Search results for " molecule"

showing 10 items of 1523 documents

Differential effects of anti-TNF-α and anti-IL-12/23 agents on human leukocyte–endothelial cell interactions

2015

AbstractEnhanced leukocyte recruitment is an inflammatory process that occurs during early phases of the vascular dysfunction that characterises atherosclerosis. We evaluated the impact of anti-TNF-α (adalimumab, infliximab and etanercept) and anti-IL-12/23 (ustekinumab) on interactions between human leukocytes and endothelial cells in a flow chamber that reproduced in vivo conditions. Clinical concentrations of anti-TNF-α were evaluated on the leukocyte recruitment induced by a variety of endothelial (TNF-α, interleukin-1β, lymphotoxin-α and angiotensin-II) and leukocyte (PAF, IL-12 and IL-23) stimuli related to inflammation and atherosclerosis. Treatment with anti-TNF-α, even before or af…

EndotheliumInflammationAnti-IL-12/23 agentsCardiovascular side effectsBiologicsInterleukin-23Rheumatic diseasesIn vivoPsoriasisHuman Umbilical Vein Endothelial CellsInterleukin 23HumansMedicineAnti-TNF-α agentsPharmacologyTumor Necrosis Factor-alphabusiness.industryCell adhesion moleculeAdalimumabEndothelial Cellsmedicine.diseaseInterleukin-12Leukocyte–endothelial cell interactionsEndothelial stem cellmedicine.anatomical_structureImmunologyLeukocytes MononuclearTumor necrosis factor alphamedicine.symptombusinessEuropean Journal of Pharmacology
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E-selectin modulates the malignant properties of T84 colon carcinoma cells.

2002

The extravasation of metastatic cells is regulated by molecular events involving the initial adhesion of tumor cells to the endothelium and subsequently the migration of cells in the host connective tissue. E-selectin on endothelial cells and sialyl Lewis X carbohydrate component on tumor cells are mainly involved in the adhesion of colon carcinoma cells to the endothelium of target organ. Interaction of T84 colon cancer cells to purified E-selectin in vitro caused an increase in the tyrosine phosphorylation of a number of proteins as well as the modulation of cellular properties correlated to the metastatic phenotype. Specifically, E-selectin-stimulated actin reorganization, increased coll…

EndotheliumLactams MacrocyclicBiophysicsOligosaccharidesBiologyBiochemistryCell–cell interactionCancer stem cellCell MovementE-selectinmedicineBenzoquinonesCell AdhesionTumor Cells CulturedHumansEnzyme InhibitorsNeoplasm MetastasisPhosphorylationCell adhesionPhosphotyrosineSialyl Lewis X AntigenMolecular BiologyCells CulturedCarcinomaSoluble cell adhesion moleculesQuinonesCell migrationCell BiologyProtein-Tyrosine KinasesPhosphoproteinsCoculture TechniquesCell biologymedicine.anatomical_structureRifabutinCancer cellColonic NeoplasmsCancer researchbiology.proteinMatrix Metalloproteinase 2Endothelium VascularE-SelectinBiochemical and biophysical research communications
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Lymphatic endothelial progenitors bud from the cardinal vein and intersomitic vessels in mammalian embryos.

2012

Abstract The lymphatic vasculature preserves tissue fluid balance by absorbing fluid and macromolecules and transporting them to the blood vessels for circulation. The stepwise process leading to the formation of the mammalian lymphatic vasculature starts by the expression of the gene Prox1 in a subpopulation of blood endothelial cells (BECs) on the cardinal vein (CV) at approximately E9.5. These Prox1-expressing lymphatic endothelial cells (LECs) will exit the CV to form lymph sacs, primitive structures from which the entire lymphatic network is derived. Until now, no conclusive information was available regarding the cellular processes by which these LEC progenitors exit the CV without co…

EndotheliumMesenchymegovernment.form_of_governmentRecombinant Fusion ProteinsImmunologyEmbryonic DevelopmentMice TransgenicBiologyBiochemistryMiceMicroscopy Electron TransmissionCell MovementVascular BiologymedicineAnimalsLymph sacsProgenitor cellEmbryonic Stem CellsHomeodomain ProteinsMice KnockoutBuddingMembrane GlycoproteinsCommon cardinal veinsTumor Suppressor ProteinsfungiCell BiologyHematologyAnatomyAdherens JunctionsCadherinsEmbryo MammalianCoronary VesselsCell biologyPlatelet Endothelial Cell Adhesion Molecule-1Lymphatic Endotheliummedicine.anatomical_structureLymphatic systemgovernmentsense organsEndothelium LymphaticBlood
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Antibodies to proteinase 3 increase adhesion of neutrophils to human endothelial cells

1993

SUMMARY The detection of anti-neutrophil cytoplasmic antibodies (ANCA), especially those with specificity for proteinase 3, is important in the diagnosis and in monitoring disease activity of Wegener's granulomatosis and related vasculitides. An ubiquitous feature of all ANCA-associated acute vascular injury is lytic necrosis. Adhesion of neutrophils to endothelium is a fundamental early step of the inflammatory response. Recently we were able to show that ANCA recognize their target antigen (proteinase 3) translocated into the membrane of human endothelial cells. The aim of this study was to investigate the effect of ANCA on the adhesion of neutrophils to human endothelial cells. Incubatio…

EndotheliumNeutrophilsMyeloblastinImmunologyFluorescent Antibody TechniqueEnzyme-Linked Immunosorbent AssayAntibodies Antineutrophil CytoplasmicAutoimmune DiseasesFlow cytometryProteinase 3E-selectinCell AdhesionmedicineHumansImmunology and AllergyCell adhesionCells CulturedAutoantibodiesMixed Connective Tissue Diseasebiologymedicine.diagnostic_testSerine EndopeptidasesGranulomatosis with PolyangiitisAdhesionFlow CytometryEndothelial stem cellmedicine.anatomical_structureImmunoglobulin GImmunologybiology.proteinEndothelium VascularAntibodyE-SelectinCell Adhesion MoleculesResearch ArticleClinical and Experimental Immunology
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Endothelial adhesion molecules in essential hypertension: response to arginine infusion

2001

EndotheliumbiologyArginineCell adhesion moleculebusiness.industryIntercellular Adhesion Molecule-1Soluble cell adhesion moleculesPharmacologymedicine.diseaseEssential hypertensionmedicine.anatomical_structureE-selectinInternal Medicinemedicinebiology.proteinEndothelial dysfunctionbusinessAmerican Journal of Hypertension
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Synthesis, molecular structure and stability of fused bicyclic Δ4-1,2,4-oxadiazoline Pt(II) complexes

2015

Abstract The reaction of trans -[PtCl 2 (NCR) 2 ] (R 1  = CH 2 CO 2 Me ( 1a ), R 2  = CH 2 Cl ( 1b )) with pyrroline N -oxide − O + N CHCH 2 CH 2 C Me 2 ( 4 ), at room temperature for 15 min, furnishes via [3+2] cycloaddition the fused bicyclic Δ 4 -1,2,4-oxadiazoline Pt(II) complexes trans- [PtCl 2 { N C(R)O N C(H)CH 2 CH 2 C Me 2 } 2 ] (R 1  = CH 2 CO 2 Me ( 5a ), R 2  = CH 2 Cl ( 5b )). Compounds 5a and 5b were refluxed in CH 2 Cl 2 for 1 week to afford the derived ketoimine Pt(II) complexes trans- [PtCl 2 {N(C( O)(R)) C CH 2 CH 2 C(Me 2 ) N H} 2 ] (R 1  = CH 2 CO 2 Me ( 6a ), R 2  = CH 2 Cl ( 6b )), respectively, as a result of the N–O bond cleavage of the oxadiazoline ring in 5 . The c…

Exergonic reactionBicyclic moleculeStereochemistryRegioselectivityPyrrolineCarbon-13 NMRMedicinal chemistryCycloadditionInorganic Chemistrychemistry.chemical_compoundchemistryMaterials ChemistryMoleculePhysical and Theoretical ChemistryBond cleavagePolyhedron
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Stick around: Cell-Cell Adhesion Molecules during Neocortical Development

2020

The neocortex is an exquisitely organized structure achieved through complex cellular processes from the generation of neural cells to their integration into cortical circuits after complex migration processes. During this long journey, neural cells need to stablish and release adhesive interactions through cell surface receptors known as cell adhesion molecules (CAMs). Several types of CAMs have been described regulating different aspects of neurodevelopment. Whereas some of them mediate interactions with the extracellular matrix, others allow contacts with additional cells. In this review, we will focus on the role of two important families of cell-cell adhesion molecules (C-CAMs), classi…

Extracellular matrixCorticogenesisNeocortexmedicine.anatomical_structureChemistryCadherinNectinCell adhesion moleculeCell surface receptorSynaptogenesismedicineanatomy_morphologyNeuroscience
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Small-time bilinear control of Schrödinger equations with application to rotating linear molecules

2023

In [14] Duca and Nersesyan proved a small-time controllability property of nonlinear Schrödinger equations on a d-dimensional torus $\mathbb{T}^d$. In this paper we study a similar property, in the linear setting, starting from a closed Riemannian manifold. We then focus on the 2-dimensional sphere $S^2$, which models the bilinear control of a rotating linear top: as a corollary, we obtain the approximate controllability in arbitrarily small times among particular eigenfunctions of the Laplacian of $S^2$.

FOS: Physical sciencesSchrödinger equation[MATH.MATH-OC] Mathematics [math]/Optimization and Control [math.OC]Mathematical Physics (math-ph)infinite-dimensional systemsOptimization and Control (math.OC)Control and Systems Engineeringbilinear systemsFOS: Mathematicslinear molecule[MATH.MATH-AP] Mathematics [math]/Analysis of PDEs [math.AP][MATH.MATH-MP] Mathematics [math]/Mathematical Physics [math-ph]Electrical and Electronic EngineeringQuantum Physics (quant-ph)small-time controllability[PHYS.QPHY] Physics [physics]/Quantum Physics [quant-ph]Analysis of PDEs (math.AP)Automatica
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Molecular equilibrium structures from experimental rotational constants and calculated vibration–rotation interaction constants

2002

A detailed study is carried out of the accuracy of molecular equilibrium geometries obtained from least-squares fits involving experimental rotational constants B(0) and sums of ab initio vibration-rotation interaction constants alpha(r)(B). The vibration-rotation interaction constants have been calculated for 18 single-configuration dominated molecules containing hydrogen and first-row atoms at various standard levels of ab initio theory. Comparisons with the experimental data and tests for the internal consistency of the calculations show that the equilibrium structures generated using Hartree-Fock vibration-rotation interaction constants have an accuracy similar to that obtained by a dir…

FREQUENCIESChemistryGAUSSIAN-BASIS SETSAb initioGeneral Physics and AstronomyDiatomic moleculeSTATEBORONBond lengthVibrationHOFMETHANEMolecular geometryCCSD(T) 2ND DERIVATIVESAb initio quantum chemistry methodsACIDWAVE-FUNCTIONSPhysics::Atomic and Molecular ClustersMoleculeQUARTIC FORCE-FIELDPhysics::Chemical PhysicsPhysical and Theoretical ChemistryAtomic physicsRotation (mathematics)The Journal of Chemical Physics
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Inhibition of FTSJ1, a tryptophan tRNA-specific 2’-O-methyltransferase as possible mechanism to readthrough premature termination codons (UGAs) of th…

2022

Cystic Fibrosis (CF) is an autosomal recessive genetic disease caused by mutations in the CFTR gene, coding for the CFTR chloride channel. About 10 % of the mutations affecting the CFTR gene are "stop" mutations, which generate a Premature Termination Codon (PTC), thus resulting in the synthesis of a truncated CFTR protein. A way to bypass PTC relies on ribosome readthrough, that is the capacity of the ribosome to skip a PTC, thus generating a full-length protein. “TRIDs” are molecules exerting ribosome readthrough and for some of them the mechanism of action is still under debate. By in silico analysis as well as in vitro studies, we investigate a possible mechanism of action (MOA) by whic…

FTSJ1 readthrough stop codon mutation small molecules
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