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1.
Braz. J. Pharm. Sci. (Online) ; 59: e23171, 2023. tab, graf
Artigo em Inglês | LILACS | ID: biblio-1520308

RESUMO

Abstract Albendazole is an anthelmintic drug commonly used in parenchymal neurocysticercosis and cystic echinococcosis. The aim of this study was to explore whether disparities in the dissolution profiles of albendazole products lead to significant differences in pharmacokinetic parameters. Three generic products and the innovator were evaluated in vitro. Quality control tests were performed, and dissolution profiles were obtained according to the Mexican Pharmacopeia. Although all products passed the quality control tests, none of the generic products complied with the similarity factor (f 2). The product with the lowest f 2 value in respect to the reference was chosen for in vivo evaluation. The study was carried out in 12 healthy volunteers who received 400 mg of the generic or reference product according to a crossover design. No significant differences were found in Cmax and AUC for albendazole and its main metabolite, albendazole sulfoxide, between products. Two absorption peaks were observed in the pharmacokinetic profile, and a population (22%) with different absorption rates and delay time for the the second peak was found. Based on the results, due to the high variability in the absorption process the differences observed in vitro could not be observed in vivo.


Assuntos
Humanos , Masculino , Feminino , Técnicas In Vitro/métodos , Farmacocinética , Albendazol/análise , Dissolução , Controle de Qualidade , Preparações Farmacêuticas/administração & dosagem , Neurocisticercose/patologia
2.
Expert Opin Drug Deliv ; 19(6): 671-684, 2022 06.
Artigo em Inglês | MEDLINE | ID: mdl-35603724

RESUMO

INTRODUCTION: Biopredictive release tests are commonly used in the evaluation of oral medicines. They support decision-making in formulation development and allow predictions of the expected in-vivo performances. So far, there is limited experience in the application of these methodologies to injectable drug products. AREAS COVERED: Parenteral drug products cover a variety of dosage forms and administration sites, including subcutaneous, intramuscular, and intravenous injections. In this area, developing biopredictive and biorelevant methodologies often confronts us with unique challenges and knowledge gaps. Here, we provide a formulation-centric approach and explain the key considerations and workflow when designing biopredictive assays. Also, we outline the key role of computational methods in achieving clinical relevance and put all considerations into context using liposomal nanomedicines as an example. EXPERT OPINION: Biopredictive tools are the need of the hour to exploit the tremendous opportunities of injectable drug products. A growing number of biopharmaceuticals such as peptides, proteins, and nucleic acids require different strategies and a better understanding of the influences on drug absorption. Here, our design strategy must maintain the balance between robustness and complexity required for effective formulation development.


Assuntos
Biofarmácia , Modelos Biológicos , Administração Oral , Biofarmácia/métodos , Liberação Controlada de Fármacos , Injeções , Preparações Farmacêuticas , Solubilidade
3.
Pharmaceutics ; 13(4)2021 Apr 12.
Artigo em Inglês | MEDLINE | ID: mdl-33921404

RESUMO

Rutin is the rutinose conjugate of quercetin. It presents several biological activities and is the major flavonoid in the hydroalcoholic extract of the calyces of Physalis peruviana L. It also shows hypoglycemic activity after oral administration. The aim of this work was to study the matrix effects of the extract from P. peruviana calyces on the pharmacokinetics of rutin and its metabolites in Wistar rats, using non-compartmental and population pharmacokinetic analyses. A pharmacokinetic study was performed after intravenous and oral administration of different doses of pure rutin and the extract. In the non-compartmental analysis, it was found that rutin from the extract exhibited higher distribution and clearance, as well as an 11-fold increase in the bioavailability of its active metabolites. A population pharmacokinetic model was also carried out with two compartments, double absorption and linear elimination, in which the extract and the doses were the covariates involved. This model correctly described the differences observed between rutin as a pure compound and rutin from the extract, including the dose dependency.

4.
São Paulo; s.n; s.n; 2014. 257 p. tab, graf, ilus.
Tese em Português | LILACS | ID: biblio-836932

RESUMO

A correlação in vitro - in vivo (CIVIV) refere-se ao estabelecimento de uma relação racional entre uma propriedade in vitro de uma forma farmacêutica (FF) e uma característica biológica, ou parâmetros derivados destas, produzidas a partir da absorção do fármaco, liberado por uma FF. Para o desenvolvimento de uma CIVIV, são necessárias três ou mais formulações, as quais são avaliadas em relação ao comportamento de dissolução e à biodisponibilidade (BD), e por meio do cálculo de deconvolução, estimam-se as frações absorvidas. A furosemida, fármaco modelo, é um diurético usado no tratamento de hipertensão. Este fármaco é classificado como classe IV do sistema de classificação biofarmacêutico (SCB) (Amidon et al., 1995). O objetivo do presente trabalho foi estabelecer uma CIVIV para formas farmacêuticas (FFs) de liberação modificada contendo complexo de furosemida e hidroxipropil-ß-ciclodextrina (HP-ß-CD), a partir de ensaios de dissolução e estudos de BD. O complexo de furosemida e HP-ß-CD foi obtido por liofilização e caracterizado por análise térmica, solubilidade e permeabilidade. A partir do complexo, foram produzidas cinco formulações de comprimidos de liberação modificada, com diferentes concentrações de hidroxipropilmetilcelulose (HPMC) (10-30%). Estas foram submetidas aos estudos de dissolução com o aparato II. Destas, foram selecionadas três formulações com perfis distintos e submetidas ao estudo com o aparato IV e posteriormente ao estudo de BD. A partir destes resultados foi estabelecida uma CIVIV e esta foi avaliada por meio da validação interna. Foi realizado o estudo in silico de previsão das curvas de decaimento plasmático com emprego dos programas, STELLA® e Simcyp®, a partir dos dados: solubilidade da furosemida; dissolução a partir das formulações e dados farmacocinéticos obtidos a partir da injeção intravenosa do medicamento referência. Quanto à caracterização do complexo, os ensaios termoanalíticos sugerem que a furosemida forme complexo de inclusão com a HP-ß-CD pela técnica da liofilização. Observou-se o aumento da solubilidade em relação ao fármaco puro. Entretanto, quanto à permeabilidade, avaliada por meio do PAMPA (permeabilidade em membrana artificial paralela), os resultados foram semelhantes entre o fármaco puro e o complexo. Quanto ao comportamento de dissolução, avaliado com emprego dos aparatos II e IV, observou-se que as formulações apresentaram perfis de dissolução distintos. Os resultados do estudo de BD indicaram que a concentração do HPMC tem impacto relevante na absorção da furosemida. Foram obtidas correlações lineares a partir dos dados de fração absorvida e de dissolução, com coeficiente de determinação de 0,7662 para o aparato II e de 0,96017 para o IV. A validação interna da CIVIV empregando o aparato IV indicou que a correlação foi satisfatória. O estudo in silico de previsão das curvas de decaimento plasmático demonstrou que, nas condições empregadas, o modelo desenvolvido com o STELLA® foi mais preditivo do que o obtido pelo Simcyp®


The in vitro - in vivo correlation (IVIVC) refers to the establishment of a rational relationship between a in vitro property of a pharmaceutical form (PF) and a biological characteristic or parameters derived from those, produced from the absorption of a drug released from a PF. For the development of an IVIVC, it is necessary three or more formulations, which are evaluated in relation to the dissolution behavior and for bioavailability (BA), calculating by deconvolution, an estimated absorbed fractions. Furosemide, a model drug, is a diuretic used in the treatment of hypertension. This drug is classified as class IV from biopharmaceutical classification system (BCS) (Amidon et al., 1995). The objective of this study was to establish an IVIVC for pharmaceutical forms (PFs) with modified release containing furosemide complexed with hydroxypropyl-ß-cyclodextrin (HP-ß-CD), from dissolution tests and BA studies. The complex of furosemide and HP-ß-CD was obtained by freeze-drying and characterized by thermal analysis, the solubility and the permeability. From the complex were produced five modified release tablet formulations, with different concentrations of hydroxypropylmethylcellulose (HPMC) (10-30%). These formulations were subjected to dissolution studies with the apparatus II. From these, three formulations with distinct profiles were selected and subjected to dissolution study with apparatus IV and subsequently to the BA study. From these results, an IVIVC was established and this was evaluated by internal validation. The in silico study was conducted to predict plasma decay curves with employment programs, STELLA® and Simcyp®, from the following data: furosemide solubility, dissolution from the formulations evaluated and pharmacokinetic data obtained from intravenous drug reference. From characterization of the complex, the thermoanalytical tests suggest that furosemide form inclusion complex with HP-ß-CD by freeze-drying technique. It was observed an increased solubility compared to the pure drug. However, permeability results, as assessed by the PAMPA (Parallel artificial membrane permeability), were similar for both furosemide and the complex. As for the dissolution behavior, evaluated with apparatus II and IV, so it was observed that the formulations showed an distintict profile. it was observed that the formulations produced showed different dissolution profiles. The results form BA assays indicated that the HPMC concentration has an important impact on the furosemide absorption. It was obtained a linear correlation from absorption fraction and dissolution data, with the determination coefficient of 0.7662 to apparatus II and 0.96017 from apparatus IV. Internal validation, with the IVIVC obtainted from apparatus IV, indicated that the correlation obtained was satisfactory. The in silico study predicted plasma decay curves, showed that under the conditions used, the model developed with STELLA® was more predictive than the model obtained by Simcyp®


Assuntos
Comprimidos/análise , Técnicas In Vitro/métodos , Simulação por Computador , Furosemida/análise , Farmacocinética , Disponibilidade Biológica , Tecnologia Farmacêutica , Dissolução/classificação
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