Dry powder inhaler of colistimethate sodium for lung infections in cystic fibrosis: optimization of powder construction.


Journal

Drug development and industrial pharmacy
ISSN: 1520-5762
Titre abrégé: Drug Dev Ind Pharm
Pays: England
ID NLM: 7802620

Informations de publication

Date de publication:
Oct 2019
Historique:
pubmed: 8 8 2019
medline: 29 1 2020
entrez: 8 8 2019
Statut: ppublish

Résumé

Colistimethate sodium (CMS) for treatment of lung infections in cystic fibrosis patient was transformed into a dry powder for inhalation by spray drying. Design of Experiment was applied for understanding the role of the spray-drying process parameters on the critical quality attributes of the CMS spray-dried (SD) powders and agglomerates thereof. Eleven experimental SD microparticle powders were constructed under different process conditions according to a central composite design. The SD microparticles were then agglomerated in soft pellets. Eleven physico-chemical characteristics of SD CMS microparticle powders or agglomerates thereof were selected as critical quality attributes. The yield of SD process was higher than 75%. The emitted fraction of agglomerates from RS01 inhaler was 75-84%, and the fine particle fraction (particles <5 µm) was between 58% and 62%. The quality attributes of CMS SD powders and respective agglomerates that were significantly influenced by spray-drying process parameters were residual solvent and drug content of the SD microparticles as well as bulk density and respirable dose of the agglomerates. These attributes were also affected by the combination of the process variables. The air aspiration rate was found as the most positively influential on drug and solvent content and respirable dose. The residual solvent content significantly influenced the powder bulk properties and aerodynamic behavior of the agglomerates, i.e. quality attributes that govern drug metering in the device and the particles lungs deposition. Agglomerates of CMS SD microparticles, in combination with RS01 DPI, showed satisfactory results in terms of dose emitted and fine particle fraction.

Identifiants

pubmed: 31389270
doi: 10.1080/03639045.2019.1652636
doi:

Substances chimiques

Aerosols 0
Powders 0
Solvents 0
colistinmethanesulfonic acid DL2R53P963
Colistin Z67X93HJG1

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

1664-1673

Auteurs

Jana Kozáková (J)

Department of Aerosols Chemistry and Physics, Institute of Chemical Process Fundamentals of the Czech Academy of Science , Prague , Czech Republic.

Ayça Altay (A)

Food and Drug Department, University of Parma , Parma , Italy.

Vladimír Ždímal (V)

Department of Aerosols Chemistry and Physics, Institute of Chemical Process Fundamentals of the Czech Academy of Science , Prague , Czech Republic.

Ludmila Mašková (L)

Department of Aerosols Chemistry and Physics, Institute of Chemical Process Fundamentals of the Czech Academy of Science , Prague , Czech Republic.

Fabio Sonvico (F)

Food and Drug Department, University of Parma , Parma , Italy.

Eride Quarta (E)

Food and Drug Department, University of Parma , Parma , Italy.

Alessandra Rossi (A)

Food and Drug Department, University of Parma , Parma , Italy.

Francesca Buttini (F)

Food and Drug Department, University of Parma , Parma , Italy.

Gaia Colombo (G)

Department of Life Sciences and Biotechnology , Ferrara , Italy.

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Classifications MeSH