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Published on: July 3, 2018
Scalable generation of droplet-templated amorphous solid dispersions using continuous antisolvent extraction
Jun Ho Min1, Zheng Jie Liew1, Leon Yoon Ho2
1Department of Chemical and Biomolecular Engineering, National University of Singapore, 4 Engineering Drive 4, #02-09 Block E5, SG117585, Singapore; Singapore-MIT Alliance for Research and Technology, 1 CREATE Way, #04-13/14 Enterprise Wing, SG 138602, Singapore.
This study introduces a droplet-templated manufacturing process for amorphous solid dispersions (ASDs), yielding highly uniform particles. This scalable method overcomes traditional limitations, enabling efficient production of high-quality ASD tablets.
Area of Science:
- Pharmaceutical Sciences
- Materials Science
- Chemical Engineering
Background:
- Amorphous solid dispersions (ASDs) enhance solubility for poorly water-soluble drugs.
- Conventional ASD manufacturing yields particles with poor flowability and broad size distributions, complicating downstream processing.
- Scalable and efficient ASD production methods are needed.
Purpose of the Study:
- To develop a droplet-templated manufacturing process for producing highly monodisperse ASD particles.
- To evaluate the particle attributes and downstream processability of the manufactured ASDs.
- To demonstrate the potential of microfluidics for scalable ASD production.
Main Methods:
- Utilized step-emulsification and continuous anti-solvent extraction within a droplet-templated microfluidic system.
- Co-processed polymer and drug to form intermediate ASD powder products.
- Compressed ASD powders into tablets and evaluated drug product specifications.
Main Results:
- Achieved highly monodisperse ASD particles with improved flowability and compatibility with tableting.
- Produced ASD tablets meeting stringent specifications for tensile strength, dissolution, and residual solvents.
- Demonstrated industrially relevant throughput for droplet microfluidic ASD manufacturing.
Conclusions:
- The droplet-templated process offers a promising alternative for manufacturing ASDs with superior particle attributes.
- Microfluidics can be scaled for industrial production of high-value pharmaceutical products like ASDs.
- This method addresses limitations of traditional ASD manufacturing, enabling efficient downstream processing and high-quality drug products.
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