Search results for "In vitro cell culture"

showing 4 items of 4 documents

Poly-left-lactic acid tubular scaffolds via diffusion induced phase separation: Control of morphology

2013

n this work, tubular poly-left-lactic acid scaffolds for vascular tissue engineering applications were produced by an innovative two-step method. The scaffolds were obtained by performing a dip-coating around a nylon fiber, followed by a diffusion induced phase separation process. Morphological analysis revealed that the internal lumen of the as-obtained scaffold is equal to the diameter of the fiber utilized; the internal surface is homogeneous with micropores 1–2 μm large. Moreover, a porous open structure was detected across the thickness of the walls of the scaffold. An accurate analysis of the preparation process revealed that it is possible to tune up the morphology of the scaffold (w…

Settore ING-IND/24 - Principi Di Ingegneria ChimicaScaffoldMaterials sciencescaffold poly-lactic acid tissue engineeringDiffusion Induced Phase separationPolymers and PlasticsPhase separation processPoly-left lactic acidvascular tissue engineeringGeneral ChemistryLactic acidchemistry.chemical_compoundSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialichemistryTissue engineeringHomogeneousSettore BIO/10 - BiochimicaMaterials ChemistryComposite materialPorosityWall thicknessIn vitro cell culturePolymer Engineering & Science
researchProduct

Development of a novel in vitro system for biomedical applications

2022

Nella ricerca scientifica e medica, l'uso degli animali ha apportato notevoli benefici all’uomo. Sebbene la loro fisiologia non imiti perfettamente il corpo umano, essi agiscono come perfetti "modelli" per lo studio delle malattie umane e lo sviluppo di nuovi farmaci e trattamenti. Tuttavia, secondo la Food and Drug Administration (FDA), solo l'8% dei farmaci testati sugli animali è considerato sicuro ed efficace per l'uso sull’essere umano, il 92% non lo è. Questi tassi di fallimento estremamente elevati nello sviluppo di farmaci, insieme ai costi in forte aumento, hanno portato molti ricercatori a rivalutare il valore degli studi in vivo sugli animali. Questo è stato il motivo per cui, ne…

3D in vitro cell culturePLLA scaffolddual-flow perfusion bioreactorSettore ING-IND/34 - Bioingegneria Industrialenanoparticles
researchProduct

Chenopodium album L. (Fat Hen): In Vitro Cell Culture, and Production of Secondary Metabolites (Phytosterols and Ecdysteroids)

1998

The name Chenopodium is derived from the Greek words chenos (goose) and podos (foot), because the leaves often resemble goose feet. This genus consists of ca. 120 species, widely distributed over the world, 45 of which have been described in India.

0106 biological sciences0303 health sciencesbiologyChenopodium[SDV]Life Sciences [q-bio]Mevalonic acidbiology.organism_classification01 natural sciences[SDV] Life Sciences [q-bio]03 medical and health scienceschemistry.chemical_compoundGoosechemistryGenusbiology.animalBotanyComputingMilieux_MISCELLANEOUSIn vitro cell culture030304 developmental biology010606 plant biology & botany
researchProduct

Kinetic modelling of passive transport and active efflux of a fluoroquinolone across Caco-2 cells using a compartmental approach in NONMEM.

2005

The purpose was to develop a general mathematical model for estimating passive permeability and efflux transport parameters from in vitro cell culture experiments. The procedure is applicable for linear and non-linear transport of drug with time,10 or10% of drug transport, negligible or relevant back flow, and would allow the adequate correction in the case of relevant mass balance problems. A compartmental kinetic approach was used and the transport barriers were described quantitatively in terms of apical and basolateral clearances. The method can be applied when sink conditions are not achieved and it allows the evaluation of the location of the transporter and its binding site. In this …

Cell Membrane PermeabilityTime FactorsPassive transportHealth Toxicology and MutagenesisXenobiotic transportToxicologyKinetic energyBiochemistrySubstrate SpecificityHumansP-glycoproteinPharmacologyBinding SitesbiologyDose-Response Relationship DrugChemistryMembrane Transport ProteinsBiological TransportGeneral MedicineApical membraneModels TheoreticalNONMEMKineticsBiochemistryVerapamilbiology.proteinEffluxCaco-2 CellsBiological systemIn vitro cell cultureFluoroquinolonesXenobiotica; the fate of foreign compounds in biological systems
researchProduct