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Pharm Res ; 31(2): 449-65, 2014 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-23974958

RESUMO

PURPOSE: A fundamental approach incorporating current theoretical models into aerosol formulation design potentially reduces experimental work for complex formulations. A D-amino acid mixture containing D-Leucine (D-Leu), D-Methionine, D-Tryptophan, and D-Tyrosine was selected as a model formulation for this approach. METHODS: Formulation design targets were set, with the aim of producing a highly dispersible D-amino acid aerosol. Particle formation theory and a spray dryer process model were applied with boundary conditions to the design targets, resulting in a priori predictions of particle morphology and necessary spray dryer process parameters. Two formulations containing 60% w/w trehalose, 30% w/w D-Leu, and 10% w/w remaining D-amino acids were manufactured. RESULTS: The design targets were met. The formulations had rugose and hollow particles, caused by deformation of a crystalline D-Leu shell while trehalose remained amorphous, as predicted by particle formation theory. D-Leu acts as a dispersibility enhancer, ensuring that both formulations: 1) delivered over 40% of the loaded dose into the in vitro lung region, and 2) achieved desired values of lung airway surface liquid concentrations based on lung deposition simulations. CONCLUSIONS: Theoretical models were applied to successfully achieve complex formulations with design challenges a priori. No further iterations to the design process were required.


Assuntos
Aerossóis/química , Pulmão/metabolismo , Pós/química , Aminoácidos/química , Química Farmacêutica/métodos , Sistemas de Liberação de Medicamentos/métodos , Inaladores de Pó Seco/métodos , Excipientes/química , Tecnologia Farmacêutica/métodos , Trealose/química
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