Search results for "Liver cytology"

showing 10 items of 35 documents

Interleukin-33-Dependent Innate Lymphoid Cells Mediate Hepatic Fibrosis

2013

SummaryLiver fibrosis is a consequence of chronic liver diseases and thus a major cause of mortality and morbidity. Clinical evidence and animal studies suggest that local tissue homeostasis is disturbed due to immunological responses to chronic hepatocellular stress. Poorly defined stress-associated inflammatory networks are thought to mediate gradual accumulation of extracellular-matrix components, ultimately leading to fibrosis and liver failure. Here we have reported that hepatic expression of interleukin-33 (IL-33) was both required and sufficient for severe hepatic fibrosis in vivo. We have demonstrated that IL-33’s profibrotic effects related to activation and expansion of liver resi…

Liver CirrhosisLiver cytologyImmunologyBiologyLymphocyte ActivationArticle03 medical and health sciencesMice0302 clinical medicineFibrosismedicineHepatic Stellate CellsAnimalsImmunology and AllergyLymphocytesReceptors Interleukin-4 Type IIInterleukin 4Tissue homeostasisCells Cultured030304 developmental biologyCell ProliferationInflammationMice Knockout0303 health sciencesMice Inbred BALB CInterleukin-13InterleukinsInnate lymphoid cellmedicine.diseaseInterleukin-33Adoptive Transfer3. Good healthInterleukin 33Mice Inbred C57BLInfectious DiseasesLiverImmunologyHepatic stellate cellHepatic fibrosisSTAT6 Transcription Factor030215 immunologySignal TransductionImmunity
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Liver fibrosis induced by hepatic overexpression of PDGF-B in transgenic mice

2006

Background/Aims In hepatic fibrogenesis, stellate cells are activated leading to production and deposition of extracellular matrix. To clarify the role of PDGF-B in liver fibrogenesis, we overexpressed PDGF-B in the liver of transgenic mice. Methods Transgenic mice for the conditional overexpression of PDGF-B in the liver under control of an albumin promoter were generated utilising the Cre/loxP system. Constitutive PDGF-B expression was achieved after breeding with mice expressing Cre-recombinase under actin promoter control. Tamoxifen inducible expression was achieved after breeding with mice expressing Cre under transthyretin receptor promoter control. Levels of fibrosis were assessed an…

Liver Cirrhosismedicine.medical_specialtyPlatelet-derived growth factorLiver cytologyTransgeneMice TransgenicBiologyMicechemistry.chemical_compoundTransforming Growth Factor betaFibrosisInternal medicinemedicineAnimalsPromoter Regions GeneticCells CulturedCell ProliferationIntegrasesHepatologyTransdifferentiationCell DifferentiationProto-Oncogene Proteins c-sisFibroblastsmedicine.diseaseExtracellular MatrixEndocrinologyGene Expression RegulationLiverchemistryHepatocytesCancer researchHepatic stellate cellHepatic fibrosisMyofibroblastJournal of Hepatology
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Competency of different cell models to predict human hepatotoxic drugs.

2014

The liver is the most important target for drug-induced toxicity. This vulnerability results from functional liver features and its role in the metabolic elimination of most drugs. Drug-induced liver injury is a significant leading cause of acute, chronic liver disease and an important safety issue when developing new drugs.This review describes the advantages and limitations of hepatic cell-based models for early safety risk assessment during drug development. These models include hepatocytes cultured as monolayer, collagen-sandwich; emerging complex 3D configuration; liver-derived cell lines; stem cell-derived hepatocytes.In vitro toxicity assays performed in hepatocytes or hepatoma cell …

Liver cytologyCellPharmacologyBiologyToxicologyBioinformaticsChronic liver diseaseCell LineCell Line TumorToxicity TestsmedicineAnimalsHumansCells CulturedPharmacologyLiver injuryGeneral Medicinemedicine.diseasemedicine.anatomical_structureDrug developmentLiverCell cultureToxicityHepatic stellate cellHepatocytesChemical and Drug Induced Liver InjuryExpert opinion on drug metabolismtoxicology
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Antigen-presenting function and B7 expression of murine sinusoidal endothelial cells and Kupffer cells.

1996

Abstract BACKGROUND & AIMS: Inflammatory liver disease as well as rejection of liver allografts are thought to be mediated by resident antigen- presenting cells in the liver. At the same time, in vivo antigen presentation in the liver appears to be a more tolerogenic than systemic antigen challenge. The aim of this study was to show and characterize the antigen-presenting capability of sinusoidal endothelial cells and Kupffer cells. METHODS: Purified murine sinusoidal endothelial cells and Kupffer cells were studied for their ability to serve as accessory cells and antigen-presenting cells by proliferation assays. They were also studied for their expression of interleukin 1 and the B7 costi…

Liver cytologyKupffer CellsAntigen presentationMolecular Sequence DataAntigen-Presenting CellsBiologyLymphocyte ActivationPolymerase Chain ReactionMicemedicineAnimalsRNA MessengerAntigen-presenting cellInterleukin 3Antigen PresentationMice Inbred BALB CCD40HepatologyBase SequenceKupffer cellGastroenterologyBlotting NorthernCell biologyInterleukin-10RatsInterleukin 33medicine.anatomical_structureLiverImmunologybiology.proteinInterleukin 12B7-1 AntigenEndothelium VascularInterleukin-1Gastroenterology
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IL-10 down-regulates T cell activation by antigen-presenting liver sinusoidal endothelial cells through decreased antigen uptake via the mannose rece…

1998

SUMMARYOur study demonstrates that antigen-presenting liver sinusoidal endothelial cells (LSEC) induce production of interferon-gamma (IFN-γ) from cloned Th1 CD4+ T cells. We show that LSEC used the mannose receptor for antigen uptake, which further strengthened the role of LSEC as antigen-presenting cell (APC) population in the liver. The ability of LSEC to activate cloned CD4+ T cells antigen-specifically was down-regulated by exogenous prostaglandin E2 (PGE2) and by IL-10. We identify two separate mechanisms by which IL-10 down-regulated T cell activation through LSEC. IL-10 decreased the constitutive surface expression of MHC class II as well as of the accessory molecules CD80 and CD86 …

Liver cytologyT cellT-LymphocytesImmunologyAntigen presentationAntigen-Presenting CellsDown-RegulationReceptors Cell SurfaceBiologyLymphocyte ActivationDinoprostoneMiceAntigenAntigens CDmedicineImmunology and AllergyAnimalsLectins C-TypeCD86Antigen PresentationMice Inbred BALB CMembrane GlycoproteinsHistocompatibility Antigens Class IIOriginal ArticlesInterleukin-10Interleukin 10medicine.anatomical_structureMannose-Binding LectinsLiverImmunologyB7-1 AntigenCytokinesFemaleB7-2 AntigenEndothelium VascularMannoseCD80Mannose receptorMannose ReceptorClinical and experimental immunology
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Rat liver endothelial and Kupffer cell-mediated mutagenicity of polycyclic aromatic hydrocarbons and aflatoxin B1.

1990

The ability of isolated rat liver endothelial and Kupffer cells to activate benzo(a)pyrene (BP), trans-7,8-dihydroxy-7,8-dihydrobenzo(a)pyrene (DDBP), trans-1,2-dihydroxy-1,2-dihydrochrysene (DDCH), and aflatoxin B1 (AFB1) to mutagenic metabolites was assessed by means of a cell-mediated bacterial mutagenicity assay and compared with the ability of parenchymal cells to activate these compounds. Endothelial and Kupffer cells from untreated rats were able to activate AFB1 and DDBP; DDBP was activated even in the absence of an NADPH-generating system. Pretreating the animals with Aroclor 1254 strongly enhanced the mutagenicity of the dihydrodiol, whereas the mutagenicity of AFB1 showed a sligh…

MaleAflatoxin B1EndotheliumKupffer CellsLiver cytologyHealth Toxicology and MutagenesisIn Vitro TechniquesBiologychemistry.chemical_compoundAflatoxinsmedicineOrganoidAnimalsPolycyclic CompoundsTestosteroneBiotransformationCarcinogenKupffer cellPublic Health Environmental and Occupational Healthfood and beveragesRats Inbred StrainsRatsmedicine.anatomical_structureLiverBiochemistrychemistryBenzopyreneToxicityMicrosomeEndothelium VascularResearch ArticleMutagensEnvironmental Health Perspectives
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THE DISTRIBUTION OF UDP-GLUCURONOSYLTRANSFERASES IN RAT-LIVER PARENCHYMAL AND NONPARENCHYMAL CELLS

1992

Activities for the glucuronidation of 1-naphthol, morphine and bilirubin as well as for the sulfation of 2-naphthol have been determined in homogenates of parenchymal, Kupffer and endothelial cells isolated from livers of untreated and Aroclor 1254-pretreated rats. In addition, Western blot analyses using different polyclonal antibodies against UDP-glucuronosyltransferases (UDP-GTs) were performed with similar preparations. All enzymes under investigation were expressed at high levels in liver parenchymal cells. The constitutive expression and inducibility of UDP-GT isozyme(s) for 1-naphthol glucuronidation was also clearly demonstrated in Kupffer and endothelial cells. Furthermore, the pre…

MaleAroclorsCell type1303 BiochemistryKupffer CellsLiver cytologyBilirubinBlotting WesternGlucuronidation10050 Institute of Pharmacology and Toxicology610 Medicine & healthCell SeparationBiologyBiochemistryIsozymechemistry.chemical_compoundSulfationmedicineAnimalsEndotheliumGlucuronosyltransferasePharmacologyKupffer cellRats Inbred StrainsChlorodiphenyl (54% Chlorine)ArylsulfotransferaseMolecular biologyRatsIsoenzymesEndothelial stem cellmedicine.anatomical_structure3004 PharmacologyLiverchemistryBiochemistry570 Life sciences; biology
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A comparative study of drug-metabolizing enzymes present in isolated rat liver parenchymal, Kupffer and endothelial cells

1987

MaleAroclorsPathologymedicine.medical_specialtyKupffer CellsLiver cytologyIn Vitro TechniquesBiochemistryTransferasesParenchymaCytochrome P-450 CYP1A1medicineAnimalsEndotheliumGlucuronosyltransferaseChemistryRats Inbred StrainsAnatomyChlorodiphenyl (54% Chlorine)RatsDrug metabolizing enzymesLiverRat liverInactivation MetabolicOxidoreductasesAminopyrine N-DemethylaseBiochemical Society Transactions
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Expression of L- and M2-pyruvate kinases in proliferating oval cells and cholangiocellular lesions developing in the livers of rats fed a methyl-defi…

1994

Male outbred Sprague-Dawley rats were fed a choline-deficient diet containing 0.1% w/w DL-ethionine (CDE) for up to 22 weeks. The expression of the pyruvate kinase isoenzymes L (L-PK) and M2 (M2-PK) was immunohistochemically analyzed in liver slices from rats killed 4, 10, 14 and 22 weeks after starting the treatment. M2-PK was detected in bile duct epithelial cells of untreated rats and in proliferating oval cells, cholangiofibroses and cholangiofibromas of CDE-fed animals. Thus, M2-PK can be viewed as a positive marker of the bile duct epithelial/oval cell compartment. L-PK, a parenchymal cell-specific protein in untreated rat liver, was not present in proliferating oval cells, but was co…

MaleCancer ResearchPathologymedicine.medical_specialtyNecrosisLiver cytologyPyruvate KinaseCellBiologyCholangiocarcinomaRats Sprague-DawleyNecrosisLiver Neoplasms ExperimentalParenchymamedicineAnimalsEthionineBile ductAntibodies MonoclonalGeneral MedicineImmunohistochemistryEpitheliumCholine DeficiencyRatsBile Ducts Intrahepaticmedicine.anatomical_structureBile Duct NeoplasmsLiverHepatocytemedicine.symptomPrecancerous ConditionsCell DivisionPyruvate kinaseCarcinogenesis
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Hepatocytes cultured in alginate microspheres: an optimized technique to study enzyme induction.

2004

An important application of hepatocyte cultures is identification of drugs acting as inducers of biotransformation enzymes that alter metabolic clearance of other therapeutic agents. In the present study we optimized an in vitro system with hepatocytes cultured in alginate microspheres that allow studies of enzyme induction with excellent sensitivity. Induction factors obtained with standard inducers, such as 3-methylcholanthrene or phenobarbital, were higher compared to those with conventional hepatocyte co-cultures on collagen coated dishes. This is illustrated by activities of 7-ethoxyresorufin-O-deethylase (EROD) after incubation with 5 microM 3-methylcholanthrene (3-MC), a standard ind…

MaleLiver cytologyAlginatesCell Culture TechniquesBiologyToxicologySensitivity and SpecificityHydroxylationRats Sprague-Dawleychemistry.chemical_compoundGlucuronic AcidIn vivomedicineCytochrome P-450 CYP1A1AnimalsTechnology PharmaceuticalInducerEnzyme inducerCells CulturedGlutathione TransferaseHexuronic AcidsReproducibility of ResultsReference StandardsIn vitroCoculture TechniquesMicrospheresRatsmedicine.anatomical_structureBiochemistrychemistryLiverCell cultureHepatocyteEnzyme InductionPhenobarbitalCytochrome P-450 CYP2B1biology.proteinHepatocytesMethylcholanthreneToxicology
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