Non-salt based co-amorphous formulation produced by freeze-drying.


Journal

International journal of pharmaceutics
ISSN: 1873-3476
Titre abrégé: Int J Pharm
Pays: Netherlands
ID NLM: 7804127

Informations de publication

Date de publication:
15 Oct 2023
Historique:
received: 06 06 2023
revised: 08 09 2023
accepted: 09 09 2023
medline: 9 10 2023
pubmed: 16 9 2023
entrez: 15 9 2023
Statut: ppublish

Résumé

Amino acids-based co-amorphous system (CAM) has shown to be a promising approach to overcome the dissolution challenge of biopharmaceutics classification system class II drugs. To date, most CAM formulations are based on salt formation at a 1:1 M ratio and are prepared by mechanical activation. However, its use in medicinal products is still limited due to the lack of in-depth understanding of non-ionic based molecular interactions. There are also limited studies on the effect of drug-to-co-former ratio, the development of more scalable, less aggressive, manufacturing processes such as freeze drying and its dissolution benefits. This work aims to investigate the effect of the ratio of tryptophan (a model non-ionic amino acid) to indomethacin (a model drug) on a non-salt-based CAM prepared via freeze-drying with the tert-butyl alcohol-water cosolvent system. The CAM material was systemically characterized at various stages of the freeze-drying process using DSC, UV-Vis, FT-IR, NMR, TGA and XRPD. Dissolution performance and physical stability upon storage were also investigated. Freeze-drying using the cosolvent system has been successfully shown to produce CAMs. The molecular interactions involving H-bonding, H/π and π-π between compounds have been confirmed by FT-IR and NMR. The drug release rate for formulations with a 1.5:1 drug: amino acid molar ratio (or 1:0.42 wt ratio) or below is found to be significantly improved compared to the pure crystalline drug. Furthermore, formulation with a 2.3:1 drug:amino acid molar ratio (or 1:0.25 wt ratio) or below have shown to be physically stable for at least 9 months when stored at dry condition (5% relative humidity, 25 °C) compared to the pure amorphous indomethacin. We have demonstrated the potential of freeze-drying using tert-butyl alcohol-water cosolvent system to produce an optimal non-salt-based class II drug-amino acid CAM.

Identifiants

pubmed: 37714312
pii: S0378-5173(23)00825-6
doi: 10.1016/j.ijpharm.2023.123404
pii:
doi:

Substances chimiques

tert-Butyl Alcohol MD83SFE959
Amino Acids 0
Water 059QF0KO0R
Indomethacin XXE1CET956

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

123404

Informations de copyright

Copyright © 2023 The Authors. Published by Elsevier B.V. All rights reserved.

Déclaration de conflit d'intérêts

Declaration of Competing Interest The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.

Auteurs

Mohammed Suleiman Alsalhi (M)

Institute of Pharmaceutical Science, King's College London, SE1 9NH, UK; College of pharmacy, King Saud University, Riyadh, Saudi Arabia. Electronic address: mohalsalhi@ksu.edu.sa.

Paul G Royall (PG)

Institute of Pharmaceutical Science, King's College London, SE1 9NH, UK.

Hisham Al-Obaidi (H)

School of Chemistry, Food and Pharmacy (SCFP), University of Reading, Whiteknights, Reading RG6 6AP, UK.

Alyaa Alsalhi (A)

College of pharmacy, King Saud University, Riyadh, Saudi Arabia.

Agostino Cilibrizzi (A)

Institute of Pharmaceutical Science, King's College London, SE1 9NH, UK.

Ka Lung Andrew Chan (KLA)

Institute of Pharmaceutical Science, King's College London, SE1 9NH, UK. Electronic address: ka_lung.chan@kcl.ac.uk.

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Classifications MeSH