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March 18, 2026Polymers6 citationsOpen Access

Hydrogels—Advanced Polymer Platforms for Drug Delivery

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R(Rodica Ene (Vatcu)AIAndreea-Teodora IacobIFIuliu Fulga

Key Points

  • This research investigates the role of hydrogels in optimizing drug administration and controlled release mechanisms.
  • Review of existing studies on hydrogels and their physicochemical properties.
  • Analysis of different types of polymeric materials used in hydrogel formulations.
  • Exploration of hydrogels' response to physiological stimuli and their functionalization strategies.
  • Hydrogels can effectively control drug release based on pH, temperature, and other stimuli.
  • Integration of hydrogels with biosensors has potential for real-time monitoring of drug delivery.
  • Emerging strategies demonstrate enhanced targeted release for various drug administration routes.

Abstract

Optimizing drug administration remains a central challenge in the development of modern therapies, especially in the context of conditions that require spatiotemporal control of active substance release. In this context, hydrogels have been intensively investigated as polymeric platforms for drug delivery, through their three-dimensional hydrophilic structure, tunable properties, and compatibility with biological environments. This analysis presents an integrated approach to hydrogels used in drug administration, addressing the physicochemical fundamentals, the constitutive polymeric materials, and the mechanisms of response to relevant physiological stimuli. Recent experimental studies have been discussed, which highlight the use of hydrogels based on natural, synthetic, and hybrid polymers for controlled and targeted release, in correlation with various administration routes, including oral, injectable, transmucosal, and topical ones. Advanced functionalization strategies that allow adaptive responses to pH, temperature, glucose, enzymes, and reactive oxygen species are also analyzed. Furthermore, emerging directions integrating hydrogels with biosensors, microdevices, and wireless communication systems for real-time monitoring and on-demand release are highlighted. Overall, the analysis emphasizes the role of smart hydrogels as multifunctional platforms for complex therapeutic strategies while also underlining the current challenges associated with clinical translation and long-term performance.

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Cite This Study

(Vatcu) et al. (2026) studied this question.

synapsesocial.com/papers/69ba44084e9516ffd37a5e0dhttps://doi.org/10.3390/polym18060709
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