Search results for "reverse transcriptase"

showing 10 items of 715 documents

Fibronectin Type III Domain–Containing Protein 5 rs3480 A>G Polymorphism, Irisin, and Liver Fibrosis in Patients With Nonalcoholic Fatty Liver Dis…

2017

Context Contrasting data have been reported on the role of irisin, a novel myokine encoded by the fibronectin type III domain-containing protein 5 (FNDC5) gene, in nonalcoholic fatty liver disease (NAFLD) pathogenesis. We tested in patients with suspected nonalcoholic steatohepatitis (NASH) the association of FNDC5 variants, hepatic expression, and circulating irisin with liver damage (F2 to F4 fibrosis as main outcome). We also investigated whether irisin modulates hepatocellular fat accumulation and stellate cell activation in experimental models. Methods We considered 593 consecutive patients who underwent liver biopsy for suspected NASH and 192 patients with normal liver enzymes and wit…

Liver CirrhosisMale0301 basic medicineEndocrinology Diabetes and MetabolismClinical BiochemistrySeverity of Illness IndexBiochemistryGastroenterologyMiceEndocrinologyNon-alcoholic Fatty Liver DiseaseFibrosisNonalcoholic fatty liver diseaseOdds RatioProspective StudiesCarbon Tetrachloridemedicine.diagnostic_testReverse Transcriptase Polymerase Chain ReactionHep G2 CellsMiddle AgedFNDC5LiverLiver biopsyFemaleAdultmedicine.medical_specialtyIn Vitro TechniquesDiet High-FatReal-Time Polymerase Chain ReactionPolymorphism Single Nucleotide03 medical and health sciencesDiabetes mellitusInternal medicineMyokineHepatic Stellate CellsmedicineAnimalsHumansFNDC5 IRISIN NAFLDGenetic Predisposition to Diseasebusiness.industryBiochemistry (medical)medicine.diseasedigestive system diseasesFibronectins030104 developmental biologyEndocrinologyCase-Control StudiesHepatic stellate cellSteatosisbusinessThe Journal of Clinical Endocrinology & Metabolism
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Treatment of chronic hepatitis B: update of the recommendations from the 2007 Italian Workshop

2011

Abstract The Italian recommendations for the therapy of hepatitis B virus (HBV)-related disease were issued in 2008. Subsequently in 2008 the nucleotide analogue (NA) Tenofovir was approved for antiviral treatment. The introduction of this important new drug has called for the current guidelines update, which includes some additional revisions: (a) the indication for therapy is extended to mild liver fibrosis and the indication for treatment is graded as “possible”, “optional” or “mandatory” according to the fibrosis stage; (b) two different treatment strategies are described: first line definite duration treatment with interferon, long-term treatment of indefinite duration with NA; (c) the…

Liver Cirrhosismedicine.medical_specialtyHepatitis B virusCirrhosisCarcinoma HepatocellularOrganophosphonateschronic hepatitis B The Italian recommendations for the therapy of hepatitis B Tenofovir Adefovir Cirrhosis Telbivudine Lamivudine Entecavirmedicine.disease_causeAntiviral Agentsadefovir; cirrhosis; entecavir; hbv; lamivudine; telbivudine; tenofovirHepatitis B ChronicInternal medicineTelbivudinemedicineAdefovirHBVHumansStage (cooking)TenofovirHepatitis B virusHepatologybusiness.industryAdenineLiver NeoplasmsGastroenterologyLamivudineEntecavirmedicine.diseaseVirologyItalyHepatocellular carcinomaReverse Transcriptase InhibitorsInterferonsbusinessmedicine.drug
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Fibrosis in chronic viral hepatitis

2011

In the last years, several studies have been performed with the aim to evaluate the real impact of antiviral treatments on fibrosis progression in patients with chronic viral hepatitis. The main goal of therapy in patients with chronic hepatitis B is viral suppression. This outcome leads to an important improvement in both hepatic inflammation and fibrosis and reduces the HCC occurrence. An histological improvement has been largely demonstrated in patient treated with oral nucleoside and nucleotide analogs achieving the rate of 72% with entecavir and tenofovir. Similarly, in patients with chronic hepatitis C, sustained virologic response to interferon therapy is associated with regression o…

Liver Cirrhosismedicine.medical_specialtyPathologyInterferon therapyGastroenterologyHepatitis B ChronicFibrosisInternal medicinemedicineHumansIn patientViral suppressionLiver decompensationliver fibrosisbusiness.industryGastroenterologyEntecavirHepatitis C Chronicmedicine.diseaseAnti-Retroviral AgentsVirologic responseReverse Transcriptase InhibitorsInterferonsbusinessViral hepatitismedicine.drug
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Synthetic (glyco-)peptides of the homophilic recognition domain of E-cadherin lead to increased E-cadherin mRNA synthesis and are inductors of cell d…

2010

E-cadherin is one of the critical molecules involved in the metastatic process in many types of cancer. Once combined, E-cadherin exceeds the amount of membranous E-cadherin on the cellular surface by activation of intracellular signaling cascades. Studies on transformed keratinocytes of the HaCat cell line showed induction of differentiation by synthetical partial structures of the homophilic binding region of E-cadherin. The knowledge of effects in lung cancer cells is sparse. Therefore, the effects in primary lung cancer cell lines were investigated. Four primary lung cancer cell lines were incubated for 3, 6, 12, 15, 18, and 24h with synthetic partial structures (peptide and glycopeptid…

Lung NeoplasmsCell SurvivalCellular differentiationCellBiologyPathology and Forensic Medicinechemistry.chemical_compoundCell Line TumorExtracellularmedicineHumansRNA MessengerReverse Transcriptase Polymerase Chain ReactionCadherinGlycopeptidesCell DifferentiationSodium butyrateCell BiologyCadherinsImmunohistochemistryMolecular biologyProtein Structure TertiaryCell biologymedicine.anatomical_structurechemistryTumor progressionCell cultureIntracellularPathology - Research and Practice
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The three α1-adrenoceptor subtypes show different spatio-temporal mechanisms of internalization and ERK1/2 phosphorylation

2013

AbstractWe analyzed the kinetic and spatial patterns characterizing activation of the MAP kinases ERK 1 and 2 (ERK1/2) by the three α1-adrenoceptor (α1-AR) subtypes in HEK293 cells and the contribution of two different pathways to ERK1/2 phosphorylation: protein kinase C (PKC)-dependent ERK1/2 activation and internalization-dependent ERK1/2 activation. The different pathways of phenylephrine induced ERK phosphorylation were determined by western blot, using the PKC inhibitor Ro 31-8425, the receptor internalization inhibitor concanavalin A and the siRNA targeting β-arrestin 2. Receptor internalization properties were studied using CypHer5 technology and VSV-G epitope-tagged receptors. Activ…

MAPK/ERK pathwayArrestinsmedia_common.quotation_subjectBlotting WesternKidneyReal-Time Polymerase Chain ReactionImmunoenzyme TechniquesConstitutive activityReceptors Adrenergic alpha-1Concanavalin AHumansRNA MessengerPKCEnzyme InhibitorsPhosphorylationRNA Small InterferingInternalizationProtein kinase AMolecular BiologyCells CulturedProtein Kinase Cbeta-ArrestinsProtein kinase Cmedia_commonMitogen-Activated Protein Kinase 1G protein-coupled receptor kinaseMitogen-Activated Protein Kinase 3ERK1/2biologyReverse Transcriptase Polymerase Chain ReactionKinaseChemistryCell Biologybeta-Arrestin 2Molecular biologyAdrenaline α1 receptorsEndocytosisMitogen-activated protein kinasebiology.proteinPhosphorylationInternalizationSignal TransductionBiochimica et Biophysica Acta (BBA) - Molecular Cell Research
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Mevalonate pathway inhibitors affect anticancer drug-induced cell death and DNA damage response of human sarcoma cells

2011

Lovastatin (Lov), bisphosphonates (BP) and metformin (Met) are widely used drugs, having in common that they interfere with the mevalonate pathway (MP). The MP generates isoprene moieties required for the function of regulatory GTPases controlling cell proliferation and survival. Here, we addressed the question whether MP inhibitors interfere with the anti-tumor efficacy of anticancer drugs. We comparatively analyzed the effect of equitoxic doses of Lov, BP and Met on cell viability, cell cycle progression, apoptosis and DNA damage response (DDR) of human osteo- and fibrosarcoma cells exposed to doxorubicin or cisplatin. We found that Lov, BP and Met modulated the anticancer drug sensitivit…

MAPK/ERK pathwayCancer ResearchDNA damageFibrosarcomaBlotting WesternMevalonic AcidAntineoplastic AgentsApoptosisBone NeoplasmsTumor Cells CulturedmedicineHumansDoxorubicinLovastatinRNA MessengerPhosphorylationCell ProliferationCisplatinOsteosarcomaDiphosphonatesbiologyReverse Transcriptase Polymerase Chain ReactionCell growthCell CycleMetforminOncologyDoxorubicinApoptosisHMG-CoA reductasebiology.proteinCancer researchMevalonate pathwayCisplatinTumor Suppressor Protein p53DNA DamageSignal Transductionmedicine.drugCancer Letters
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The stimulation of arginine transport by TNFα in human endothelial cells depends on NF-κB activation

2004

In human saphenous vein endothelial cells (HSVECs), tumor necrosis factor-alpha (TNFalpha) and bacterial lipopolysaccharide (LPS), but neither interferon gamma (IFNgamma) nor interleukin 1beta (IL-1beta), stimulate arginine transport. The effects of TNFalpha and LPS are due solely to the enhancement of system y+ activity, whereas system y+L is substantially unaffected. TNFalpha causes an increased expression of SLC7A2/CAT-2B gene while SLC7A1/CAT-1 expression is not altered by the cytokine. The suppression of PKC-dependent transduction pathways, obtained with the inhibitor chelerytrhine, the inhibitor peptide of PKCzeta isoform, or chronic exposure to phorbol esters, does not prevent TNFalp…

MAPK/ERK pathwayLipopolysaccharidesmedicine.medical_specialtyUmbilical VeinsTime FactorsCAT transporterArginineTranscription Geneticp38 mitogen-activated protein kinasesmedicine.medical_treatmentBiophysicsPharmacologyBiologyArgininePolymerase Chain Reactionp38 Mitogen-Activated Protein KinasesBiochemistryInterferon-gammaInternal medicineCationsmedicineTNFαHumansInterferon gammaRNA MessengerCationic Amino Acid Transporter 2Cells CulturedProtein Kinase CArginine transportReverse Transcriptase Polymerase Chain ReactionTumor Necrosis Factor-alphaNF-kappa BBiological TransportCell BiologyCytokineEndocrinologySLC7 geneAmino Acid Transport Systems BasicCytokinesTumor necrosis factor alphaEndothelium VascularSignal transductionMitogen-Activated Protein KinasesPeptidesmedicine.drugInterleukin-1Signal TransductionNFκBBiochimica et Biophysica Acta (BBA) - Biomembranes
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Down-regulation of human CYP3A4 by the inflammatory signal interleukin-6: molecular mechanism and transcription factors involved.

2002

The hepatic drug-metabolizing cytochrome P-450 (CYP) enzymes are down-regulated during inflammation. In vitro studies with hepatocytes have shown that the cytokines released during inflammatory responses are largely responsible for this CYP repression. However, the signaling pathways and the cytokine-activated factors involved remain to be properly identified. Our research has focused on the negative regulation of CYP3A4 (the major drug-metabolizing human CYP) by interleukin 6 (IL-6) (the principal regulator of the hepatic acute-phase response). CYP3A4 down-regulation by IL-6 requires activation of the glycoprotein receptor gp130; however, it does not proceed through the JAK/STAT pathway, a…

MAPK/ERK pathwaySTAT3 Transcription FactorMAP Kinase Signaling Systemp38 mitogen-activated protein kinasesDown-RegulationBiologyBiochemistryTransactivationCytochrome P-450 Enzyme SystemAntigens CDGeneticsCCAAT-Enhancer-Binding Protein-alphaCytokine Receptor gp130Tumor Cells CulturedCytochrome P-450 CYP3AHumansRNA MessengerSTAT3Molecular BiologyTranscription factorCells CulturedMembrane GlycoproteinsDose-Response Relationship DrugInterleukin-6Reverse Transcriptase Polymerase Chain ReactionCCAAT-Enhancer-Binding Protein-betaJAK-STAT signaling pathwayProtein-Tyrosine KinasesGlycoprotein 130Molecular biologyDNA-Binding ProteinsGene Expression Regulationbiology.proteinHepatocytesTrans-ActivatorsSignal transductionBiotechnologyAcute-Phase ProteinsSignal TransductionTranscription FactorsFASEB journal : official publication of the Federation of American Societies for Experimental Biology
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Global Functional Analyses of Cellular Responses to Pore-Forming Toxins

2011

Here we present the first global functional analysis of cellular responses to pore-forming toxins (PFTs). PFTs are uniquely important bacterial virulence factors, comprising the single largest class of bacterial protein toxins and being important for the pathogenesis in humans of many Gram positive and Gram negative bacteria. Their mode of action is deceptively simple, poking holes in the plasma membrane of cells. The scattered studies to date of PFT-host cell interactions indicate a handful of genes are involved in cellular defenses to PFTs. How many genes are involved in cellular defenses against PFTs and how cellular defenses are coordinated are unknown. To address these questions, we pe…

MAPK/ERK pathwayTranscription GeneticImmunology/Innate ImmunityMessengerInteractomeInfectious Diseases/Bacterial InfectionsRNA interference2.1 Biological and endogenous factorsAetiologyBiology (General)Genes HelminthCaenorhabditis elegansOligonucleotide Array Sequence AnalysisGenetics0303 health sciencesGenomebiologyReverse Transcriptase Polymerase Chain ReactionGenetics and Genomics/Functional Genomics030302 biochemistry & molecular biologyrespiratory systemCell biologyInfectious DiseasesMedical MicrobiologyRNA InterferenceSignal transductionDNA microarrayTranscriptionBiotechnologyResearch ArticleSignal TransductionPore Forming Cytotoxic ProteinsQH301-705.5Virulence FactorsMAP Kinase Signaling System1.1 Normal biological development and functioningBacterial ToxinsImmunologyMicrobiologyDNA-binding proteinCell Line03 medical and health sciencesBacterial ProteinsGeneticUnderpinning researchVirologyEscherichia coliHelminthGeneticsAnimalsHumansRNA MessengerCaenorhabditis elegansCaenorhabditis elegans ProteinsMolecular BiologyGene030304 developmental biologyGenome HelminthCell MembraneGenetics and GenomicsRC581-607biology.organism_classificationrespiratory tract diseasesTranscription Factor AP-1Emerging Infectious DiseasesGenesRNAParasitologyGeneric health relevanceRNA HelminthImmunologic diseases. AllergyPLoS Pathogens
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Gallium modulates osteoclastic bone resorption in vitro without affecting osteoblasts.

2010

Gallium (Ga) has been shown to be effective in the treatment of disorders associated with accelerated bone loss, including cancer-related hypercalcemia and Paget's disease. These clinical applications suggest that Ga could reduce bone resorption. However, few studies have studied the effects of Ga on osteoclastic resorption. Here, we have explored the effects of Ga on bone cells in vitro.In different osteoclastic models [osteoclasts isolated from long bones of neonatal rabbits (RBC), murine RAW 264.7 cells and human CD14-positive cells], we have performed resorption activity tests, staining for tartrate resistant acid phosphatase (TRAP), real-time polymerase chain reaction analysis, viabili…

MESH: Bone ResorptionMESH: RabbitsGallium[SDV.BC.IC] Life Sciences [q-bio]/Cellular Biology/Cell Behavior [q-bio.CB]MESH: Base Sequence[SDV.BBM.BM] Life Sciences [q-bio]/Biochemistry Molecular Biology/Molecular biologyMiceMESH: Alkaline PhosphataseMESH: Reverse Transcriptase Polymerase Chain Reaction[SDV.BC.IC]Life Sciences [q-bio]/Cellular Biology/Cell Behavior [q-bio.CB]MESH: Animals[SDV.BBM.BC] Life Sciences [q-bio]/Biochemistry Molecular Biology/Biochemistry [q-bio.BM]Cells Cultured[SDV.MHEP.RSOA] Life Sciences [q-bio]/Human health and pathology/Rhumatology and musculoskeletal systemReverse Transcriptase Polymerase Chain ReactionCell DifferentiationMESH: GalliumResearch Papers[SDV.BBM.BC]Life Sciences [q-bio]/Biochemistry Molecular Biology/Biomolecules [q-bio.BM]Isoenzymes[SDV.MHEP.RSOA]Life Sciences [q-bio]/Human health and pathology/Rhumatology and musculoskeletal systemMESH: Isoenzymes[SDV.BBM.GTP] Life Sciences [q-bio]/Biochemistry Molecular Biology/Genomics [q-bio.GN]RabbitsMESH: Cells Culturedmusculoskeletal diseasesMESH: Cell DifferentiationMESH: DNA PrimersAcid Phosphatase[SDV.CAN]Life Sciences [q-bio]/CancerIn Vitro TechniquesMESH: Acid Phosphatase[SDV.CAN] Life Sciences [q-bio]/Cancer[SDV.BBM.GTP]Life Sciences [q-bio]/Biochemistry Molecular Biology/Genomics [q-bio.GN]AnimalsHumansBone Resorption[SDV.BBM.BC]Life Sciences [q-bio]/Biochemistry Molecular Biology/Biochemistry [q-bio.BM]MESH: Tartrate-Resistant Acid Phosphatase[SDV.IB.BIO]Life Sciences [q-bio]/Bioengineering/BiomaterialsMESH: MiceDNA PrimersMESH: In Vitro TechniquesMESH: OsteoblastsOsteoblastsMESH: HumansBase SequenceTartrate-Resistant Acid Phosphatase[SDV.BBM.BM]Life Sciences [q-bio]/Biochemistry Molecular Biology/Molecular biologyAlkaline Phosphatase[SDV.IB.BIO] Life Sciences [q-bio]/Bioengineering/Biomaterials
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