Hot Melt Extrusion and Spray Drying of Co-amorphous Indomethacin-Arginine With Polymers

Research output: Contribution to journalJournal articleResearchpeer-review

Standard

Hot Melt Extrusion and Spray Drying of Co-amorphous Indomethacin-Arginine With Polymers. / Lenz, Elisabeth; Löbmann, Korbinian; Rades, Thomas; Knop, Klaus; Kleinebudde, Peter.

In: Journal of Pharmaceutical Sciences, Vol. 106, No. 1, 01.2017, p. 302-312.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Lenz, E, Löbmann, K, Rades, T, Knop, K & Kleinebudde, P 2017, 'Hot Melt Extrusion and Spray Drying of Co-amorphous Indomethacin-Arginine With Polymers', Journal of Pharmaceutical Sciences, vol. 106, no. 1, pp. 302-312. https://doi.org/10.1016/j.xphs.2016.09.027

APA

Lenz, E., Löbmann, K., Rades, T., Knop, K., & Kleinebudde, P. (2017). Hot Melt Extrusion and Spray Drying of Co-amorphous Indomethacin-Arginine With Polymers. Journal of Pharmaceutical Sciences, 106(1), 302-312. https://doi.org/10.1016/j.xphs.2016.09.027

Vancouver

Lenz E, Löbmann K, Rades T, Knop K, Kleinebudde P. Hot Melt Extrusion and Spray Drying of Co-amorphous Indomethacin-Arginine With Polymers. Journal of Pharmaceutical Sciences. 2017 Jan;106(1):302-312. https://doi.org/10.1016/j.xphs.2016.09.027

Author

Lenz, Elisabeth ; Löbmann, Korbinian ; Rades, Thomas ; Knop, Klaus ; Kleinebudde, Peter. / Hot Melt Extrusion and Spray Drying of Co-amorphous Indomethacin-Arginine With Polymers. In: Journal of Pharmaceutical Sciences. 2017 ; Vol. 106, No. 1. pp. 302-312.

Bibtex

@article{c985580b1ead4e88b714c269ae36f729,
title = "Hot Melt Extrusion and Spray Drying of Co-amorphous Indomethacin-Arginine With Polymers",
abstract = "Co-amorphous drug-amino acid systems have gained growing interest as an alternative to common amorphous formulations which contain polymers as stabilizers. Several preparation methods have recently been investigated, including vibrational ball milling on a laboratory scale or spray drying in a larger scale. In this study, the feasibility of hot melt extrusion for continuous manufacturing of co-amorphous drug-amino acid formulations was examined, challenging the fact that amino acids melt with degradation at high temperatures. Furthermore, the need for an addition of a polymer in this process was evaluated. After a polymer screening via the solvent evaporation method, co-amorphous indomethacin-arginine was prepared by a melting-solvent extrusion process without and with copovidone. The obtained products were characterized with respect to their solid-state properties, non-sink dissolution behavior, and stability. Results were compared to those of spray-dried formulations with the same compositions and to spray-dried indomethacin-copovidone. Overall, stable co-amorphous systems could be prepared by extrusion without or with copovidone, which exhibited comparable molecular interaction properties to the respective spray-dried products, while phase separation was detected by differential scanning calorimetry in several cases. The formulations containing indomethacin in combination with arginine and copovidone showed enhanced dissolution behavior over the formulations with only copovidone or arginine.",
author = "Elisabeth Lenz and Korbinian L{\"o}bmann and Thomas Rades and Klaus Knop and Peter Kleinebudde",
note = "Copyright {\textcopyright} 2016 American Pharmacists Association{\textregistered}. Published by Elsevier Inc. All rights reserved.",
year = "2017",
month = jan,
doi = "10.1016/j.xphs.2016.09.027",
language = "English",
volume = "106",
pages = "302--312",
journal = "Journal of Pharmaceutical Sciences",
issn = "0022-3549",
publisher = "Elsevier",
number = "1",

}

RIS

TY - JOUR

T1 - Hot Melt Extrusion and Spray Drying of Co-amorphous Indomethacin-Arginine With Polymers

AU - Lenz, Elisabeth

AU - Löbmann, Korbinian

AU - Rades, Thomas

AU - Knop, Klaus

AU - Kleinebudde, Peter

N1 - Copyright © 2016 American Pharmacists Association®. Published by Elsevier Inc. All rights reserved.

PY - 2017/1

Y1 - 2017/1

N2 - Co-amorphous drug-amino acid systems have gained growing interest as an alternative to common amorphous formulations which contain polymers as stabilizers. Several preparation methods have recently been investigated, including vibrational ball milling on a laboratory scale or spray drying in a larger scale. In this study, the feasibility of hot melt extrusion for continuous manufacturing of co-amorphous drug-amino acid formulations was examined, challenging the fact that amino acids melt with degradation at high temperatures. Furthermore, the need for an addition of a polymer in this process was evaluated. After a polymer screening via the solvent evaporation method, co-amorphous indomethacin-arginine was prepared by a melting-solvent extrusion process without and with copovidone. The obtained products were characterized with respect to their solid-state properties, non-sink dissolution behavior, and stability. Results were compared to those of spray-dried formulations with the same compositions and to spray-dried indomethacin-copovidone. Overall, stable co-amorphous systems could be prepared by extrusion without or with copovidone, which exhibited comparable molecular interaction properties to the respective spray-dried products, while phase separation was detected by differential scanning calorimetry in several cases. The formulations containing indomethacin in combination with arginine and copovidone showed enhanced dissolution behavior over the formulations with only copovidone or arginine.

AB - Co-amorphous drug-amino acid systems have gained growing interest as an alternative to common amorphous formulations which contain polymers as stabilizers. Several preparation methods have recently been investigated, including vibrational ball milling on a laboratory scale or spray drying in a larger scale. In this study, the feasibility of hot melt extrusion for continuous manufacturing of co-amorphous drug-amino acid formulations was examined, challenging the fact that amino acids melt with degradation at high temperatures. Furthermore, the need for an addition of a polymer in this process was evaluated. After a polymer screening via the solvent evaporation method, co-amorphous indomethacin-arginine was prepared by a melting-solvent extrusion process without and with copovidone. The obtained products were characterized with respect to their solid-state properties, non-sink dissolution behavior, and stability. Results were compared to those of spray-dried formulations with the same compositions and to spray-dried indomethacin-copovidone. Overall, stable co-amorphous systems could be prepared by extrusion without or with copovidone, which exhibited comparable molecular interaction properties to the respective spray-dried products, while phase separation was detected by differential scanning calorimetry in several cases. The formulations containing indomethacin in combination with arginine and copovidone showed enhanced dissolution behavior over the formulations with only copovidone or arginine.

U2 - 10.1016/j.xphs.2016.09.027

DO - 10.1016/j.xphs.2016.09.027

M3 - Journal article

C2 - 27817830

VL - 106

SP - 302

EP - 312

JO - Journal of Pharmaceutical Sciences

JF - Journal of Pharmaceutical Sciences

SN - 0022-3549

IS - 1

ER -

ID: 168931761