Search results for " molecule"

showing 10 items of 1523 documents

Effects of Parietaria judaica pollen extract on human microvascular endothelial cells

2008

Abstract Pollinosis from Parietaria judaica is one of the main causes of allergy in the Mediterranean area. The present study is designed to assess if P. judaica pollens contain bioactive compounds able to elicit a functional response in endothelial cells. We have demonstrated that addition of pollen extract to human lung microvascular endothelial cells (HMVEC-L) induces a modification of cell morphology, actin cytoskeletal rearrangements and an increase in endothelial cell permeability. We further showed that the treatment of endothelial cells with pollen extract causes an increase of E-selectin and VCAM-1 protein levels as well as an increase of IL-8 production. The stimulation of cell–ce…

AllergyNeutrophilsBiophysicsVascular Cell Adhesion Molecule-1parietaria judaicaBiologymedicine.disease_causeCell morphologyBiochemistryPermeabilitycell adhesion moleculesPollenCell AdhesionmedicineHumansProtease InhibitorsCytoskeletonLungMolecular BiologyCells CulturedActinPlant ExtractsCell adhesion moleculeInterleukin-8Cell BiologyAdhesionbiology.organism_classificationCapillariesCell biologyEndothelial stem cellParietariaImmunologyParietaria judaicaendothelial cellPollenEndothelium VascularE-Selectin
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Recent advances in the synthesis of functionalised monofluorinated compounds.

2018

Over the past few years, we have tackled the synthesis of interesting monofluorinated organic molecules, such as: dihydronaphthalene derivatives, β-fluoro sulfones and related carbonyl compounds, fluorohydrins and allylic alcohols. Overall, a wide range of modern synthetic techniques are covered in this feature article including transition-metal, photo- and organocatalysis, nucleophilic and electrophilic fluorinations, chiral auxiliaries and enantioselective catalysis.

Allylic rearrangement010405 organic chemistryChemistryMetals and AlloysEnantioselective synthesisGeneral Chemistry010402 general chemistry01 natural sciencesCombinatorial chemistryCatalysis0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsOrganic moleculesCatalysisNucleophileOrganocatalysisElectrophileMaterials ChemistryCeramics and CompositesChemical communications (Cambridge, England)
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Synthesis of fluorinated drimanes. Preparation of 9αF-drimenin

2003

Abstract A stereoselective approach to the 9α-fluorinated analogue of the natural drimane sesquiterpene drimenin starting from β-ionone is described. β-Ionone is transformed into a bicyclic β-cetoester from which 9αF-drimenin is prepared through stereoselective electrophilic fluorination at the C-9 with N -fluorobenzenesulfonimide followed by Wittig methylenation, allylic bromination, bromine-hydroxyl exchange and γ-lactonization.

Allylic rearrangementBicyclic moleculeStereochemistryOrganic ChemistryElectrophilic fluorinationHalogenationSesquiterpeneBiochemistrychemistry.chemical_compoundchemistryDrug DiscoveryWittig reactionOrganic chemistryStereoselectivityTetrahedron Letters
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Ep-CAM (MOC-31) expression in tooth germ and ameloblastoma

2021

Ep-CAM, a transmembrane glycoprotein expressed in most epithelium in normal conditions, has diverse roles in these tissues, including in cell adhesion, proliferation, differentiation, cell cycle regulation, migration and intracellular signaling. It is also over-expressed in most malignant neoplasia, participating in the initiation, progression, and metastatic dissemination of the tumor. The expression and roles of this protein in oral neoplasia, particularly in odontogenic tumors, remain unestablished. The objective of this study consisted in analyzing the expression of this protein in ameloblastoma and tooth germ.Ep-CAM (MOC-31) expression was evaluated by immunohistochemistry in tooth ger…

AmeloblastomaOtorhinolaryngologyCarcinomaHumansTooth GermOdontogenic TumorsSurgeryEpithelial Cell Adhesion Moleculetooth germ ameloblastoma Ep-CAM MOC-31 immunohistochemistryGeneral DentistryUNESCO:CIENCIAS MÉDICAS
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Microspectroscopy on single domains of phase-separated monolayers

1989

SUMMARY A versatile and inexpensive, but fully equipped apparatus is presented, which enables detailed optical studies on amphiphilic molecules at the liquid-gas interface. Structural and spectroscopic information, particularly in small areas of single domains of phase-separated monolayers, can be achieved by combination of this miniaturized Langmuir trough and spectralphotometer microscope. The potential of this apparatus is demonstrated with some measurements on a diyne-substituted polymerizable lipid analogue at the air-water interface.

Amphiphilic moleculeHistologyMicroscopelawChemistryPhase (matter)Langmuir troughMonolayerNanotechnologyPathology and Forensic Medicinelaw.inventionJournal of Microscopy
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Immobilization of functionalized lipids in a random poly(methacrylate) copolymer monolayer

1995

It is shown that a monolayer of random poly(methacrylate) copolymer with a hydrophobic and a hydrophilic substituent exhibits a transition from the fluid to amorphous state. Above this transition any amphiphilic molecules mixed with the monolayer are immobile. Furthermore, such functionalized lipids are immobilized in the monolayer during the Langmuir-Blodgett transfer. The hydrophilic head-groups of the biotin-lipids remain on the formerly water-adjacent side of the monolayer, even if this side is exposed to air

Amphiphilic moleculeMaterials scienceMethacrylate copolymerMechanical EngineeringSubstituentMethacrylatePoly methacrylateAmorphous solidchemistry.chemical_compoundchemistryMechanics of MaterialsPolymer chemistryMonolayerCopolymerlipids (amino acids peptides and proteins)General Materials ScienceAdvanced Materials
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How self-assembly of amphiphilic molecules can generate complexity in the nanoscale

2015

Abstract Given the importance of nanomaterials and nanostructures in modern technology, in the past decades much effort has been directed to set up efficient bottom up protocols for the piloted self-assembly of molecules. However, molecules are generally disinclined to adopt the desired structural organization because they behave according to their own specific intermolecular interactions. Thus, only some selected classes of chemical compounds are capable to lead to useful self-assembled structures. Amphiphiles, simultaneously possessing polar and apolar moieties within their molecular architecture, can give a wide scenario of possible intermolecular interactions: polar–polar, polar–apolar,…

Amphiphilic moleculeNanostructureStructural organizationChemistryNanomachinesNanotechnologyTop-down and bottom-up designLiving cellComplexitySelf-assemblyNanodevicesNanomachinesSelf-assemblyComplexityNanotechnologyColloid and Surface ChemistryNanotechnologySelf-assemblyNanodevices
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Optical Studies of Amphiphilic Molecules with Interesting Electro-Optical and Non-Linear Optical Properties

1990

Structural control is a major issue in both life science, investigating the function of the biological machinery, and in materials science, aiming at the design of novel devices. In part one, recent electro-optical investigations of the primary event of photosynthesis on purified protein preparations are described. Part two focuses on structural studies of monolayers at an air/water interface, and of Langmuir-Blodgett multilayers from a new molecule designed for nonlinear optical applications.

Amphiphilic moleculeNonlinear systemNonlinear opticalMaterials scienceMonolayerMoleculeNanotechnologyPrimary event
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Mixed Valence Materials: Prussian Blue Analogues of Reduced Dimensionality (Small 16/2012)

2012

Amphiphilic moleculePrussian blueSpin glassMaterials scienceValence (chemistry)Inorganic chemistryGeneral ChemistryBiomaterialschemistry.chemical_compoundchemistryPhysical chemistryGeneral Materials ScienceBiotechnologyCurse of dimensionalitySmall
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Monolayers of Amphiphilic Molecules

1992

There are good reasons why the organizers have placed this lecture at the beginning of a conference on the multip1e aspects of membranes. In many respects the monolayer may be considered half of a membrane and it obviously is the most simple and best-defined model system. Yet we will show that the system is more complex than many have anticipated. On the other hand, there are many general features which can be discussed without looking into chemical details.

Amphiphilic moleculechemistry.chemical_compoundMembraneMaterials sciencechemistryMonolayerModel systemNanotechnologyBehenic acid
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