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Phase-separated polymer blends for controlled drug delivery by tuning morphology

Chemistry

Phase-separated polymer blends for controlled drug delivery by tuning morphology

M. Olsson, R. Storm, et al.

This study reveals a groundbreaking formulation strategy utilizing phase-separated polymer blends to precisely control drug release rates while enhancing the stability of active pharmaceutical ingredients in oral solid dosage forms. Conducted by a team of experts including Martina Olsson and Robin Storm, this research explores the creation of porous networks that dictate release characteristics, shedding light on the relationship between morphology and drug release.

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~3 min • Beginner • English
Abstract
Controlling drug release rate and providing physical and chemical stability to the active pharmaceutical ingredient are key properties of oral solid dosage forms. Here, we demonstrate a formulation strategy using phase-separated polymer blends where the morphology provides a route for tuning the drug release profile. By utilising phase separation of a hydrophobic and a hydrophilic polymer, the hydrophilic component will act as a channelling agent, creating a porous network upon dissolution that will dictate the release characteristics. With ptychographic X-ray tomography and scanning transmission X-ray microscopy we reveal how the morphology depends on both polymer fraction and presence of drug, and how the drug is distributed over the polymer domains. Combining X-ray imaging results with dissolution studies reveal how the morphologies are correlated with the drug release and showcase how tuning the morphology of a polymer matrix in oral formulations can be utilised as a method for controlled drug release.
Publisher
Communications Materials
Published On
Oct 18, 2024
Authors
Martina Olsson, Robin Storm, Linnea Björn, Viktor Lilja, Leonard Krupnik, Yang Chen, Polina Naidjonoka, Ana Diaz, Mirko Holler, Benjamin Watts, Anette Larsson, Marianne Liebi, Aleksandar Matic
Tags
drug release
polymer blends
oral solid dosage
morphology
X-ray microscopy
formulation strategy
active pharmaceutical ingredient
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