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1.
Pharmazie ; 78(6): 93-99, 2023 07 01.
Artigo em Inglês | MEDLINE | ID: mdl-37537772

RESUMO

In powder formulations, it is a problem that the required therapeutic dose is not obtained because of loss of the active pharmaceutical ingredient (API). In this study, we investigated three types of lactose diluents, which are widely used as pharmaceutical excipients, for dispensing prednisolone powder. Extra-fine crystalline lactose, commonly used as a diluent in compounding powder formulations, was used as a comparison. The effect of lactose on the API loss rate was examined by analyzing the amount of prednisolone in the powder formulation taken out of a single-dose package after dispensing. The results showed that Dilactose-F had the lowest API loss rate (22%), followed by powder lactose (37.8%), extra-fine crystalline lactose (45.9%), and crystal form lactose (48.6%), indicating that the use of Dilactose-F as a diluent significantly improved API loss when compounding the powder formulation. Because each mixture of commercial prednisolone powder and lactose was within acceptable uniformity and loss rate before packaging, we considered that API loss occurred when the powder was taken out of the single-dose package before patients ingested them. Then, the physical properties of these lactose types affecting the API loss rate were examined. Strong correlation was not found between flowability and the API loss rate, but particle size distribution and bulk density were strongly correlated with the API loss rate. Furthermore, Dilactose-F, which showed the lowest API loss rate, did not show an exothermic peak due to epimerization to anhydrous ß -lactose in differential scanning calorimetry and showed a peak specific to ß -lactose in powder X-ray diffractometer. These results suggested that in powder compounding where the API content is low, the physical properties of lactose, such as particle size distribution, bulk density, and crystalline form, are intricately related to API loss.


Assuntos
Química Farmacêutica , Excipientes , Humanos , Pós , Química Farmacêutica/métodos , Excipientes/química , Lactose/química , Prednisolona , Tamanho da Partícula , Composição de Medicamentos/métodos
2.
Pharmazie ; 75(1): 2-6, 2020 01 02.
Artigo em Inglês | MEDLINE | ID: mdl-32033625

RESUMO

In the present work, taste masked particles of acetaminophen (AAP), a highly soluble bitter tasting drug, were developed and ODT containing the taste masked particles were prepared. Taste masked particles of AAP were prepared using different amounts of tetraglycerol polyricinoleate (TGPR) and Eudragit ®E100. Although the drug content ratio and drug recovery decreased with increasing TGPR, drug release from AAP-CR100 particles containing a large amount of TGPR was mostly suppressed for 2 min. Hence, AAP-CR100 was incorporated into ODT as taste masked particles for AAP. Three major disintegrants were used for ODT, and it was confirmed that the tensile strength of all formulations showed applicable hardness for handling. The AAP-CR100-CP(40) formulation containing crospovidone showed the shortest disintegration time and the drug release from AAP-CR100-CP(40) into pH 6.8 test solution was suppressed compared with commercial AAP tablets. Because the drug release from AAP-CR100-CP(40) into the pH 1.2 test solution was rapid, it was suggested that drug release from AAP-CR100-CP(40) is suppressed in the oral cavity, and the drug is released promptly in the stomach. Thus AAP-CR100-CP(40) may be useful as an ODT in which the dissolution of AAP in the oral cavity is suppressed.


Assuntos
Acetaminofen/administração & dosagem , Excipientes/química , Povidona/química , Paladar , Acetaminofen/química , Acrilatos/química , Administração Oral , Liberação Controlada de Fármacos , Dureza , Concentração de Íons de Hidrogênio , Polímeros/química , Comprimidos , Resistência à Tração
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