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Oligonucleotide Formulations Prepared by High-Speed Electrospinning: Maximizing Loading and Exploring Downstream Processability.
Hirsch, Edit; Nacsa, Márió; Pantea, Eszter; Szabó, Edina; Vass, Panna; Domján, Júlia; Farkas, Attila; Nyíri, Zoltán; Eke, Zsuzsanna; Vigh, Tamás; Andersen, Sune Klint; Verreck, Geert; Marosi, György János; Nagy, Zsombor Kristóf.
Afiliação
  • Hirsch E; Department of Organic Chemistry and Technology, Budapest University of Technology and Economics, Müegyetem rkp. 3, 1111 Budapest, Hungary.
  • Nacsa M; Department of Organic Chemistry and Technology, Budapest University of Technology and Economics, Müegyetem rkp. 3, 1111 Budapest, Hungary.
  • Pantea E; Department of Organic Chemistry and Technology, Budapest University of Technology and Economics, Müegyetem rkp. 3, 1111 Budapest, Hungary.
  • Szabó E; Department of Organic Chemistry and Technology, Budapest University of Technology and Economics, Müegyetem rkp. 3, 1111 Budapest, Hungary.
  • Vass P; Department of Organic Chemistry and Technology, Budapest University of Technology and Economics, Müegyetem rkp. 3, 1111 Budapest, Hungary.
  • Domján J; Department of Organic Chemistry and Technology, Budapest University of Technology and Economics, Müegyetem rkp. 3, 1111 Budapest, Hungary.
  • Farkas A; Department of Organic Chemistry and Technology, Budapest University of Technology and Economics, Müegyetem rkp. 3, 1111 Budapest, Hungary.
  • Nyíri Z; Joint Research and Training Laboratory on Separation Techniques, Eötvös Loránd University, Pázmány Péter stny. 1/A, 1117 Budapest, Hungary.
  • Eke Z; Joint Research and Training Laboratory on Separation Techniques, Eötvös Loránd University, Pázmány Péter stny. 1/A, 1117 Budapest, Hungary.
  • Vigh T; Oral Solids Development, Janssen R&D, Turnhoutseweg 30, B-2340 Beerse, Belgium.
  • Andersen SK; Oral Solids Development, Janssen R&D, Turnhoutseweg 30, B-2340 Beerse, Belgium.
  • Verreck G; Oral Solids Development, Janssen R&D, Turnhoutseweg 30, B-2340 Beerse, Belgium.
  • Marosi GJ; Department of Organic Chemistry and Technology, Budapest University of Technology and Economics, Müegyetem rkp. 3, 1111 Budapest, Hungary.
  • Nagy ZK; Department of Organic Chemistry and Technology, Budapest University of Technology and Economics, Müegyetem rkp. 3, 1111 Budapest, Hungary.
Pharmaceutics ; 15(3)2023 Mar 06.
Article em En | MEDLINE | ID: mdl-36986716
The aim of this study was to develop antisense oligonucleotide tablet formulations using high-speed electrospinning. Hydroxypropyl-beta-cyclodextrin (HPßCD) was used as a stabilizer and as an electrospinning matrix. In order to optimize the morphology of the fibers, electrospinning of various formulations was carried out using water, methanol/water (1:1), and methanol as solvents. The results showed that using methanol could be advantageous due to the lower viscosity threshold for fiber formation enabling higher potential drug loadings by using less excipient. To increase the productivity of electrospinning, high-speed electrospinning technology was utilized and HPßCD fibers containing 9.1% antisense oligonucleotide were prepared at a rate of ~330 g/h. Furthermore, to increase the drug content of the fibers, a formulation with a 50% drug loading was developed. The fibers had excellent grindability but poor flowability. The ground fibrous powder was mixed with excipients to improve its flowability, which enabled the automatic tableting of the mixture by direct compression. The fibrous HPßCD-antisense oligonucleotide formulations showed no sign of physical or chemical degradation over the 1-year stability study, which also shows the suitability of the HPßCD matrix for the formulation of biopharmaceuticals. The obtained results demonstrate possible solutions for the challenges of electrospinning such as scale-up and downstream processing of the fibers.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Pharmaceutics Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Pharmaceutics Ano de publicação: 2023 Tipo de documento: Article