Search results for "CO-2"

showing 10 items of 204 documents

Nutriosomes: Prebiotic delivery systems combining phospholipids, a soluble dextrin and curcumin to counteract intestinal oxidative stress and inflamm…

2018

Nutriosomes, new phospholipid nanovesicles specifically designed for intestinal protection were developed by simultaneously loading a water-soluble dextrin (Nutriose® FM06) and a natural antioxidant (curcumin). Nutriosomes were easily fabricated in a one-step, organic solvent-free procedure. The stability and delivery performances of the vesicles were improved by adding hydroxypropyl methylcellulose. All the vesicles were small in size (mean diameter ∼168 nm), negatively charged (zeta potential ∼-38 mV, irrespective of their composition), and self-assembled predominantly in unilamellar vesicles stabilized by the presence of Nutriose®, which was located in both the inter-lamellar and inter-v…

Male0301 basic medicineBiodistributionAntioxidantCurcuminEstrès oxidatiumedicine.medical_treatmentPhospholipidBiological AvailabilityCurcumin analogues02 engineering and technologyAntioxidants03 medical and health scienceschemistry.chemical_compoundCryoprotective AgentsDrug Delivery SystemsCurcumaMicroscopy Electron TransmissionX-Ray DiffractionDextrinsScattering Small AnglemedicineZeta potentialAnimalsHumansTissue DistributionGeneral Materials ScienceRats WistarPhospholipidsInflammationchemistry.chemical_classificationVesicle021001 nanoscience & nanotechnologyRats3. Good healthBioavailabilityIntestinesOxidative StressFreeze DryingPrebiotics030104 developmental biologychemistryCurcuminBiophysicsDextrinCaco-2 Cells0210 nano-technology
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Physiological relevance of the neuronal isoform of inositol-1,4,5-trisphosphate 3-kinases in mice

2020

Inositol-1,4,5-trisphosphate 3-kinase-A (ITPKA) is the neuronal isoform of ITPKs and exhibits both actin bundling and InsP3kinase activity. In addition to neurons, ITPKA is ectopically expressed in tumor cells, where its oncogenic activity increases tumor cell malignancy. In order to analyze the physiological relevance of ITPKA, here we performed a broad phenotypic screening of itpka deficient mice. Our data show that among the neurobehavioral tests analyzed, itpka deficient mice reacted faster to a hotplate, prepulse inhibition was impaired and the accelerating rotarod test showed decreased latency of itpka deficient mice to fall. These data indicate that ITPKA is involved in the regulatio…

Male0301 basic medicineGene isoformCentral nervous systemMice03 medical and health scienceschemistry.chemical_compound0302 clinical medicinegenetics [Phosphotransferases (Alcohol Group Acceptor)]medicinephysiology [Prepulse Inhibition]AnimalsHumansdeficiency [Phosphotransferases (Alcohol Group Acceptor)]Inositolddc:610Prepulse inhibitionActinMice KnockoutNeuronsenzymology [Neurons]Prepulse InhibitionChemistryKinaseGeneral Neurosciencedeficiency [Isoenzymes]Small intestineCell biologyIsoenzymesPhosphotransferases (Alcohol Group Acceptor)030104 developmental biologymedicine.anatomical_structureCell cultureFemaleCaco-2 Cellsgenetics [Isoenzymes]030217 neurology & neurosurgeryNeuroscience Letters
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Kinetic modelling of the intestinal transport of sarafloxacin. Studiesin situin rat andin vitroin Caco-2 cells

2005

The absorption kinetics of sarafloxacin, as a model of fluoroquinolone structure, were studied in the rat small intestine and in Caco-2 cells. The objective of the study was to investigate the mechanistic basis of the drug's intestinal transport in comparison with other members of the fluoroquinolone family and to apply a mathematical modelling approach to the transport process. In the rat small intestine, sarafloxacin showed dual mechanisms of intestinal absorption with a passive diffusional component and an absorptive carrier-mediated component. The characteristics of the animal study design made it suitable for population analysis, thus allowing the accurate estimation of transport param…

MaleAbsorption (pharmacology)Chemical PhenomenaAntimetabolitesPopulationPharmaceutical ScienceOxidative PhosphorylationIntestinal absorptionDiffusionchemistry.chemical_compoundAdenosine TriphosphateSarafloxacinAnti-Infective AgentsCiprofloxacinAnimalsHumansIntestinal MucosaRats WistarSodium AzideeducationAntibacterial agenteducation.field_of_studyModels StatisticalChemistry PhysicalBiological TransportLipidsRatsIntestinal AbsorptionchemistryBiochemistryPermeability (electromagnetism)BiophysicsSodium azideEffluxCaco-2 CellsEnergy MetabolismAlgorithmsFluoroquinolonesJournal of Drug Targeting
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Mathematical modelling of in situ and in vitro efflux of ciprofloxacin and grepafloxacin

2005

Abstract The efflux process due to p-glycoprotein-like mechanisms of ciprofloxacin (CIP) and grepafloxacin (GRX) has been studied “in situ” in rats and “in vitro” in Caco-2 cells. The results were modelled by a curve fitting procedure which allowed the characterization of the passive (Pd) and carrier mediated parameters (Vm and Km) from the raw data without initial velocities estimation. CIP absorption in rat was characterized as a passive diffusion at the assayed concentrations. Although the involvement of an efflux transporter cannot be ruled out, its relevance in the transport of the fluoroquinolone is negligible. In GRX absorption, an efflux process is implicated and it is detected in b…

MaleAbsorption (pharmacology)In situCell Membrane PermeabilityPharmaceutical ScienceModels BiologicalPiperazinesDiffusionAnti-Infective AgentsCiprofloxacinIntestine SmallmedicineAnimalsHumansRats WistarAntibacterial agentChemistryTransporterIn vitroGrepafloxacinRatsPerfusionIntestinal AbsorptionBiochemistryPermeability (electromagnetism)BiophysicsEffluxCaco-2 CellsFluoroquinolonesmedicine.drugInternational Journal of Pharmaceutics
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Fasted-state simulated intestinal fluid "FaSSIF-C", a cholesterol containing intestinal model medium for in vitro drug delivery development.

2015

A set of biorelevant media "fasted-state simulated intestinal fluid with cholesterol (FaSSIF-C)" for the in vitro study of intestinal drug dissolution in the duodenum was developed. These contain cholesterol at the same levels as in human bile: the cholesterol content of FaSSIF-7C is equivalent to healthy female, FaSSIF-10C to healthy male persons, and FaSSIF-13C to several disease cases that lead to gallstones. The fluids were studied in three aspects: biocompatibility, intestinal nanostructure, and solubilizing power of hydrophobic drugs of the BCS class II. The biocompatibility study showed no toxic effects in a Caco-2 cell system. The drug-solubilizing capacity toward Fenofibrate, Danaz…

MaleBiocompatibilityPharmaceutical ScienceMicelleHigh cholesterolGriseofulvinchemistry.chemical_compoundDrug Delivery SystemsFenofibratemedicineHumansDissolution testingIntestinal MucosaParticle SizeFenofibrateChromatographyCholesterolDanazolFastingModels TheoreticalGriseofulvinmedicine.diseaseBody FluidsCarbamazepineCholesterolchemistryIntestinal AbsorptionSolubilityDrug deliveryFemaleCaco-2 Cellsmedicine.drugJournal of pharmaceutical sciences
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Reduced expression of Hugl-1, the human homologue of Drosophila tumour suppressor gene lgl, contributes to progression of colorectal cancer.

2005

The human gene, human giant larvae (Hugl-1/Llg1/Lgl1) has significant homology to the Drosophila tumour suppressor gene lethal(2)giant larvae (lgl). The lgl gene codes for a cortical cytoskeleton protein, Lgl, that binds Myosin II and is involved in maintaining cell polarity and epithelial integrity. The human protein, Hugl-1 contains several conserved functional domains found in Lgl, suggesting that these proteins may have closely related functions. Whether loss of Hugl expression plays a role in human tumorigenesis has so far not been extensively investigated. Thus, we evaluated tumour tissues from 94 patients undergoing surgery for colorectal cancer (CRC) for loss of Hugl-1 transcription…

MaleCancer ResearchTranscription Geneticmedicine.disease_causeCell MovementNeoplasmsGene expressionDrosophila ProteinsIntestinal MucosaCytoskeletonReverse Transcriptase Polymerase Chain ReactionCell CycleCell migrationCell DifferentiationMiddle AgedImmunohistochemistryGene Expression Regulation NeoplasticDrosophila melanogasterDisease ProgressionFemaleColorectal NeoplasmsAdenomaAdultTumor suppressor geneBlotting WesternGreen Fluorescent ProteinsDown-RegulationBiologyCell LineDownregulation and upregulationCell Line TumorGeneticsmedicineCell AdhesionAnimalsHumansCell adhesionMolecular BiologyGeneTumor Suppressor ProteinsCarcinomaProteinsProtein Structure TertiaryCytoskeletal ProteinsMicroscopy FluorescenceTumor progressionImmunologyCancer researchCaco-2 CellsCarcinogenesisOncogene
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Dissolution and dissolution/permeation experiments for predicting systemic exposure following oral administration of the BCS class II drug clarithrom…

2017

In order to save time and resources in early drug development, in vitro methods that correctly predict the formulation effect on oral drug absorption are necessary. The aim of this study was to 1) evaluate various BCS class II drug formulations with in vitro methods and in vivo in order to 2) determine which in vitro method best correlates with the in vivo results. Clarithromycin served as model compound in formulations with different particle sizes and content of excipients. The performed in vitro experiments were dissolution and dissolution/permeation experiments across two types of membrane, Caco-2 cells and excised rat intestinal sheets. The in vivo study was performed in rats. The oral…

MaleCell Membrane PermeabilityChemistry PharmaceuticalAdministration OralPharmaceutical ScienceExcipient02 engineering and technologyAbsorption (skin)030226 pharmacology & pharmacyExcipients03 medical and health sciences0302 clinical medicineIn vivoClarithromycinmedicineAnimalsHumansIntestinal MucosaRats WistarSolubilityDissolutionChromatographyChemistryPermeation021001 nanoscience & nanotechnologyRatsMucusIntestinal AbsorptionSolubilityPoloxamer 407Caco-2 Cells0210 nano-technologyEx vivomedicine.drugEuropean Journal of Pharmaceutical Sciences
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Mechanistic basis for unexpected bioavailability enhancement of polyelectrolyte complexes incorporating BCS class III drugs and carrageenans

2013

The objective of this study was to investigate the potential of λ-carrageenan to work as an absorption modifying excipient in combination with formulations of BCS class 3 substances. Trospium chloride was used as a model BCS class 3 substance. Polyelectrolyte complexes of trospium and λ-carrageenan were produced by layer-by-layer complexation. A λ-carrageenan-containing formulation was administered either in capsules size 9 to rats by gavage or directly into ligated intestinal loops of rats. Exceptionally strong variations were observed in the plasma concentrations of the rats that received λ-carrageenan compared to the control group, but enhanced plasma concentrations were observed only in…

MaleCell Membrane PermeabilityNortropanesBiological AvailabilityPharmaceutical ScienceExcipientMuscarinic AntagonistsAbsorption (skin)In Vitro TechniquesBenzilatesCarrageenanTight JunctionsElectrolyteschemistry.chemical_compoundMucoadhesionmedicineAnimalsHumansIntestinal MucosaRats WistarDrug CarriersChromatographyUssing chamberReproducibility of ResultsGeneral MedicinePermeationPolyelectrolyteRatsCarrageenanBioavailabilityMucusJejunumIntestinal AbsorptionSolubilitychemistryCaco-2 CellsBiotechnologymedicine.drugEuropean Journal of Pharmaceutics and Biopharmaceutics
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Unique pharmacology of KAR-2, a potential anti-cancer agent: absorption modelling and selective mitotic spindle targeting.

2008

Abstract Bis-indols are a large group of the anti-cancer agents, which effectively arrest the uncontrolled division of the cancerous cells. Their use in clinical chemotherapy is still limited because of: (i) the non-specific targeting of the mitotic cells; (ii) low bioavailability of the drugs. KAR-2 has been identified as a tubulin binding agent which displays significantly lower cytotoxicity but favourable anti-cancer potency than its mother molecule, vinblastine. The objective of this paper, on one hand, was to show that the human intestinal epithelial Caco-2 cells, used for pharmacokinetic studies display distinct sensitivity against KAR-2 and vinblastine due to their distinct targeting…

MaleCell divisionStereochemistryPharmaceutical ScienceBiological Transport ActiveSpindle ApparatusBiologyVinblastinePermeabilityInjectionsmedicineAnimalsHumansATP Binding Cassette Transporter Subfamily B Member 1Rats WistarCytotoxicityMitosisChromatography High Pressure LiquidModels StatisticalAntineoplastic Agents PhytogenicIn vitroSpindle apparatusVinblastineRatsSpectrometry FluorescenceIntestinal AbsorptionTubulin Binding AgentBiophysicsInterphaseCaco-2 CellsAlgorithmsmedicine.drugEuropean journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences
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IVIVC in oral absorption for fenofibrate immediate release tablets using a dissolution/permeation system.

2009

ABSTRACT: The usefulness of a dissolution/permeation (D/P) system to predict the in vivo performance of solid dosage forms containing the poorly soluble drug, fenofibrate, was studied. Biorelevant dissolution media simulating the fasted and fed state conditions of the human gastrointestinal tract were used in order to simulate the effect of food on the absorption of fenofibrate. Moreover, the results obtained from the D/P system were correlated with pharmacokinetic parameters obtained following in vivo studies in rats. The in vitro parameter (amount permeated in the D/P system) reflected well the in vivo performance in rats in terms of AUC and C max of fenofibric acid. This study thus demon…

MaleChemistry PharmaceuticalPharmaceutical ScienceAdministration OralAbsorption (skin)PharmacologyDosage formPermeabilityAbsorptionIVIVCPharmacokineticsFenofibrateIn vivoOral administrationmedicineAnimalsHumansRats WistarHypolipidemic AgentsFenofibrateChemistryPermeationRatsSolubilityCaco-2 Cellsmedicine.drugTabletsJournal of pharmaceutical sciences
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