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March 4, 20260 citationsOpen Access

Numerical estimation of drug loading contents in amphiphilic nanogels

AMAnte MarkovinaFreie Universität BerlinCLClara López-IglesiasRCRuiguang CuiFreie Universität Berlin

Key Points

  • The central aim is to optimize drug loading in amphiphilic nanogels by developing a quantitative framework for ANG-drug interactions.
  • Developed a framework based on Flory–Huggins interaction parameters (χ)
  • Adjusted correction factor (α) to account for different interaction contributions
  • Used a model ANG and a library of hydrophobic drugs and dyes for testing
  • Established selection rules for α based on dominant interaction types
  • Correlated adjusted χ values with experimental loading capacities.
  • Established a universal calibration curve linking χ to drug loading across various ANG–drug systems
  • Found strong negative correlations between adjusted χ values and experimental loading capacities
  • Proposed predictive potential of solubility parameter-based models for ANG design.

Abstract

Amphiphilic nanogels (ANGs) are promising colloidal carriers to improve bioavailability of poorly water-soluble drugs. In contrast to conventional hydrophilic nanogels, ANGs contain additional hydrophobic domains in their network to load hydrophobic cargos. However, optimizing drug loading remains labour-intensive due to the lack of quantitative tools that accurately capture the complex ANG–drug interactions. To address this limitation and assess drug compatibility, we developed a quantitative framework based on Flory–Huggins interaction parameters ( χ ). Key to our approach is the empirical adjustment of the correction factor α to account for unequal contributions of dispersion forces, polar interactions, and hydrogen bonds. Using a model ANG and a library of hydrophobic drugs and dyes, we established selection rules for α based on the dominant interaction type: α = 1 for dispersion-dominated, α = 0.7 for polar, and α = 0.3 for hydrogen bond-dominated systems. This enabled systematic grouping of cargos and revealed strong monotonic negative correlations between adjusted χ values and experimental loading capacities. The resulting universal calibration curve links χ to drug loading content across diverse ANG–drug systems. Consequently, our framework suggests predictive potential of solubility parameter-based models, reduces experimental burden, and supports the rational design of ANG carriers tailored to specific hydrophobic drugs.

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Cite This Study

Markovina et al. (2026) studied this question.

synapsesocial.com/papers/69a7cce8d48f933b5eed8be6https://doi.org/10.17169/refubium-51400
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