Search results for "Intestinal permeability"

showing 10 items of 40 documents

Mathematical modeling of oral absorption and bioavailability of a fluoroquinolone after its precipitation in the gastrointestinal tract

2013

The objective was to characterize the in vivo absorption and bioavailability (BA) of a low solubility, high permeability fluoroquinolone (CNV97101) that precipitates in the gastrointestinal (GI) tract by mathematical modeling approach. In situ rat intestinal perfusion studies were performed to characterize the absorption mechanism. The oral fraction absorbed in vivo was lower than the predicted based on the in situ intestinal permeability. Two additional routes of administration, intraduodenal (ID) and intraperitoneal (IP) were investigated to explore if precipitation in stomach and subsequent partial re-dissolution were the causes of the lower in vivo BA. Ex vivo precipitation studies with…

Health Toxicology and MutagenesisAdministration OralBiological AvailabilityPharmacologyToxicologyBiochemistryPermeabilityIntestinal absorptionPharmacokineticsCiprofloxacinIn vivomedicineAnimalsChemical PrecipitationChromatography High Pressure LiquidPharmacologyGastrointestinal tractIntestinal permeabilityChemistryStomachGeneral MedicineHydrogen-Ion ConcentrationModels Theoreticalmedicine.diseaseRatsBioavailabilityGastrointestinal Tractmedicine.anatomical_structureIntestinal AbsorptionNonlinear DynamicsSolubilityEx vivoFluoroquinolonesXenobiotica
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Correlation BetweenIn Vitro,In Situ, andIn Vivo Models

2008

In situIntestinal permeabilityBiochemistryIn vivoChemistrymedicineBiosimulationmedicine.diseaseIn vitroIntestinal absorptionDrug metabolismCell biology
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In-situ intestinal rat perfusions for human Fabs prediction and BCS permeability class determination: Investigation of the single-pass vs. the Doluis…

2015

Intestinal drug permeability has been recognized as a critical determinant of the fraction dose absorbed, with direct influence on bioavailability, bioequivalence and biowaiver. The purpose of this research was to compare intestinal permeability values obtained by two different intestinal rat perfusion methods: the single-pass intestinal perfusion (SPIP) model and the Doluisio (closed-loop) rat perfusion method. A list of 15 model drugs with different permeability characteristics (low, moderate, and high, as well as passively and actively absorbed) was constructed. We assessed the rat intestinal permeability of these 15 model drugs in both SPIP and the Doluisio methods, and evaluated the co…

In situMaleSingle passIntestinal permeabilitybusiness.industryPharmaceutical ScienceBioequivalencePharmacologymedicine.diseaseBiopharmaceutics Classification SystemModels BiologicalPermeabilityBioavailabilityRatsPerfusionPermeability (earth sciences)Intestinal AbsorptionPharmaceutical PreparationsmedicineAnimalsHumansIntestinal MucosaRats WistarbusinessPerfusionInternational journal of pharmaceutics
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Gliadin-mediated production of polyamines by RAW264.7 macrophages modulates intestinal epithelial permeability in vitro

2015

AbstractCeliac disease (CD) is an immune-mediated enteropathy sustained by dietary gluten in susceptible individuals, and characterized by a complex interplay between adaptive and innate responses against gluten peptides (PTG). In a recent contribution we have demonstrated that the treatment with PTG induces the expression and activity of arginase in both murine macrophages and human monocytes from healthy subjects, thus suggesting a role for arginine and its metabolites in gluten-triggered response of these cells. Here we further explore this field, by addressing the effects of PTG on polyamine synthesis and release in murine RAW264.7 macrophages, and how they affect epithelial permeabilit…

Intestinal permeabilityArginineArginaseInflammationBiologyIntestinal permeabilitymedicine.diseaseIn vitroGliadinCell biologyArginasechemistry.chemical_compoundBiochemistrychemistrymedicinePutrescinebiology.proteinPolyaminesMolecular MedicineCeliac diseaseSecretionmedicine.symptomGliadinMolecular BiologyBiochimica et Biophysica Acta (BBA) - Molecular Basis of Disease
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Cytotoxic effect of As(III) in Caco-2 cells and evaluation of its human intestinal permeability.

2005

Inorganic arsenic has been classified as a carcinogen for humans (Group I). However, its transit across the human intestinal epithelium has not been characterized. Using Caco-2 cells, the thiol-redox balance and apparent permeability coefficients (P(app)) for As(III) in the apical to basolateral (AP-BL) and basolateral to apical (BL-AP) direction were evaluated. After As(III) exposure, GSH-induced synthesis was observed, increasing the GSH/GSSG ratio by elevating the As(III) concentration. The AP-BL permeabilities decreased as the As(III) concentrations increased, indicating the existence of a mediated transport mechanism. The (BL-AP)/(AP-BL) permeability ratios were higher than unity, sugg…

Intestinal permeabilityArsenic toxicityGlutathione DisulfideChemistryGeneral MedicineGlutathioneToxicologymedicine.diseaseMolecular biologyIntestinal epitheliumGlutathionePermeabilityArsenicMitochondriachemistry.chemical_compoundBiochemistryPermeability (electromagnetism)Caco-2Mediated transportmedicineHumansCaco-2 CellsIntestinal MucosaOxidation-ReductionCarcinogenToxicology in vitro : an international journal published in association with BIBRA
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Caco‐2 versus Caco‐2/HT29‐MTX Co‐cultured Cell Lines: Permeabilities Via Diffusion, Inside‐ and Outside‐Directed Carrier‐Mediated Transport

2000

Abstract Purpose The objective of this study was a systematic characterization and evaluation of cell culture models based on mixtures of Caco‐2/HT29‐MTX co‐cultures for their use in screening for drug absorption and intestinal permeability in comparison to the properties of the respective mono‐cultures. Methods Co‐cultures of Caco‐2 cells (absorptive‐type) and HT29‐MTX cells (goblet‐type) were set up. Three different co‐cultures (initial seeding ratios Caco‐2/HT29‐MTX: 90/10, 70/30, and 50/50) were grown on permeable filter supports, and monolayers were used for permeability studies with model compounds for paracellular absorption (atenolol, furosemide, H334/75, mannitol, terbutaline), tra…

Intestinal permeabilityPharmaceutical Sciencemedicine.diseasedigestive systemIntestinal absorptionchemistry.chemical_compoundBiochemistrychemistryCaco-2Cell culturePermeability (electromagnetism)Paracellular transportmedicineBiophysicsTranscellularTalinololJournal of Pharmaceutical Sciences
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The adenosine deaminase inhibitor erythro-9-[2-hydroxyl-3-nonyl]-adenine decreases intestinal permeability and protects against experimental sepsis: …

2008

Introduction The treatment of septic conditions in critically ill patients is still one of medicine's major challenges. Cyclic nucleotides, adenosine and its receptors play a pivotal role in the regulation of inflammatory responses and in limiting inflammatory tissue destruction. The aim of this study was to verify the hypothesis that adenosine deaminase-1 and cyclic guanosine monophosphate-stimulated phosphodiesterase inhibition by erythro-9-[2-hydroxyl-3-nonyl]-adenine could be beneficial in experimental endotoxicosis/sepsis. Method We used two established animal models for endotoxicosis and sepsis. Twenty-four male Wistar rats that had been given intravenous endotoxin (Escherichia coli l…

LipopolysaccharidesMaleLipopolysaccharideAdenosine DeaminasePharmacologyCritical Care and Intensive Care MedicinePermeabilitySepsisExcretionMicechemistry.chemical_compoundSepsisAdenosine Deaminase InhibitorsmedicineAnimalsProspective StudiesRats WistarPhosphodiesterase inhibitorIntestinal permeabilitybusiness.industrySeptic shockAdenineResearchmedicine.diseaseAdenosineRatsIntestinal AbsorptionchemistryImmunologyFemaleAdenosine Deaminase Inhibitorbusinessmedicine.drugCritical Care
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Genetic susceptibility of increased intestinal permeability is associated with progressive liver disease and diabetes in patients with non-alcoholic …

2020

Abstract Background and aim Increased intestinal permeability plays a key role in the pathogenesis of fat deposition in the liver. The aim of our study was to assess whether a single nucleotide polymorphism of protein tyrosine phosphatase non-receptor type 2 (PTPN2) (rs2542151 T→G), involved in intestinal permeability, may be associated with non-alcoholic fatty liver disease (NAFLD) and type 2 diabetes mellitus (T2DM). Methods and results We recruited a prospective cohort of NAFLD subjects and matched controls. Clinical data, PTPN2 genotype and laboratory data were collected for each patient. Results were stratified according to liver histology and diabetes. We enrolled 566 cases and 377 co…

Liver CirrhosisMaleEndocrinology Diabetes and MetabolismMedicine (miscellaneous)030204 cardiovascular system & hematologySeverity of Illness IndexGastroenterologyLiver disease0302 clinical medicineNon-alcoholic Fatty Liver DiseaseRisk FactorsNonalcoholic fatty liver diseasePrevalenceProspective StudiesProtein Tyrosine Phosphatase Non-Receptor Type 2Nutrition and Dieteticsmedicine.diagnostic_testFatty liverMiddle AgedPhenotypeItalyLiver biopsyFemaleCardiology and Cardiovascular MedicineAdultmedicine.medical_specialtySettore MED/12 - GASTROENTEROLOGIA030209 endocrinology & metabolismIntestinal permeabilityPolymorphism Single NucleotideRisk AssessmentPermeability03 medical and health sciencesInternal medicineDiabetes mellitusmedicineGenetic susceptibilityHumansNonalcoholic fatty liver diseaseGenetic Predisposition to DiseaseGenetic Association Studiesbusiness.industryType 2 Diabetes Mellitusmedicine.diseaseCross-Sectional StudiesDiabetes Mellitus Type 2Intestinal AbsorptionCase-Control StudiesSteatosisSteatohepatitisbusiness
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Pretreatment with potent P-glycoprotein ligands may increase intestinal secretion in rats.

2001

The expression of P-glycoprotein is induced in cell cultures upon exposure to various inducers. Therefore, the aim of the present study was to evaluate the in-vivo relevance of this observation, i.e. the influence of chronic pretreatments with selected drugs -- all of which are ligands to P-glycoprotein (P-gp) as demonstrated in radioligand binding studies and all of which have some or a considerable effect on P-gp expression in Caco-2 cells -- on the effective intestinal permeabilities of the model compound talinolol in rats employing in-situ single-pass intestinal perfusion of three different gut segments. Talinolol was selected, because it shows high selectivity for one of the exsorptive…

MaleColonDuodenumAdrenergic beta-AntagonistsPharmaceutical ScienceBiologyPharmacologyLigandsVinblastineJejunumPropanolamineschemistry.chemical_compoundmedicineAnimalsATP Binding Cassette Transporter Subfamily B Member 1Rats WistarP-glycoproteinIntestinal permeabilityStereoisomerismmedicine.diseaseCalcium Channel BlockersAntineoplastic Agents PhytogenicVinblastineRatsmedicine.anatomical_structureJejunumchemistryBiochemistryVerapamilDuodenumbiology.proteinVerapamilPerfusionTalinololmedicine.drugEuropean journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences
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Investigating drug absorption from the colon: Single-pass vs. Doluisio approaches to in-situ rat large-intestinal perfusion

2017

Traditionally, the colon is considered a secondary intestinal segment in the drug absorption process. However, in many cases the role of colonic drug permeability cannot be overlooked. The purpose of this research was to compare colon permeability data obtained using two different rat perfusion methods the single-pass intestinal perfusion (SPIP) approach and the closed-loop (Doluisio) perfusion model. A list of 14 structurally diverse model drugs was constructed, and their rat colon permeability was studied using the two methods. The two sets of results were compared to each other, and were evaluated vs. in-vitro, ex-vivo, and in-vivo literature values. The SPIP and the Doluisio results exh…

MaleIn situAbsorption (pharmacology)Pathologymedicine.medical_specialtySingle passColonPharmaceutical Science02 engineering and technology030226 pharmacology & pharmacyPermeability03 medical and health sciences0302 clinical medicinemedicineAnimalsHumansLarge intestineRats WistarIntestinal permeabilitybusiness.industryLarge intestinal021001 nanoscience & nanotechnologymedicine.diseaseRatsPerfusionmedicine.anatomical_structureIntestinal AbsorptionPharmaceutical PreparationsLipophilicityCaco-2 Cells0210 nano-technologybusinessPerfusionBiomedical engineeringInternational Journal of Pharmaceutics
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