Search results for "Biopharmaceutics Classification System"

showing 10 items of 30 documents

Biowaiver monograph for immediate-release solid oral dosage forms: acetylsalicylic acid.

2012

A biowaiver monograph for acetylsalicylic acid (ASA) is presented. Literature and experimental data indicate that ASA is a highly soluble and highly permeable drug, leading to assignment of this active pharmaceutical ingredient (API) to Class I of the Biopharmaceutics Classification System (BCS). Limited bioequivalence (BE) studies reported in the literature indicate that products that have been tested are bioequivalent. Most of the excipients used in products with a marketing authorization in Europe are not considered to have an impact on gastrointestinal motility or permeability. Furthermore, ASA has a wide therapeutic index. Thus, the risks to the patient that might occur if a nonbioequi…

Drugmedia_common.quotation_subjectPharmaceutical ScienceAdministration OralBiological AvailabilityPharmacologyBioequivalenceMarketing authorizationDosage formDrug StabilityFibrinolytic AgentsAnimalsHumansCyclooxygenase Inhibitorsmedia_commonActive ingredientAspirinChemistryAnti-Inflammatory Agents Non-SteroidalBiopharmaceutics Classification SystemSolubilityTherapeutic EquivalencyPlatelet aggregation inhibitorCaco-2 CellsFibrinolytic agentPlatelet Aggregation InhibitorsTabletsJournal of pharmaceutical sciences
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Biowaiver Monographs for Immediate Release Solid Oral Dosage Forms: Cephalexin Monohydrate.

2019

Literature data and results of experimental studies relevant to the decision to allow waiver of bioequivalence studies in humans for the approval of immediate release solid oral dosage forms containing cephalexin monohydrate are presented. Solubility studies were performed in accordance with the current biowaiver guidelines of the Food and Drug Administration, World Health Organization and European Medicines Agency, taking the degradation at some pH values into consideration. Together with solubility and permeability data for cephalexin monohydrate from the literature, it was demonstrated to be a Biopharmaceutics Classification System Class 1 drug. The pharmacokinetic behavior, results of b…

Drugmedia_common.quotation_subjectPharmaceutical ScienceExcipientAdministration OralBiological Availability02 engineering and technologyBioequivalencePharmacology030226 pharmacology & pharmacyDosage formPermeabilityBiopharmaceutics03 medical and health sciences0302 clinical medicinemedicineBiopharmaceutics Classification System (BCS)HumansRegulatory scienceLADME characteristicsmedia_commonActive ingredientcephalexin monohydrateDosage FormsbioequivalenceCephalexinexcipientsbusiness.industryBiopharmaceutics021001 nanoscience & nanotechnologyBiopharmaceutics Classification SystemSolubilityTherapeutic Equivalencyregulatory science0210 nano-technologybusinessmedicine.drugJournal of pharmaceutical sciences
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In vivo measurement of gastric fluid volume in anesthetized dogs

2020

Abstract The drug solubility is critical for the Biopharmaceutics Classification System (BCS), yet the criteria for solubility have not been precisely defined for dogs. In particular, the gastric fluid volume (GFV) of dogs which is used to measure the solubility has not been quantified in vivo. The aim of the work is to measure the GFV using magnetic resonance imaging (MRI) from 12 Beagle dogs weighing 9–12 kg (6 male and 6 female). We found that the average GFV within this weight range was 24.0 ± 4.2 mL. The result can be used for the BCS studies of canine drugs and also serves as a reference for other species.

Gastric fluidmedicine.diagnostic_testbusiness.industryPharmaceutical ScienceMagnetic resonance imaging02 engineering and technology021001 nanoscience & nanotechnologyWeight rangeBiopharmaceutics Classification System030226 pharmacology & pharmacyBeagle03 medical and health sciences0302 clinical medicineVolume (thermodynamics)In vivoMedicineSolubility0210 nano-technologybusinessBiomedical engineeringJournal of Drug Delivery Science and Technology
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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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Integrating theoretical and experimental permeability estimations for provisional biopharmaceutical classification: Application to the WHO essential …

2018

The accuracy of the provisional estimation of the Biopharmaceutics Classification System (BCS) is heavily influenced by the permeability measurement. In this study, several theoretical and experimental models currently employed for BCS permeability classification have been analysed. The experimental models included the in situ rat intestinal perfusion, the ex vivo rat intestinal tissue in an Ussing chamber, the MDCK and Caco-2 cell monolayers, and the parallel artificial membrane (PAMPA). The theoretical models included the octanol-water partition coefficient and the QSPeR (Quantitative Structure-Permeability Relationship) model recently developed. For model validation, a dataset of 43 comp…

In vitro dissolutionTheoretical modelsPharmaceutical Science02 engineering and technologyBioequivalenceIn Vitro TechniquesWorld Health Organization030226 pharmacology & pharmacyModels BiologicalDosage formPermeabilityBiopharmaceuticsMadin Darby Canine Kidney Cells03 medical and health sciences0302 clinical medicineDogsAnimalsHumansPharmacology (medical)Intestinal MucosaMathematicsPharmacologyGeneral Medicine021001 nanoscience & nanotechnologyBiopharmaceutics Classification SystemBioavailabilityRatsPermeability (earth sciences)BiopharmaceuticalCaco-2 Cells0210 nano-technologyBiological systemDrugs EssentialBiopharmaceuticsdrug disposition
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Segmental-dependent permeability throughout the small intestine following oral drug administration: Single-pass vs. Doluisio approach to in-situ rat …

2016

Abstract Intestinal drug permeability is position dependent and pertains to a specific point along the intestinal membrane, and the resulted segmental-dependent permeability phenomenon has been recognized as a critical factor in the overall absorption of drug following oral administration. The aim of this research was to compare segmental-dependent permeability data obtained from two different rat intestinal perfusion approaches: the single-pass intestinal perfusion (SPIP) model and the closed-loop (Doluisio) rat perfusion method. The rat intestinal permeability of 12 model drugs with different permeability characteristics (low, moderate, and high, as well as passively and actively absorbed…

MaleIn situDrugmedia_common.quotation_subjectAdministration OralPharmaceutical Science02 engineering and technologyPharmacology030226 pharmacology & pharmacyPermeabilityJejunum03 medical and health sciences0302 clinical medicineIleumOral administrationmedicineAnimalsRats Wistarmedia_commonIntestinal permeabilitybusiness.industry021001 nanoscience & nanotechnologyBiopharmaceutics Classification Systemmedicine.diseaseSmall intestineRatsPerfusionJejunummedicine.anatomical_structureIntestinal AbsorptionPharmaceutical Preparations0210 nano-technologybusinessPerfusionInternational Journal of Pharmaceutics
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Biowaiver Monograph for Immediate-Release Solid Oral Dosage Forms: Ondansetron.

2019

Literature data pertaining to the physicochemical, pharmaceutical, and pharmacokinetic properties of ondansetron hydrochloride dihydrate are reviewed to arrive at a decision on whether a marketing authorization of an immediate release (IR) solid oral dosage form can be approved based on a Biopharmaceutics Classification System (BCS)-based biowaiver. Ondansetron, a 5HT3 receptor antagonist, is used at doses ranging from 4 mg to 24 mg in the management of nausea and vomiting associated with chemotherapy, radiotherapy, and postoperative treatment. It is a weak base and thus exhibits pH-dependent solubility. However, it is able to meet the criteria of "high solubility" as well as "high permeabi…

NauseaPharmaceutical ScienceAdministration OralBiological Availabilitydissolution02 engineering and technologyBioequivalencePharmacology030226 pharmacology & pharmacyDosage formBiopharmaceuticsOndansetronExcipients03 medical and health sciencesondansetron hydrochloride dihydrate0302 clinical medicinePharmacokineticsMedicineHumansDissolution testingDosage FormsOndansetron hydrochloridebusiness.industrybiopharmaceutics classification system (BCS)solubility021001 nanoscience & nanotechnologyBiopharmaceutics Classification SystemOndansetronbiowaiverTherapeutic Equivalencymedicine.symptompermeability0210 nano-technologybusinessmedicine.drugTablets
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Biowaiver Monographs for Immediate-Release Solid Oral Dosage Forms: Folic Acid.

2018

This work presents a review of literature and experimental data relevant to the possibility of waiving pharmacokinetic bioequivalence studies in human volunteers for approval of immediate-release solid oral pharmaceutical forms containing folic acid as the single active pharmaceutical ingredient. For dosage forms containing 5 mg folic acid, the highest dose strength on the World Health Organization Essential Medicines List, the dose/solubility ratio calculated from solubility studies was higher than 250 mL, corresponding to a classification as "not highly soluble." Small, physiological doses of folic acid (≤320 μg) seem to be absorbed completely via active transport, but permeability data f…

Pharmaceutical ScienceAdministration OralBiological AvailabilityBioequivalencePharmacology030226 pharmacology & pharmacyDosage formPermeabilityBiopharmaceuticsExcipients03 medical and health sciences0302 clinical medicineFolic AcidPharmacokineticsCell Line TumorHumansSolubilityActive ingredientDosage FormsChemistryBiopharmaceutics Classification SystemBioavailabilityFolic acidSolubilityTherapeutic Equivalency030220 oncology & carcinogenesisCaco-2 CellsJournal of pharmaceutical sciences
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Bioequivalence of oral products and the biopharmaceutics classification system: science, regulation, and public policy.

2011

The demonstration of bioequivalence (BE) is an essential requirement for ensuring that patients receive a product that performs as indicated by the label. The BE standard for a particular product is set by its innovator, and this standard must subsequently be matched by generic drug products. The Biopharmaceutics Classification System (BCS) sets a scientific basis for an improved BE standard for immediate-release solid oral dosage forms. In this paper, we discuss BE and the BCS, as well as the issues that are currently relevant to BE as a pharmaceutical product standard.

Pharmacologybusiness.industryBiopharmaceuticsPublic policyAdministration OralBioequivalencePharmacologyBiopharmaceutics Classification SystemhumanitiesArticleBiopharmaceuticsPolicyRisk analysis (engineering)Pharmaceutical PreparationsTherapeutic EquivalencyInnovatorGeneric drugMedicineDrugs GenericHumansPharmacology (medical)Product (category theory)Product standardbusinessClinical pharmacology and therapeutics
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Formulation predictive dissolution (fPD) testing to advance oral drug product development: an introduction to the US FDA funded ‘21st Century BA/BE’ …

2018

Over the past decade, formulation predictive dissolution (fPD) testing has gained increasing attention. Another mindset is pushed forward where scientists in our field are more confident to explore the in vivo behavior of an oral drug product by performing predictive in vitro dissolution studies. Similarly, there is an increasing interest in the application of modern computational fluid dynamics (CFD) frameworks and high-performance computing platforms to study the local processes underlying absorption within the gastrointestinal (GI) tract. In that way, CFD and computing platforms both can inform future PBPK-based in silico frameworks and determine the GI-motility-driven hydrodynamic impac…

Physiologically based pharmacokinetic modellingBioavailabilityComputer scienceManometryDrug CompoundingAdministration OralPharmaceutical Science02 engineering and technologyBioequivalenceComputational fluid dynamics030226 pharmacology & pharmacyArticleDOSAGE FORMSINDUCED VARIABILITY03 medical and health sciences0302 clinical medicineBIOPHARMACEUTICS CLASSIFICATION-SYSTEMABSORPTIONHumansDissolution testingOral absorptionPharmacology & PharmacyDissolutionIN-VIVO DISSOLUTIONIn vivo dissolutionBioequivalenceScience & TechnologyWORKSHOP REPORTUnited States Food and Drug Administrationbusiness.industryGASTROINTESTINAL SIMULATOR GISVITRO DISSOLUTION021001 nanoscience & nanotechnologyBiopharmaceutics Classification SystemUnited StatesMODELDrug LiberationNew product developmentPredictive powerDIFFUSION-CONTROLLED DISSOLUTIONBiochemical engineering0210 nano-technologybusinessLife Sciences & BiomedicineOral retinoidMRI
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