Search results for "Molecular Medicine"

showing 10 items of 3013 documents

Experimental FTIR-MI and Theoretical Studies of Isocyanic Acid Aggregates

2023

Homoaggregates of isocyanic acid (HNCO) were studied using FTIR spectroscopy combined with a low-temperature matrix isolation technique and quantum chemical calculations. Computationally, the structures of the HNCO dimers and trimers were optimized at the MP2, B3LYPD3 and B2PLYPD3 levels of theory employing the 6-311++G(3df,3pd) basis set. Topological analysis of the electron density (AIM) was used to identify the type of non-covalent interactions in the studied aggregates. Five stable minima were located on the potential energy surface for (HNCO)2, and nine were located on the potential energy surface for (HNCO)3. The most stable dimer (D1) involves a weak, almost linear N-H⋯N hydrog…

hydrogen bondatmospheric chemistryvetysidoksetOrganic ChemistryspektroskopiaPharmaceutical ScienceHNCOintermolecular interactionlaskennallinen kemiasolid argoncomputational chemistrymatrix isolation (MI)vibrational spectroscopyAnalytical Chemistryilmakemiamolecular complexChemistry (miscellaneous)Drug DiscoveryMolecular MedicinePhysical and Theoretical ChemistryFourier transform infrared (FTIR)Molecules
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An Updated Review on the Synthesis and Antibacterial Activity of Molecular Hybrids and Conjugates Bearing Imidazole Moiety

2020

The rapid growth of serious infections caused by antibiotic resistant bacteria, especially the nosocomial ESKAPE pathogens, has been acknowledged by Governments and scientists and is one of the world’s major health problems. Various strategies have been and are currently investigated and developed to reduce and/or delay the bacterial resistance. One of these strategies regards the design and development of antimicrobial hybrids and conjugates. This unprecedented critical review, in which our continuing interest in the synthesis and evaluation of the bioactivity of imidazole derivatives is testified, aims to summarise and comment on the results obtained from the end of the 1900s until Februa…

imidazoles molecular hybrids molecular conjugates antibacterials antibiotic resistance synthesis bioactivity antibioticsantibiotic resistancesynthesismedicine.drug_classAntibioticsPharmaceutical ScienceReviewMicrobial Sensitivity Tests010402 general chemistry01 natural sciencesantibioticsAnalytical Chemistrylcsh:QD241-441chemistry.chemical_compoundAntibiotic resistancelcsh:Organic chemistryDrug DiscoveryDrug Resistance BacterialmedicineImidazoleMoietyPhysical and Theoretical Chemistryantibacterialsmolecular conjugatesBacteria010405 organic chemistrymolecular hybridsOrganic ChemistryImidazolesSettore CHIM/06 - Chimica OrganicaBacterial InfectionsAntimicrobialCombinatorial chemistrySettore CHIM/08 - Chimica Farmaceutica0104 chemical sciencesAnti-Bacterial AgentschemistryChemistry (miscellaneous)bioactivityMolecular MedicineAntibacterial activityLinkerConjugateMolecules
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Iron Oxide/Hydroxide Nanoparticles with Negatively Charged Shells Show Increased Uptake in Caco-2 Cells

2012

The absorption of commonly used ferrous iron salts from intestinal segments at neutral to slightly alkaline pH is low, mainly because soluble ferrous iron is easily oxidized to poorly soluble ferric iron and because ferrous iron, but not ferric iron, is carried by the divalent metal transporter DMT-1. Moreover, ferrous iron frequently causes gastrointestinal side effects. Iron hydroxide nanoparticles with neutral and hydrophilic carbohydrate shells are alternatively used to ferrous salts. In these formulations gastrointestinal side effects are rare because hundreds of ferric iron atoms are safely packed in nanoscaled cores surrounded by the solubilizing shell; nevertheless, iron bioavailabi…

inorganic chemicalsInorganic chemistryIron oxidePharmaceutical ScienceIron deficiencymedicine.diseaseFerric CompoundsChlorideFerrouschemistry.chemical_compoundChloridesMicroscopy Electron TransmissionchemistryDrug DiscoverymedicineHumansNanoparticlesMolecular MedicineFerricHydroxideCaco-2 CellsSulfateIron oxide nanoparticlesmedicine.drugMolecular Pharmaceutics
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One pot light assisted green synthesis, storage and antimicrobial activity of dextran stabilized silver nanoparticles.

2014

Background Green synthesis of nanomaterials finds the edge over chemical methods due to its environmental compatibility. Herein, we report green synthesis of silver nanoparticles (Ag NPs) mediated with dextran. Dextran was used as a stabilizer and capping agent to synthesize Ag NPs using silver nitrate (AgNO3) under diffused sunlight conditions. Results UV–vis spectra of as synthesized Ag nanoparticles showed characteristic surface plasmon band in the range from ~405-452 nm. Scanning electron microscopy (SEM) and atomic force microscopy (AFM) studies showed spherical Ag NPs in the size regime of ~50-70 nm. Face centered cubic lattice of Ag NPs was confirmed by powder X-ray diffraction (PXRD…

inorganic chemicalsMaterials scienceSilverReducing agentScanning electron microscopeeducationBiomedical EngineeringDrug Evaluation PreclinicalMedicine (miscellaneous)Pharmaceutical ScienceMetal NanoparticlesNanotechnologyBioengineeringMicrobial Sensitivity TestsAntimicrobial activityMicroscopy Atomic ForceApplied Microbiology and BiotechnologySilver nanoparticleNanomaterialsStorage of nanoparticleschemistry.chemical_compoundAnti-Infective AgentsX-Ray DiffractionDiffused sun lightSpectroscopy Fourier Transform InfraredThin filmhealth care economics and organizationsAg nanoparticlesResearchtechnology industry and agricultureDextransGreen Chemistry TechnologySilver nitrateDextranchemistryMicroscopy Electron ScanningMolecular MedicineSilver NitrateSpectrophotometry UltravioletPowder diffractionNuclear chemistryJournal of nanobiotechnology
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Dissociation-constants of metat-ion-complexes with alkaline phosphatase from pig kidney.

1976

Using metal-ion buffers it was possible to remove Zn2+, Mg2+ and Mn2+ ions of pig kidney alkaline phosphatase reversibly. The dissociation constants obtained are KEMg: 4 X 10(-7) M, KEMn: 4 X 10(-8) M and KEZn: 8 X 10(-13) M (22 degrees C, pH: 9.6, mu: 0.07).

inorganic chemicalsPharmacologyManganeseChemistryCations DivalentSwinePig kidneyIronInorganic chemistryCell BiologyAlkaline PhosphataseKidneyIonDissociation constantCellular and Molecular NeuroscienceKineticsZincMolecular MedicineAlkaline phosphataseAnimalsCalciumMagnesiumMolecular BiologyExperientia
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Adenine nucleotide metabolism during anoxia and postanoxic recovery in insects

1996

Severe hypoxia (anoxia), if maintained for more than a few minutes, causes irreversible damage in humans and other mammals. Why mammals are so vulnerable to anoxia is not fully understood. It is therefore of interest to study animals that are more tolerant of anoxia in order to identify physiological and metabolic properties that are correlated with a high tolerance of anoxia. Insects have high metabolic rates and their energy metabolism is dependent on aerobic ATP production. In insects, as in mammals, anoxia causes a rapid breakdown of physiological function, resulting in a state similar to rigor mortis. This is accompanied by a precipitous decrease in metabolic rate. In contrast to mamma…

inorganic chemicalsPharmacologyPhysiological functionbiologyfungiCell BiologySevere hypoxiaMetabolismmusculoskeletal systembiology.organism_classificationenvironment and public healthcarbohydrates (lipids)Cellular and Molecular NeuroscienceBiochemistryAdenine nucleotidemedicineMolecular MedicineAtp productionRigor mortisInosineMolecular BiologyLocustmedicine.drugExperientia
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Receptor-mediated uptake of boron-rich neuropeptide y analogues for boron neutron capture therapy.

2014

Peptidic ligands selectively targeting distinct G protein-coupled receptors that are highly expressed in tumor tissue represent a promising approach in drug delivery. Receptor-preferring analogues of neuropeptide Y (NPY) bind and activate the human Y1 receptor subtype (hY1 receptor), which is found in 90% of breast cancer tissue and in all breast-cancer-derived metastases. Herein, novel highly boron-loaded Y1 -receptor-preferring peptide analogues are described as smart shuttle systems for carbaboranes as (10) B-containing moieties. Various positions in the peptide were screened for their susceptibility to carbaborane modification, and the most promising positions were chosen to create a mu…

inorganic chemicalsStereochemistrymedia_common.quotation_subjectMolecular Sequence Datachemistry.chemical_elementPeptideBoron Neutron Capture TherapyBreast NeoplasmsBiochemistrySolid-phase synthesisDrug DiscoveryChlorocebus aethiopsAnimalsHumansNeuropeptide YAmino Acid SequenceGeneral Pharmacology Toxicology and PharmaceuticsReceptorInternalizationBoronBoranesmedia_commonPharmacologychemistry.chemical_classificationChemistryOrganic ChemistryReceptor-mediated endocytosisNeuropeptide Y receptorReceptors Neuropeptide YHEK293 CellsDrug deliveryCOS CellsMolecular MedicineFemaleChemMedChem
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In Vitro and In Vivo Regulation of SRD5A mRNA Expression of Supercritical Carbon Dioxide Extract from Asparagus racemosus Willd. Root as Anti-Sebum a…

2022

Oily skin from overactive sebaceous glands affects self-confidence and personality. There is report of an association between steroid 5-alpha reductase gene (SRD5A) expression and facial sebum production. There is no study of the effect of Asparagus racemosus Willd. root extract on the regulation of SRD5A mRNA expression and anti-sebum efficacy. This study extracted A. racemosus using the supercritical carbon dioxide fluid technique with ethanol and investigated its biological compounds and activities. The A. racemosus root extract had a high content of polyphenolic compounds, including quercetin, naringenin, and p-coumaric acid, and DPPH scavenging activity comparable to that of the standa…

integumentary systemChemistry (miscellaneous)Organic ChemistryDrug DiscoveryMolecular MedicinePharmaceutical SciencePellPhysical and Theoretical Chemistryanti-sebum efficacy; <i>Asparagus racemosus</i>; facial-pore-minimizing efficacy; facial sebum production; 5-alpha reductase enzymes; human volunteer; oily skin; polyphenols; <i>SRD5A</i>; supercritical carbon dioxide fluid extractionPlantes medicinalsAndrògensAnalytical ChemistryMolecules
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Spaghetti Enriched with Inulin: Effect of Polymerization Degree on Quality Traits and α-Amylase Inhibition.

2022

Inulin is considered a dietary fiber and represents a noteworthy ingredient for food biofortification due to its health effects and its neutral taste. The aim of the work was the evaluation of the quality of pasta produced using whole-meal flours of two ancient Sicilian landraces (Senatore Cappelli-CAP and Timilia&mdash;TIM) fortified with two types of inulin (long-chain topinambur inulin IT and low-chain chicory inulin IC), at two different levels of substitution (2 and 4%) to evaluate its possible effect on &alpha;-amylase inhibition. The color indices L* and a* were mainly influenced by cultivars, while IT improved the sensory attributes, mainly the elasticity sensation, and influenced l…

inulin; durum wheat; Sicilian landraces; spaghetti; quality; aminoacids; glycemic index; α amylase? amylaseSettore CHIM/10 - Chimica Degli AlimentiSicilian landracesOrganic ChemistryFlourInulinPharmaceutical Sciencedurum wheataminoacidsAnalytical ChemistryPolymerizationα amylaseChemistry (miscellaneous)qualityDrug DiscoveryMolecular Medicineglycemic indexCookingPhysical and Theoretical ChemistrySicilian landracealpha-AmylasesaminoacidspaghettiTriticumMolecules (Basel, Switzerland)
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Development of DNA aptamers for visualization of glial brain tumors and detection of circulating tumor cells

2023

Here, we present DNA aptamers capable of specific binding to glial tumor cells in vitro, ex vivo, and in vivo for visualization diagnostics of central nervous system tumors. We selected the aptamers binding specifically to the postoperative human glial primary tumors and not to the healthy brain cells and meningioma, using a modified process of systematic evolution of ligands by exponential enrichment to cells; sequenced and analyzed ssDNA pools using bioinformatic tools and identified the best aptamers by their binding abilities; determined three-dimensional structures of lead aptamers (Gli-55 and Gli-233) with small-angle X-ray scattering and molecular modeling; isolated and identified mo…

kasvaimetsyöpäsolutvisualisointiDrug DiscoveryMolecular MedicineOriginal ArticlemerkkiaineetDNAMolecular Therapy - Nucleic Acids
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