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Opportunities for Successful Stabilization of Poor Glass-Forming Drugs: A Stability-Based Comparison of Mesoporous Silica Versus Hot Melt Extrusion Technologies.
Ditzinger, Felix; Price, Daniel J; Nair, Anita; Becker-Baldus, Johanna; Glaubitz, Clemens; Dressman, Jennifer B; Saal, Christoph; Kuentz, Martin.
Afiliación
  • Ditzinger F; Department of Pharmaceutical Sciences, University of Basel, 4056 Basel, Switzerland. felix.ditzinger@fhnw.ch.
  • Price DJ; Institute of Pharma Technology, University of Applied Sciences and Arts Northwestern Switzerland, 4132 Muttenz, Switzerland. felix.ditzinger@fhnw.ch.
  • Nair A; Merck KGaA, 64293 Darmstadt, Germany. daniel-joseph.price@merckgroup.com.
  • Becker-Baldus J; Institute of Pharmaceutical Technology, Goethe University, 60438 Frankfurt, Germany. daniel-joseph.price@merckgroup.com.
  • Glaubitz C; Merck KGaA, 64293 Darmstadt, Germany. anita.nair@merckgroup.com.
  • Dressman JB; Institute for Biophysical Chemistry & Centre for Biomolecular Magnetic Resonance, Goethe University, 60438 Frankfurt, Germany. j.baldus@em.uni-frankfurt.de.
  • Saal C; Institute for Biophysical Chemistry & Centre for Biomolecular Magnetic Resonance, Goethe University, 60438 Frankfurt, Germany. Glaubitz@chemie.uni-frankfurt.de.
  • Kuentz M; Institute of Pharmaceutical Technology, Goethe University, 60438 Frankfurt, Germany. dressman@em.uni-frankfurt.de.
Pharmaceutics ; 11(11)2019 Nov 04.
Article en En | MEDLINE | ID: mdl-31689980
Amorphous formulation technologies to improve oral absorption of poorly soluble active pharmaceutical ingredients (APIs) have become increasingly prevalent. Currently, polymer-based amorphous formulations manufactured by spray drying, hot melt extrusion (HME), or co-precipitation are most common. However, these technologies have challenges in terms of the successful stabilization of poor glass former compounds in the amorphous form. An alternative approach is mesoporous silica, which stabilizes APIs in non-crystalline form via molecular adsorption inside nano-scale pores. In line with these considerations, two poor glass formers, haloperidol and carbamazepine, were formulated as polymer-based solid dispersion via HME and with mesoporous silica, and their stability was compared under accelerated conditions. Changes were monitored over three months with respect to solid-state form and dissolution. The results were supported by solid-state nuclear magnetic resonance spectroscopy (SS-NMR) and scanning electron microscopy (SEM). It was demonstrated that mesoporous silica was more successful than HME in the stabilization of the selected poor glass formers. While both drugs remained non-crystalline during the study using mesoporous silica, polymer-based HME formulations showed recrystallization after one week. Thus, mesoporous silica represents an attractive technology to extend the formulation toolbox to poorly soluble poor glass formers.
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Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Idioma: En Revista: Pharmaceutics Año: 2019 Tipo del documento: Article País de afiliación: Suiza

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Idioma: En Revista: Pharmaceutics Año: 2019 Tipo del documento: Article País de afiliación: Suiza