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March 8, 2026AAPS PharmSciTech2 citationsOpen Access

Solubility-Permeability-Matrix Interplay in Percutaneous Absorption Exemplified by Theophylline

SESophia EngelJAJozef Al-GousousCGChristiane Grünewald

Key Points

  • This research aims to understand how solubility, permeability, and matrix properties affect transdermal absorption of aminophylline and theophylline.
  • Used Franz diffusion cells with porcine ear skin for skin permeation assessment.
  • Conducted complementary release studies using dialysis membranes.
  • Compared various matrix-type transdermal patches including hydroxypropyl methylcellulose and silicone-based Bio-PSA.
  • Aminophylline demonstrated significantly higher transdermal flux compared to theophylline in both matrix systems.
  • Geraniol enhanced skin permeation by disrupting lipid layers in the stratum corneum.
  • Transcutol P improved drug solubility but had limited skin interaction and slow release, yielding modest enhancement.

Abstract

The stratum corneum represents the main barrier to transdermal drug delivery, particularly for hydrophilic and ionized compounds such as aminophylline. In this study, the solubility-permeability-matrix interplay was investigated using aminophylline and theophylline as model drugs in various matrix-type transdermal patches based on either hydroxypropyl methylcellulose (HPMC) or silicone-based Bio-PSA (Biomedical Pressure-Sensitive Adhesive). Franz diffusion cells with porcine ear skin were used to evaluate in vitro skin permeation, and complementary release studies were conducted using dialysis membranes. Aminophylline exhibited significantly higher transdermal flux than theophylline in both matrix systems, despite its increased hydrophilicity and ionization. This effect is attributed to its capacity to maintain high thermodynamic activity when formulated as a suspension, thereby intensifying chemical potential gradients and supporting aqueous pathway permeation. Penetration enhancers showed distinct mechanisms of action. Geraniol, a lipophilic terpene alcohol, significantly increased skin permeation by disrupting stratum corneum lipid lamellae and facilitating transient hydrophilic channels. In contrast, Transcutol P acted primarily by increasing drug solubility within the matrix and forming a reservoir in the stratum corneum. However, its enhancing effect remained modest due to limited interaction with the barrier and slow release from the silicone matrix. These findings highlight the critical role of drug solubility and enhancer molecular properties in the transdermal delivery of hydrophilic drugs. In addition, matrix parameters like thickness, hydration and release properties need to be properly engineered for making optimal use of the involved solubility-permeability interplay.

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Cite This Study

Engel et al. (2026) studied this question.

synapsesocial.com/papers/69ada8dfbc08abd80d5bc3d6https://doi.org/10.1208/s12249-026-03377-8
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