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Accumulation of extractables in buffer solutions from a polyolefin plastic container
Dennis R Jenke1, Jill M Jene, Mitchell Poss
1Technology Resources Division, Baxter Healthcare Corporation, William Graham Science Center, Round Lake, IL 60073, USA. dennis_jenke@baxter.com
International Journal of Pharmaceutics
|May 24, 2005
Summary
This study investigated plastic container extractables in biopharmaceutical solutions. Key extractables were identified and quantified in various solutions under different storage conditions.
Area of Science:
- Biopharmaceutical Manufacturing
- Materials Science
- Analytical Chemistry
Background:
- Plastic containers are increasingly used in the biotechnology industry for storing and transporting critical solutions.
- Potential leaching of container components (extractables) into biopharmaceutical products is a significant concern.
- Understanding extractable profiles is crucial for product quality and patient safety.
Purpose of the Study:
- To identify major extractables from polyolefin containers used in biopharmaceutical applications.
- To quantify the accumulation of targeted extractables in representative buffer and media solutions.
- To assess the impact of different storage conditions on extractable levels.
Main Methods:
- Investigated the interaction between polyolefin container material and various test solutions.
- Utilized analytical techniques to identify and quantify major extractables.
- Evaluated extractable accumulation under multiple storage regimes.
Main Results:
- Identified the primary extractables associated with the polyolefin container material.
- Documented the levels of targeted extractables in test solutions.
- Demonstrated variability in extractable accumulation based on solution type and storage conditions.
Conclusions:
- Polyolefin containers can release extractables into biopharmaceutical solutions.
- The type of solution and storage conditions influence extractable levels.
- This research provides critical data for risk assessment and material selection in biopharmaceutical manufacturing.