Search results for "Biological availability"

showing 10 items of 182 documents

Effect of simulated gastrointestinal digestion on sialic acid and gangliosides present in human milk and infant formulas.

2011

The effects of simulated gastrointestinal digestion upon sialic acid and gangliosides in infant and follow-on formulas and human milk, as well as their bioaccessibility, have been evaluated. The gastric stage is the step that causes a greater decrease in sialic acid and ganglioside contents. The intestinal stage only decreases the total and individual contents of gangliosides. After gastrointestinal digestion, neither sialic acid nor gangliosides were found in the nonbioaccessible fraction. The highest bioaccessibility (100 × content in soluble fraction after gastrointestinal digestion/total content) of sialic acid is found in human milk (87%), followed by infant formula (77%) and follow-on…

Biological AvailabilityBiologyModels BiologicalGastrointestinal digestionchemistry.chemical_compoundGangliosidesmedicineHumansFood scienceGangliosideMilk HumanStomachStage onlyInfantGeneral ChemistryInfant FormulaN-Acetylneuraminic AcidSialic acidBioavailabilityGastrointestinal Tractmedicine.anatomical_structurechemistryInfant formulaDigestionGeneral Agricultural and Biological SciencesDigestionJournal of agricultural and food chemistry
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Poloxamer/sodium cholate co-formulation for micellar encapsulation of Doxorubicin with high efficiency for intracellular delivery: an in-vitro bioava…

2020

Abstract Hypothesis Doxorubicin hydrochloride (DX) is widely used as a chemotherapeutic agent, though its severe side-effects limit its clinical use. A way to overcome these limitations is to increase DX latency through encapsulation in suitable carriers. However, DX has a high solubility in water, hindering encapsulation. The formulation of DX with sodium cholate (NaC) will reduce aqueous solubility through charge neutralization and hydrophobic interactions thus facilitating DX encapsulation into poloxamer (F127) micelles, increasing drug latency. Experiments DX/NaC/PEO-PPO-PEO triblock copolymer (F127) formulations with high DX content (DX-PMs) have been prepared and characterized by scat…

Biological AvailabilityPoloxamerbile salts; confocal microscopy; Doxorubicin hydrochloride; drug-delivery; PEO-PPO-PEO block copolymers; pluronics; tumour cell lines02 engineering and technologyconfocal microscopypluronics010402 general chemistry01 natural sciencesMicellePolyethylene GlycolsBiomaterialsHydrophobic effectColloid and Surface ChemistryPEO-PPO-PEO block copolymersbile saltsSolubilitySodium CholateMicellesChemistryDoxorubicin hydrochloridePoloxamerSodium Cholate021001 nanoscience & nanotechnologydrug-delivery0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsDoxorubicinDrug deliveryBiophysicsDoxorubicin Hydrochloridetumour cell lines0210 nano-technologyIntracellular
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Calcium, Iron, and Zinc Uptake from Digests of Infant Formulas by Caco-2 Cells

2001

Our aim was to estimate the bioavailability of calcium, iron, and zinc from infant formulas using a model that includes in vitro digestion and a Caco-2 cell culture to estimate the uptake. The cell culture conditions were selected, and uptake assays were carried out first with calcium, iron, and zinc standard solutions, and then with the soluble fraction of enzymatic digests of an adapted milk-based and a soy-based infant formula. It was not possible to measure the uptake of calcium, iron, and zinc from standard solutions added to the cell cultures in amounts similar to those present in infant formula digests with our method. The fact that it was, however, possible in the case of enzymatic …

Biological Availabilitychemistry.chemical_elementZincCalciumModels BiologicalHumansFood sciencechemistry.chemical_classificationInfant NewbornInfantGeneral ChemistryBioavailabilityCalcium DietaryZincEnzymeIntestinal AbsorptionBiochemistrychemistryInfant formulaCaco-2Cell cultureInfant FoodCaco-2 CellsGeneral Agricultural and Biological SciencesDigestionIron DietaryJournal of Agricultural and Food Chemistry
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Biowaiver Monograph for Immediate-Release Solid Oral Dosage Forms: Bisoprolol Fumarate

2014

Abstract Literature data relevant to the decision to allow a waiver of in vivo bioequivalence (BE) testing for the approval of immediate-release (IR) solid oral dosage forms containing bisoprolol as the sole active pharmaceutical ingredient (API) are reviewed. Bisoprolol is classified as a Class I API according to the current Biopharmaceutics Classification System (BCS). In addition to the BCS class, its therapeutic index, pharmacokinetic properties, data related to the possibility of excipient interactions, and reported BE/bioavailability problems are taken into consideration. Qualitative compositions of IR tablet dosage forms of bisoprolol with a marketing authorization (MA) in ICH (Inter…

Bisoprolol FumarateCell Membrane PermeabilityAdrenergic beta-AntagonistsBiological AvailabilityPharmaceutical ScienceExcipientPharmacologyBioequivalenceDosage formBiopharmaceuticsExcipientsmedicineBisoprololHumansTissue DistributionBiotransformationChromatography High Pressure LiquidHeart FailureActive ingredientChemistryStereoisomerismHydrogen-Ion ConcentrationBiopharmaceutics Classification SystemBioavailabilityIntestinal AbsorptionSolubilityTherapeutic EquivalencyBisoprololmedicine.drugJournal of Pharmaceutical Sciences
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An automatic flow-through system for exploration of the human bioaccessibility of endocrine disrupting compounds from microplastics

2021

This article reports on the first attempt towards investigating the leaching rates in the human gastrointestinal (GI) tract of plastic-borne contaminants that can be ingested accidentally using physiologically relevant body fluids. Oral bioaccessibility under fasted and fed states was determined in dynamic mode exploiting an automatic flow setup. The flow system is able to mimic the fast uptake of the released species from the polymeric matrix by absorption in the human digestive system by the in-line removal of the leached species. Complex GI extractants based on the Unified Bioaccessibility Method (UBM, fasted state) and Versantvoort test (fed-state) were brought through a microplastic-lo…

Bisphenol AMicroplasticsAntioxidantMicroplasticsmedicine.medical_treatmentBiological AvailabilityAbsorption (skin)Endocrine Disruptors010501 environmental sciences01 natural sciencesBiochemistryAnalytical Chemistrychemistry.chemical_compoundElectrochemistrymedicineHumansSoil PollutantsEnvironmental ChemistrySpectroscopy0105 earth and related environmental sciencesChromatographySolid Phase Extraction010401 analytical chemistryExtraction (chemistry)PlasticizerContamination0104 chemical sciencesKineticschemistryLeaching (metallurgy)Plastics
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Biowaiver Monograph for Immediate-Release Solid Oral Dosage Forms: Moxifloxacin Hydrochloride.

2020

Abstract In this monograph, literature data is reviewed to evaluate the feasibility of waiving in vivo bioequivalence testing and instead applying the Biopharmaceutics Classification System (BCS) based methods to the approval of immediate-release solid oral dosage forms containing moxifloxacin hydrochloride as the sole active pharmaceutical ingredient. To facilitate the feasibility decision, solubility and permeability and dissolution characteristics in the context of the BCS, therapeutic index, therapeutic use, pharmacokinetic parameters, bioequivalence/bioavailability issues, drug-excipient interactions and other relevant data were taken into consideration. Moxifloxacin is a BCS class I d…

Break pointBiowaiverMoxifloxacinPharmaceutical ScienceAdministration OralBiological AvailabilityContext (language use)02 engineering and technologyPharmacologyBioequivalenceMoxifloxacin hydrochloride030226 pharmacology & pharmacyDosage formMoxifloxacin hydrochloridePermeabilityBiopharmaceutics03 medical and health sciences0302 clinical medicineMoxifloxacinMedicinePharmacokineticsTherapeutic indexActive ingredientDosage Formsbusiness.industryBiopharmaceutics Classification System021001 nanoscience & nanotechnologyBiopharmaceutics Classification SystemBioavailabilityPharmacodynamicsSolubilityTherapeutic Equivalency0210 nano-technologybusinessmedicine.drugJournal of pharmaceutical sciences
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Immunomodulation and Anti-inflammatory Roles of Polyphenols as Anticancer Agents

2011

Cancers are the largest cause of mortality and morbidity in industrialized countries. Several new concepts have emerged in relation to mechanisms that contribute to the regulation of carcinogenesis processes and associated inflammatory effects such as the modulation of innate immune cells and adaptive immune cells that could infiltrate the tumor. In the tumor microenvironment, there is a delicate balance between antitumor immunity and tumor-originated proinflammatory activity, which weaken antitumor immunity. Consequently; modulation of immune cells and inflammatory processes represent attractive targets for therapeutic intervention in malignant diseases with the goal to restore the sensiti…

Cancer ResearchBiological AvailabilityInflammationBiologymedicine.disease_causeAntioxidantsProinflammatory cytokineImmunomodulationImmune systemNeoplasmsmedicineAnimalsHumansPharmacologyTumor microenvironmentInnate immune systemAnti-Inflammatory Agents Non-SteroidalPolyphenolsfood and beveragesAntineoplastic Agents PhytogenicTumor progressionCancer cellImmunologyMolecular Medicinemedicine.symptomCarcinogenesisAnti-Cancer Agents in Medicinal Chemistry
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Dose Responsive Effects of Subcutaneous Pentosan Polysulfate Injection in Mucopolysaccharidosis Type VI Rats and Comparison to Oral Treatment

2014

Background We previously demonstrated the benefits of daily, oral pentosan polysulfate (PPS) treatment in a rat model of mucopolysaccharidosis (MPS) type VI. Herein we compare these effects to once weekly, subcutaneous (s.c.) injection. The bioavailability of injected PPS is greater than oral, suggesting better delivery to difficult tissues such as bone and cartilage. Injected PPS also effectively treats osteoarthritis in animals, and has shown success in osteoarthritis patients. Methodology/principal findings One-month-old MPS VI rats were given once weekly s.c. injections of PPS (1, 2 and 4 mg/kg, human equivalent dose (HED)), or daily oral PPS (4 mg/kg HED) for 6 months. Serum inflammato…

Cartilage ArticularMaleMucopolysaccharidosisMucopolysaccharidosis type VIlcsh:MedicineAdministration OralOsteoarthritisOral administrationMedicine and Health SciencesFemurGrowth Platelcsh:Sciencehealth care economics and organizationsGlycosaminoglycansPentosan Sulfuric PolyesterMucopolysaccharidosis VIMultidisciplinaryMucopolysaccharidosis VIPentosan polysulfateBiomechanical Phenomena3. Good healthFemaleAnatomyResearch Articlemedicine.drugmedicine.medical_specialtyInflammatory DiseasesInjections SubcutaneousMovementeducationUrologyBiological AvailabilityResearch and Analysis MethodsDrug Administration ScheduleAutosomal Recessive DiseasesGeneticsmedicineAnimalsAnimal Models of DiseaseBoneAdverse effectMolecular BiologyClinical GeneticsDose-Response Relationship Drugbusiness.industrylcsh:RTherapeutic effectBiology and Life SciencesMucopolysaccharidosesmedicine.diseaseSpineRatsSurgeryAnimal Studieslcsh:QVeterinary ScienceTomography X-Ray ComputedbusinessPLoS ONE
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An approach to As(III) and As(V) bioavailability studies with Caco-2 cells

2005

Foods and drinking water are the main sources of human exposure to inorganic arsenic [As(III) and As(V)]. After oral ingestion, the intestinal epithelium is the first barrier to absorption of these species. A human intestinal cell line (Caco-2) was used to evaluate cell retention and transport of As(III) (15.6-156.0 microM) and/or As(V) (15.4-170.6 microM). Cell monolayer integrity, cell viability, membrane damage and effects on cell metabolism were evaluated. Only the highest concentrations assayed [As(III): 156.0 microM; As(V): 170.6 microM] produced a cytotoxic effect with different cellular targets: As(III) altered the permeability of tight junctions, and As(V) caused uncoupling of the …

Cell SurvivalChemistryArsenateRespiratory chainBiological AvailabilityTetrazolium SaltsGeneral MedicineAbsorption (skin)ToxicologyIntestinal epitheliumMolecular biologyArsenicBioavailabilityThiazoleschemistry.chemical_compoundIntestinal AbsorptionBiochemistryCaco-2Electric ImpedanceHumansViability assayCaco-2 CellsIntestinal MucosaArseniteToxicology in Vitro
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Study of the cytotoxic activity of beauvericin and fusaproliferin and bioavailability in vitro on Caco-2 cells.

2010

Abstract Beauvericin (BEA) is a cyclohexadepsipeptide mycotoxin which has insecticidal properties and produces cytotoxic effects in mammalian cells. Fusaproliferin (FUS) is a mycotoxin that has toxic activity against brine shrimp, insect cells, and teratogenic effects on chicken embryos. The aim of this study was to determine the cytotoxicity of BEA and FUS in human epithelial colorectal adenocarcinoma HT-29 and Caco-2 cells, the transepithelial transport and the bioavailability using Caco-2 cells as a simulated in vitro gastrointestinal model of the human intestinal epithelium. The inhibitory concentration (IC 50 ) evidenced by BEA in the Caco-2 cells was 24.6 and 12.7 μM at 24 and 48 h ex…

Cell SurvivalTerpenesBiological AvailabilityGeneral MedicinePharmacologyBiologyToxicologyIntestinal epitheliumIn vitroBeauvericinBioavailabilitychemistry.chemical_compoundInhibitory Concentration 50chemistryCaco-2DepsipeptidesCytotoxic T cellHumansCaco-2 CellsDrug Screening Assays AntitumorCytotoxicityMycotoxinFood ScienceChromatography LiquidFood and chemical toxicology : an international journal published for the British Industrial Biological Research Association
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