Search results for "Kupffer cell"

showing 2 items of 32 documents

Sinusoidal endothelial liver cells in vitro release endothelin — Augmentation by transforming growth factorβ and Kupffer cell-conditioned media

1991

Endothelin is the most potent vasoconstrictor peptide known today. Using a radioimmunoassay for endothelin, we measured immunoreactive endothelin in culture media of guinea pig sinusoidal endothelial liver cells and human umbilical vein endothelial cells. A time-dependent release of immunoreactive endothelin by confluent sinusoidal endothelial liver cells in culture was found. Sinusoidal endothelial liver cells produced similar amounts of immunoreactive endothelin as umbilical vein endothelial cells, about 900 pg/microgram DNA per 24 h. In the presence of transforming growth factor beta a dose-dependent increase of immunoreactive endothelin release was measured. The maximal increase of 50% …

medicine.medical_specialtyKupffer CellsGuinea PigsRadioimmunoassayUmbilical veinTransforming Growth Factor betaInternal medicineDrug DiscoverymedicineAnimalsCells CulturedGenetics (clinical)Dose-Response Relationship DrugbiologyChemistryEndothelinsKupffer cellRadioimmunoassayGeneral MedicineTransforming growth factor betaEndothelin 1In vitroEndocrinologymedicine.anatomical_structureLivercardiovascular systembiology.proteinMolecular MedicineFemaleEndothelium VascularEndothelin receptorTransforming growth factorKlinische Wochenschrift
researchProduct

Nanocapsules generated out of a polymeric dexamethasone shell suppress the inflammatory response of liver macrophages.

2012

Abstract Dexamethasone (DXM) is a synthetic glucocorticoid with anti-inflammatory properties. Targeted delivery of dexamethasone to inflammatory cells, e.g. macrophages and Kupffer cells represents a promising approach to minimize side effects. The aim of the present study was to induce a targeted transport of novel DXM-based biodegradable nanocapsules to phagocytic cells. Nanocapsules (NCs) consisting of a hydroxyethylated glucose polymer (hydroxyethyl starch, HES) shell with encapsulated DXM and NCs synthesized exclusively in inverse miniemulsion out of DXM were investigated. Non-parenchymal murine liver cells served as target cells. HES-DXM NCs were predominantly incorporated by Kupffer …

medicine.medical_specialtyMaterials sciencemedicine.drug_classKupffer CellsInflammatory responseBiomedical EngineeringAnti-Inflammatory AgentsPharmaceutical ScienceMedicine (miscellaneous)BioengineeringStimulationHydroxyethyl starchPharmacologybehavioral disciplines and activitiesNanocapsulesDexamethasoneProinflammatory cytokineHydroxyethyl Starch DerivativesMiceDrug Delivery SystemsNanocapsulesInternal medicinemental disordersmedicineAnimalsGeneral Materials ScienceDexamethasoneCells CulturedMice Inbred C57BLEndocrinologyMolecular MedicineCorticosteroidCytokinesFemaleGlucocorticoidmedicine.drugNanomedicine : nanotechnology, biology, and medicine
researchProduct