Search results for "differentiation"

showing 10 items of 1605 documents

Mumijo traditional medicine: fossil deposits from Antarctica (chemical composition and beneficial bioactivity)

2008

Mumijo is a widely used traditional medicine, especially in Russia, Altai Mountains, Mongolia, Iran Kasachstan and in Kirgistan. Mumijo preparations have been successfully used for the prevention and treatment of infectious diseases; they display immune-stimulating and antiallergic activity as well. In the present study, we investigate the chemical composition and the biomedical potential of a Mumijo(-related) product collected from the Antarctica. The yellow material originates from the snow petrels,Pagodroma nivea. Extensive purification and chemical analysis revealed that the fossil samples are a mixture of glycerol derivatives.In vitroexperiments showed that the Mumijo extract caused in…

Peptide fragmentSUBSTANCESBiologyWAX ESTERSchemistry.chemical_compoundSTOMACH OIL DEPOSITSGLYCERYL ETHERSGlycerolGlycerol EthersPETRELSChemical compositionSUSTAINABLE EXPLOITATIONWaxTraditional medicineCortical neuronslcsh:Other systems of medicineIN-VITROlcsh:RZ201-999DIFFERENTIATIONComplementary and alternative medicinechemistryvisual_artCELLSvisual_art.visual_art_mediumOriginal ArticleGlycerol DerivativesALKOXYGLYCEROLS
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Inflammation in the Human Periodontium Induces Downregulation of the α1- and β1-Subunits of the sGC in Cementoclasts

2021

Nitric oxide (NO) binds to soluble guanylyl cyclase (sGC), activates it in a reduced oxidized heme iron state, and generates cyclic Guanosine Monophosphate (cGMP), which results in vasodilatation and inhibition of osteoclast activity. In inflammation, sGC is oxidized and becomes insensitive to NO. NO- and heme-independent activation of sGC requires protein expression of the &alpha

Periodontium0301 basic medicinealveolar bonecementoclastslcsh:Chemistrychemistry.chemical_compound0302 clinical medicineCathepsin Kheterocyclic compoundsperiodontitisCyclic GMPlcsh:QH301-705.5SpectroscopyGeneral MedicineComputer Science ApplicationsResorptionCell biologymedicine.anatomical_structurecardiovascular systemOxidation-Reductioncementuminorganic chemicalsPeriodontal LigamentIronAntigens Differentiation MyelomonocyticHemeArticleCatalysisNitric oxideInorganic Chemistry03 medical and health sciencesstomatognathic systemAntigens CDnitric oxideOsteoclastmedicineAnimalsHumansddc:610CementumPhysical and Theoretical ChemistryMolecular BiologyCyclic guanosine monophosphateInflammationOrganic Chemistrysoluble guanylyl cyclase030206 dentistryPeriodontiumcGMPosteoclasts030104 developmental biologyGene Expression Regulationlcsh:Biology (General)lcsh:QD1-999chemistrySoluble guanylyl cyclaseInternational Journal of Molecular Sciences
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Étude des mécanismes moléculaires associés aux effets de l'ODN sur des cellules astrogliales et microgliales soumises à un stress oxydant : impact su…

2019

Neurodegenerative diseases are characterized by oxidative stress associated with mitochondrial damages leading to neuronal cell death. To mitigate these damages and promote neuronal cytoprotection and neurogenesis, endogenous (Neuropeptide: octadecaneuropeptide (ODN)) or exogenous (Polyphenols: resveratrol (RSV) and apigenin (API)) natural neurotrophic factors could be used as therapeutic agents to promote neuronal differentiation of immature and pluripotent stem cells. ODN is a peptide produced by astrocytes and known as a powerful neuroprotective agent. It is therefore of interest of studying its effects on the mobilization of calcium, its ability to protect neuronal cells against apoptos…

Peroxysome. mitochondrie[CHIM.ORGA]Chemical Sciences/Organic chemistryCell differentiationPolyphenolsPolyphénolsNeurodegenerationNeurodégénérescence[CHIM.ORGA] Chemical Sciences/Organic chemistryPeroxisome. mitochondriaOctadécaneuropeptide (ODN)NeuroprotectionOctadecaneuropeptide (ODN)Différenciation cellulaire
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Expression of membrane C1q in human monocyte-derived macrophages is developmentally regulated and enhanced by interferon-γ

2001

The present study investigated when during "in vitro" maturation macrophages (MPhi) express membrane C1q (mC1q), and whether cell activation affects expression and function of mC1q. Although C1q mRNA was repeatedly detected in freshly isolated monocytes using reverse transcriptase-polymerase chain reaction, C1q protein was observed only in developing MPhi from day 1 to 4 on using immunodetection and flow cytometry. However, the quantity of mC1q and other MPhi membrane proteins differed strikingly in cells from different donors. We report here for the first time that CD14(+) and CD14(-) mC1q-bearing MPhi can develop, and that interferon-gamma increases mC1q display at the cell surface, and m…

PhagocytosisCD14CellLipopolysaccharide ReceptorsBiophysicsMonocyte/macrophageComplementEnzyme-Linked Immunosorbent AssayBiologyLymphocyte ActivationBiochemistryFlow cytometryInterferon-gammaPhagocytosisStructural BiologyGeneticsmedicineHumansMolecular BiologyCells CulturedC1qMessenger RNAmedicine.diagnostic_testComplement C1qMacrophagesCell DifferentiationCell BiologyFlow CytometryPrecipitin TestsMolecular biologyIn vitromedicine.anatomical_structureGene Expression RegulationMembrane proteinDifferentiationCell activationFEBS Letters
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Effects of malvidin, cyanidin and delphinidin on human adipose mesenchymal stem cell differentiation into adipocytes, chondrocytes and osteocytes.

2019

Abstract Background Anthocyanidins are plant phytochemicals found at high concentrations in berries, vegetables and flowers. Anthocyanidins have been extensively investigated due to their antioxidative, antidiabetic and anti-inflammatory effects. Few studies show that anthocyanidins decrease obesity and improve bone density. However, the effects of anthocyanidins on tissue regeneration have not been sufficiently clarified. Human mesenchymal stem cells (MSCs) are multipotent adult stem cells responsible for the regeneration of fat, bone and cartilage. Although MSCs are often used for screening of biologically active compounds, so far, the effect of anthocyanidins on MSC differentiation has n…

Pharmaceutical ScienceOsteocytesAnthocyanins03 medical and health scienceschemistry.chemical_compound0302 clinical medicineChondrocytesOsteogenesisDrug DiscoveryAdipocytesHumansAggrecansCells Cultured030304 developmental biologyAnthocyanidinPharmacology0303 health sciencesAdipogenesisMesenchymal stem cellfood and beveragesCell DifferentiationMesenchymal Stem CellsChondrogenesisMalvidinCell biologyAnthocyanidinsComplementary and alternative medicinechemistryAdipose TissueGene Expression RegulationAdipogenesis030220 oncology & carcinogenesisMolecular MedicineMesenchymal stem cell differentiationAnti-Obesity AgentsDelphinidinChondrogenesisPhytomedicine : international journal of phytotherapy and phytopharmacology
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Generation of human hepatocytes by stem cell technology: definition of the hepatocyte

2006

Since 1999, numerous articles have reported the generation of hepatocytes from different types of extrahepatic stem or precursor cells. This opens exciting new possibilities for pharmacology and toxicology, as well as for cell therapy. Hepatocyte marker expression, including albumin, cytokeratin 18, c-met, alpha-fetoprotein and cytochrome P450 3A4 and -2B6, has been observed after transplantation of different types of human stem cells into the liver of laboratory animals or in vitro after incubation with cytokines. These intriguing observations have prompted scientists to classify stem cell-derived cell populations as hepatocytes. However, this conclusion may be premature. It has been shown…

PharmacologyCellular differentiationTransdifferentiationBiomedical TechnologyHematopoietic Stem Cell TransplantationCell DifferentiationGeneral MedicineBiologyHematopoietic Stem CellsToxicologyCell biologyEndothelial stem cellTransplantationCell therapyCancer stem cellHepatocytesAnimalsHumansStem cellAdult stem cellExpert Opinion on Drug Metabolism & Toxicology
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Murine embryonic stem cell line CGR8 expresses all subtypes of muscarinic receptors and multiple nicotinic receptor subunits: Down-regulation of α4- …

2015

Non-neuronal acetylcholine mediates its cellular effects via stimulation of the G-protein-coupled muscarinic receptors and the ligand-gated ion channel nicotinic receptors. The murine embryonic stem cell line CGR8 synthesizes and releases non-neuronal acetylcholine. In the present study a systematic investigation of the expression of nicotinic receptor subunits and muscarinic receptors was performed, when the stem cells were grown in the presence or absence of LIF, as the latter condition induces early differentiation. CGR8 cells expressed multiple nicotinic receptor subtypes (α3, α4, α7, α9, α10, β1, β2, β3, β4, γ, δ, e) and muscarinic receptors (M1, M3, M4, M5); M2 was detected only in 2 …

PharmacologyImmunologyMuscarinic acetylcholine receptor M3Down-RegulationMuscarinic acetylcholine receptor M2Cell DifferentiationMuscarinic acetylcholine receptor M1BiologyReceptors NicotinicReceptors MuscarinicCell biologyCell LineMiceProtein SubunitsNicotinic agonistGanglion type nicotinic receptorGene Expression RegulationMuscarinic acetylcholine receptor M5Muscarinic acetylcholine receptorImmunology and AllergyAnimalsAlpha-4 beta-2 nicotinic receptorEmbryonic Stem CellsInternational immunopharmacology
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The cholinergic 'pitfall': acetylcholine, a universal cell molecule in biological systems, including humans.

1999

1. Acetylcholine (ACh) represents one of the most exemplary neurotransmitters. In addition to its presence in neuronal tissue, there is increasing experimental evidence that ACh is widely expressed in pro- and eukaryotic non-neuronal cells. Thus, ACh has been detected in bacteria, algae, protozoa, tubellariae and primitive plants, suggesting an extremely early appearance of ACh in the evolutionary process. 2. In humans, ACh and/or the synthesizing enzyme, choline acetyltransferase, has been demonstrated in epithelial cells (airways, alimentary tract, urogenital tract, epidermis), mesothelial (pleura, pericardium) and endothelial and muscle cells. In addition, immune cells express the non-ne…

PharmacologyNeuronsPhysiologyCellular differentiationBiologyCholine acetyltransferaseAcetylcholineCell biologyEvolution MolecularParacrine signallingNicotinic agonistBiochemistryPhysiology (medical)Muscarinic acetylcholine receptormedicineCholinergicAnimalsCholinesterasesHumansAcetylcholinemedicine.drugCalcium signalingClinical and experimental pharmacologyphysiology
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NMR enantiodifferentiation of triphenylphosphonium salts by chiral hexacoordinated phosphate anions

2003

BINPHAT anion—rather than TRISPHAT—is an efficient NMR chiral shift reagent for triphenylphosphonium salts containing stereogenic centers on the aliphatic side-chain. BINPHAT—rather than TRISPHAT—anion is an efficient NMR (1H and 31P) chiral shift reagent for chiral triphenylphosphonium salts.

Phosphonium saltsBINPHATChiral anionsOrganic ChemistryTRISPHATPhosphateBiochemistryStereocenterchemistry.chemical_compoundNMR enantiodifferentiationTRISPHATchemistryReagentddc:540Drug DiscoveryAmino acids and derivativesOrganic chemistryTetrahedron Letters
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Extension of the Launay Quantum Reactive Scattering Code and Direct Computation of Time Delays.

2019

Scattering computations, particularly within the realm of molecular physics, have seen an increase in study since the development of powerful quantum methods. These dynamical processes can be analyzed via (among other quantities) the duration of the collision process and the lifetime of the intermediate complex. We use the Smith matrix Q = -iℏS†dS/dE calculated from the scattering matrix S and its derivative with respect to the total energy. Its real part contains the state-to-state time delays, and its eigenvalues give the lifetimes of the metastable states [ Smith Phys. Rev. 1960 , 118 , 349 - 356 ]. We propose an extension of the Launay HYP3D code [ Launay and Le Dourneuf Chem. Phys. Let…

Physics010304 chemical physicsScattering01 natural sciencesComputer Science ApplicationsEnergy derivativeMatrix (mathematics)Total angular momentum quantum numberQuantum mechanicsMetastability0103 physical sciencesNumerical differentiationPhysical and Theoretical ChemistryQuantumEigenvalues and eigenvectorsJournal of chemical theory and computation
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