical_compoundAntimalarialsInhibitory Concentration 50X-Ray DiffractionDrug DiscoveryCyclohexenesHumansta116metabolitesCleistochlamys kirkiiButenolidePharmacologychemistry.chemical_classificationMolecular Structure010405 organic chemistryOrganic Chemistryspectrometric analysesMass spectrometricAntineoplastic Agents Phytogenic3. Good health0104 chemical sciencesPlant Leaves010404 medicinal & biomolecular chemistryCleistophenolideHEK293 CellsComplementary and alternative medicinechemistryMolecular MedicineJournal of natural products
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Phytochemical profile and insecticidal activity of Drimia pancration (Asparagaceae) against adults of Stegobium paniceum (Anobiidae)

2020

Chemical and spectroscopic investigation of the bulbs of Drimia pancration resulted in the isolation of one known flavonol (1), never isolated from this plant species, and of three previously described steroidal saponins (2–4), but whose configuration at their stereogenic centres was not clearly determined. By mean of 1H NMR, 13C NMR, nuclear overhauser effects (NOE) and two-dimensional NMR spectra the full stereochemical structures of compounds 2–4 were proved and all the 1H and 13C signals were assigned. Furthermore, the methanol and butanol extracts of D. pancration were tested against adults of Stegobium paniceum beetles. Despite the non-significant results regarding the repellent activ…

Drimiasteroidal saponinsflavonolStegobium paniceumbiologyTraditional medicine010405 organic chemistryOrganic ChemistryinsecticideSettore CHIM/06 - Chimica OrganicaPlant Sciencebiology.organism_classification01 natural sciencesBiochemistry0104 chemical sciencesAnalytical Chemistry010404 medicinal & biomolecular chemistryAsparagaceaeAnobiidaePhytochemicalDrimia pancrationPlant speciesSettore BIO/15 - Biologia Farmaceutica
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Chemical composition and antimicrobial activity of the essential oils of some species of Anthemis sect. Anthemis (Asteraceae) from Sicily

2017

The chemical composition of the essential oils isolated from the aerial parts of Anthemis arvensis L. subsp. arvensis, Anthemis cretica subsp. messanensis (Brullo) Giardina &amp; Raimondo and from flowers and leaves of Anthemis cretica subsp. columnae (Ten.) Frezén were determinated by GC–FID and GC–MS analyses. Torreyol (85.4%) was recognised as the main constituent of the Anthemis arvensis subsp. arvensis essential oil, while in the essential oils of Anthemis cretica subsp. messanensis, collected on the rock and cultivated in Hortus Botanicus Panormitanus, (E)-chrysanthenyl acetate (28.8 and 24.2% resp.), 14-hydroxy-α-humulene (8.1 and 5.3% resp.), santolina triene (8 and 5.8% resp.) and …

Drug Evaluation PreclinicalRaimondoAnthemis arvensisFlowersMicrobial Sensitivity TestsPlant Science01 natural sciencesBiochemistryGas Chromatography-Mass Spectrometryessential oillaw.inventionAnalytical Chemistrychemistry.chemical_compoundBridged Bicyclo CompoundsAnti-Infective Agentsantibacterial activitylawSantolinaBotanyOils VolatileAnthemisSettore BIO/15 - Biologia FarmaceuticaChemical compositionSicilyAnthemis arvensis L. subsp. arvensiEssential oiltorreyolBicyclic MonoterpenesPolycyclic Sesquiterpenesalpha-PineneEucalyptolbiology010405 organic chemistryOrganic ChemistryAnthemis cretica subsp. columnae (Ten.) FrezénAsteraceaebiology.organism_classificationCyclohexanols0104 chemical sciencesPlant Leaves010404 medicinal & biomolecular chemistryEucalyptolchemistryMonoterpenesAnthemis cretica subsp. messanensis (Brullo) Giardina &ampAnthemisSesquiterpenes
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