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Like Dissolves Like? A Comprehensive Evaluation of Partial Solubility Parameters to Predict Polymer–Drug Compatibility in Ultrahigh Drug-Loaded Polymer Micelles

Authors :
Lübtow, Michael M.
Haider, Malik Salman
Kirsch, Marius
Klisch, Stefanie
Luxenhofer, Robert
Source :
Biomacromolecules; August 2019, Vol. 20 Issue: 8 p3041-3056, 16p
Publication Year :
2019

Abstract

Despite decades of research, our understanding of the molecular interactions between drugs and polymers in drug-loaded polymer micelles does not extend much beyond concepts such as “like-dissolves-like” or hydrophilic/hydrophobic. However, polymer–drug compatibility strongly affects formulation properties and therefore the translation of a formulation into the clinics. Specific interactions such as hydrogen-bonding, π–π stacking, or coordination interactions can be utilized to increase drug loading. This is commonly based on trial and error and eventually leads to an optimized drug carrier. Unfortunately, due to the unique characteristics of each drug, the deduction of advanced general concepts remains challenging. Furthermore, the introduction of complex moieties or specifically modified polymers hampers systematic investigations regarding polymer–drug compatibility as well as clinical translation. In this study, we reduced the complexity to isolate the crucial factors determining drug loading. Therefore, the compatibility of 18 different amphiphilic polymers for five different hydrophobic drugs was determined empirically. Subsequently, the obtained specificities were compared to theoretical compatibilities derived from either the Flory–Huggins interaction parameters or the Hansen solubility parameters. In general, the Flory–Huggins interaction parameters were less suited to correctly estimate the experimental drug solubilization compared to the Hansen solubility parameters. The latter were able to correctly predict some trend regarding good and poor solubilizers, yet the overall predictive strength of Hansen solubility parameters is clearly unsatisfactory.

Details

Language :
English
ISSN :
15257797 and 15264602
Volume :
20
Issue :
8
Database :
Supplemental Index
Journal :
Biomacromolecules
Publication Type :
Periodical
Accession number :
ejs50464462
Full Text :
https://doi.org/10.1021/acs.biomac.9b00618