HydrogelsPaper

Hydrogel-Based Nanoparticles Drug Delivery Systems for Antifungal Therapy: A Smart Approach to Targeted Treatment

Dr. S. Amudha, M. Srinath · Academic Science Publications and Distributions · 2025

Hydrogel-based nanoparticles enhance antifungal therapy by improving drug delivery and overcoming resistance.

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Plain English summary

Fungal infections pose significant health risks, and existing antifungal treatments often fall short due to various challenges. This research reviews hydrogel-based nanoparticle systems that combine the benefits of hydrogels and nanoparticles to improve drug delivery for antifungal therapies. These systems allow for targeted and sustained release of antifungal drugs, potentially improving treatment outcomes.

Why this matters

This research is important because it addresses the pressing issue of fungal infections and the limitations of current antifungal treatments. By utilizing advanced hydrogel-based nanoparticle systems, the study offers a promising approach to enhance drug efficacy and reduce side effects, which could significantly impact healthcare.

Key findings

  • Hydrogel-based nanoparticles improve antifungal drug delivery.
  • They enhance site-specific and sustained drug release.
  • These systems reduce systemic side effects.
  • They help overcome fungal resistance mechanisms.
  • The review highlights therapeutic advantages and future perspectives.

What's new

The integration of hydrogel and nanoparticle technologies for antifungal therapy represents a new approach in drug delivery systems.

Limitations

The abstract does not provide specific case studies or detailed limitations of the hydrogel-nanoparticle systems.

Commercial context

The abstract does not indicate the commercial status or readiness of the hydrogel-based nanoparticle systems.

Publication

Publisher
Academic Science Publications and Distributions
Publication date
September 10, 2025
Research type
Paper
License
https://creativecommons.org/licenses/by/4.0

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Method note: Summaries and ratings on this page are generated by AI from the abstract only. Read the original paper for full context. · Model: gpt-4o-mini-2024-07-18