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February 2, 202611 citationsOpen Access

Nanoemulgels as Advanced Topical Drug Delivery Systems: Mechanistic Insights and Therapeutic Applications in Skin Disorders, Infections, Wound Healing, and Cancer

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SJShery JacobANAnroop B. Nair

Key Points

  • The research aims to review the therapeutic applications and mechanisms of nanoemulgels in enhancing drug delivery through the skin.
  • Overview of skin architecture and implications for drug delivery
  • Distinction between transdermal and topical drug delivery systems
  • Discussion of drug transport mechanisms using nano-sized carriers
  • Critical review of formulation aspects and preparation methods for nanoemulgels
  • Overview of in vitro characterization and biological screening techniques
  • Nanoemulgels demonstrate enhanced drug penetration and prolonged residence time.
  • The integration of nanoemulsions and gels improves patient compliance.
  • Mechanistic insights reveal nano-sized carriers effectively overcome the stratum corneum barrier.
  • Comprehensive overview of patents highlights translational progress in nanoemulgel applications.
  • Current challenges and regulatory considerations emphasize the need for further development.

Abstract

Nanoemulgels have emerged as a promising hybrid drug delivery system that integrates the advantages of nanoemulsions and gels, offering enhanced drug penetration, prolonged residence time, and improved patient compliance. This review provides a comprehensive overview of the therapeutic applications of nanoemulgels in wound healing, microbial infections, skin cancer, and various dermatological disorders. The article begins with an overview of skin architecture and its implications for cutaneous drug delivery, followed by a clear distinction between transdermal and topical drug delivery systems. The mechanisms of drug transport into and through the skin are discussed in detail, highlighting the role of nano-sized carriers, particularly nanoemulsions, in overcoming the stratum corneum barrier. Mechanistic insights into nanocarrier-mediated cutaneous drug transport and their versatility as dermal delivery platforms are described. The formulation aspects of nanoemulgels, including their components and both high-energy and low-energy methods for nanoemulsion preparation, are critically discussed to elucidate their impact on formulation performance. An overview of in vitro characterization techniques and biological screening methods employed to evaluate nanoemulgel performance is presented, along with a tabulated compilation of relevant patents to highlight translational progress. Finally, current challenges, regulatory considerations, and future perspectives are discussed, underscoring the potential of nanoemulgels as a versatile and effective platform for advanced topical drug delivery.

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Cite This Study

Jacob et al. (2026) studied this question.

synapsesocial.com/papers/6981020cc1c9540dea813365https://doi.org/10.3390/ph19020247
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