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1.
Drug Dev Ind Pharm ; 42(1): 123-130, 2016 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-25997363

RESUMO

OBJECTIVES: The aim of the current research project was to investigate the effect of pressurized carbon dioxide (P-CO2) on the physico-mechanical properties of ketoprofen (KTP)-incorporated hydroxypropylcellulose (HPC) (Klucel™ ELF, EF, and LF) produced using hot-melt extrusion (HME) techniques and to assess the plasticization effect of P-CO2 on the various polymers tested. METHODS: The physico-mechanical properties of extrudates with and without injection of P-CO2 were examined and compared with extrudates with the addition of 5% liquid plasticizer of propylene glycol (PG). The extrudates were milled and compressed into tablets. Tablet characteristics of the extrudates with and without injection of P-CO2 were evaluated. RESULTS AND CONCLUSION: P-CO2 acted as a plasticizer for tested polymers, which allowed for the reduction in extrusion processing temperature. The microscopic morphology of the extrudates was changed to a foam-like structure due to the expansion of the CO2 at the extrusion die. The foamy extrudates demonstrated enhanced KTP release compared with the extrudates processed without P-CO2 due to the increase of porosity and surface area of those extrudates. Furthermore, the hardness of the tablets prepared by foamy extrudates was increased and the percent friability was decreased. Thus, the good binding properties and compressibility of the extrudates were positively influenced by utilizing P-CO2 processing.


Assuntos
Dióxido de Carbono/química , Celulose/análogos & derivados , Composição de Medicamentos/métodos , Cetoprofeno/química , Plastificantes/química , Varredura Diferencial de Calorimetria , Celulose/química , Portadores de Fármacos/química , Liberação Controlada de Fármacos , Temperatura Alta , Cetoprofeno/administração & dosagem , Cetoprofeno/farmacocinética , Tamanho da Partícula , Polímeros/química , Porosidade , Pressão , Solubilidade , Comprimidos , Termogravimetria
2.
Int J Pharm ; 487(1-2): 167-76, 2015 Jun 20.
Artigo em Inglês | MEDLINE | ID: mdl-25888797

RESUMO

The objective of this study was to develop caffeine citrate orally disintegrating tablet (ODT) formulations utilizing hot-melt extrusion technology and evaluate the ability of the formulation composition to mask the unpleasant bitter taste of the drug using in vitro and in vivo methods. Ethylcellulose, along with a suitable plasticizer, was used as a polymeric carrier. Pore forming agents were incorporated into the extruded matrix to enhance drug release. A modified screw configuration was applied to improve the extrusion processability and to preserve the crystallinity of the API. The milled extrudates were subjected to dissolution testing in an artificial salivary fluid and investigations using e-tongue, to assess the extent of masking of bitter taste of the API. There was an insignificant amount of drug released from the formulation in the salivary medium while over 80% of drug released within 30 min in 0.1N HCl. ODTs were also developed with the extrudate mixed with mannitol and crospovidone. The quality properties such as friability and disintegration time of the ODTs met the USP specifications. The lead extrudate formulations and the ODTs prepared using this formulation were subjected to human gustatory evaluation. The formulations were found to mask the unpleasant taste of caffeine citrate significantly.


Assuntos
Cafeína/efeitos adversos , Citratos/efeitos adversos , Paladar/efeitos dos fármacos , Cafeína/química , Celulose/análogos & derivados , Química Farmacêutica , Citratos/química , Portadores de Fármacos , Composição de Medicamentos , Humanos , Plastificantes , Solubilidade , Comprimidos , Percepção Gustatória
3.
J Pharm Sci ; 104(1): 124-34, 2015 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-25410968

RESUMO

The primary aim of this research was to produce successfully taste masked formulations of Sildenafil Citrate (SC) using hot-melt extrusion (HME) technology. Multiple screw configurations and polymeric carriers were evaluated for their effects on taste masking efficiency, which was assessed by both E-tongue analysis and in vitro dissolution in simulated salivary fluid (SSF, pH 6.8 artificial saliva). The screw configurations were further assessed for their effects on the morphology of the API using PXRD, FT-IR and mid-infrared chemical imaging. It was determined that the screw configuration had a profound effect on the taste masking efficiency of the formulations as a result of altering the physical state of the API. Selected extruded formulations using ethylcellulose (EC) with a pore former were further formulated into orally disintegrating tablets (ODTs), which were optimized by varying the grade and percentage of the superdisintegrant used. An optimized disintegration time of approximately 8 seconds was achieved. The final ODT formulation exhibited excellent taste masking properties with over 85% drug release in gastric media as well as physical tablet properties. Interestingly, friability, which tends to be a common concern when formulating ODTs, was well within the acceptable limits (<1%) for common tablets.


Assuntos
Portadores de Fármacos/química , Composição de Medicamentos/instrumentação , Excipientes/química , Modelos Biológicos , Piperazinas/química , Polímeros/química , Saliva/química , Sulfonamidas/química , Acetatos/química , Celulose/análogos & derivados , Celulose/química , Portadores de Fármacos/administração & dosagem , Portadores de Fármacos/efeitos adversos , Desenho de Equipamento , Suco Gástrico/química , Temperatura Alta , Humanos , Inibidores da Fosfodiesterase 5/administração & dosagem , Inibidores da Fosfodiesterase 5/efeitos adversos , Inibidores da Fosfodiesterase 5/química , Piperazinas/administração & dosagem , Piperazinas/efeitos adversos , Povidona/análogos & derivados , Povidona/química , Purinas/administração & dosagem , Purinas/efeitos adversos , Purinas/química , Citrato de Sildenafila , Solubilidade , Sulfonamidas/administração & dosagem , Sulfonamidas/efeitos adversos , Propriedades de Superfície , Comprimidos , Paladar , Vasodilatadores/administração & dosagem , Vasodilatadores/efeitos adversos , Vasodilatadores/química
4.
Drug Dev Ind Pharm ; 41(9): 1479-87, 2015.
Artigo em Inglês | MEDLINE | ID: mdl-25224341

RESUMO

The recrystallization of an amorphous drug in a solid dispersion system could lead to a loss in the drug solubility and bioavailability. The primary objective of the current research was to use an improved kinetic model to evaluate the recrystallization kinetics of amorphous structures and to further understand the factors influencing the physical stability of amorphous solid dispersions. Amorphous solid dispersions of fenofibrate with different molecular weights of hydroxypropylcellulose, HPC (Klucel™ LF, EF, ELF) were prepared utilizing hot-melt extrusion technology. Differential scanning calorimetry was utilized to quantitatively analyze the extent of recrystallization in the samples stored at different temperatures and relative humidity (RH) conditions. The experimental data were fitted into the improved kinetics model of a modified Avrami equation to calculate the recrystallization rate constants. Klucel LF, the largest molecular weight among the HPCs used, demonstrated the greatest inhibition of fenofibrate recrystallization. Additionally, the recrystallization rate (k) decreased with increasing polymer content, however exponentially increased with higher temperature. Also k increased linearly rather than exponentially over the range of RH studied.


Assuntos
Celulose/análogos & derivados , Fenofibrato/administração & dosagem , Modelos Químicos , Polímeros/química , Varredura Diferencial de Calorimetria , Celulose/química , Química Farmacêutica/métodos , Cristalização , Composição de Medicamentos , Estabilidade de Medicamentos , Fenofibrato/química , Temperatura Alta , Umidade , Cinética , Peso Molecular , Solubilidade , Temperatura
5.
Drug Dev Ind Pharm ; 39(2): 290-8, 2013 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-22524504

RESUMO

The objective of this study was to improve the dissolution rate and to enhance the stability of a poorly water-soluble and low glass-trasition temperature (T(g)) model drug, fenofibrate, in low molecular weight grades of hydroxypropylcellulose matrices produced by hot-melt extrusion (HME). Percent drug loading had a significant effect on the extrudability of the formulations. Dissolution rate of fenofibrate from melt extruded pellets was faster than that of the pure drug (p < 0.05). Incorporation of sugars within the formulation further increased the fenofibrate release rates. Differential scanning calorimetry results revealed that the crystalline drug was converted into an amorphous form during the HME process. Fenofibrate is prone to recrystallization due to its low T(g). Various polymers were evaluated as stabilizing agents among which polyvinylpyrrolidone 17PF and amino methacrylate copolymer exhibited a significant inhibitory effect on fenofibrate recrystallization in the hot-melt extrudates. Subsequently immediate-release fenofibrate tablets were successfully developed and complete drug release was achieved within 5 min. The dissolution profile was comparable to that of a currently marketed formulation. The hot-melt extruded fenofibrate tablets were stable, and exhibited an unchanged drug release profile after 3-month storage at 40°C/75% RH.


Assuntos
Celulose/análogos & derivados , Composição de Medicamentos/métodos , Fenofibrato/química , Hipolipemiantes/química , Polímeros/química , Celulose/química , Estabilidade de Medicamentos , Temperatura Alta , Peso Molecular , Solubilidade
6.
AAPS PharmSciTech ; 13(4): 1158-69, 2012 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-22961411

RESUMO

The objective of this research work was to evaluate Klucel™ hydroxypropylcellulose (HPC) EF and ELF polymers, for solubility enhancement as well as to address some of the disadvantages associated with solid dispersions. Ketoprofen (KPR), a Biopharmaceutics Classification System class II drug with poor solubility, was utilized as a model compound. Preliminary thermal studies were performed to confirm formation of a solid solution/dispersion of KPR in HPC matrix and also to establish processing conditions for hot-melt extrusion. Extrudates pelletized and filled into capsules exhibited a carrier-dependent release with ELF polymer exhibiting a faster release. Tablets compressed from milled extrudates exhibited rapid release owing to the increased surface area of the milled extrudate. Addition of mannitol (MNT) further enhanced the release by forming micro-pores and increasing the porosity of the extrudates. An optimized tablet formulation constituting KPR, MNT, and ELF in a 1:1:1 ratio exhibited 90% release in 15 min similar to a commercial capsule formulation. HPC polymers are non-ionic hydrophilic polymers that undergo polymer-chain-length-dependent solubilization and can be used to enhance solubility or dissolution rate of poorly soluble drugs. Dissolution/release rate could be tailored for rapid-release applications by selecting a suitable HPC polymer and altering the final dosage form. The release obtained from pellets was carrier-dependent and not drug-dependent, and hence, such a system can be effectively utilized to address solubility or precipitation issues with poorly soluble drugs in the gastrointestinal environment.


Assuntos
Celulose/análogos & derivados , Portadores de Fármacos/química , Cetoprofeno/administração & dosagem , Cetoprofeno/química , Polímeros/química , Comprimidos/química , Tecnologia Farmacêutica/métodos , Anti-Inflamatórios não Esteroides/administração & dosagem , Anti-Inflamatórios não Esteroides/química , Cápsulas/química , Celulose/química , Química Farmacêutica , Composição de Medicamentos/métodos , Implantes de Medicamento/química , Estabilidade de Medicamentos , Excipientes/química , Testes de Dureza , Interações Hidrofóbicas e Hidrofílicas , Manitol/química , Tamanho da Partícula , Porosidade , Solubilidade
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