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April 19, 2026Molecules0 citationsOpen Access

Smarter Skin Delivery: Nanosomes and Advanced Nanocarriers in Cutting-Edge Cosmetics

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BJBarbara JadachPoznan University of Medical SciencesZBZofia BielawnaPoznan University of Medical Sciences

Key Points

  • The aim is to summarize the use of nanocarriers in cosmetic products for enhanced skin delivery and safety.
  • Reviewed various nanocarrier structures including nanosomes, nanoemulsions, and polymer nanocapsules.
  • Discussed skin penetration pathways such as transepidermal and transappendageal.
  • Appraised safety considerations based on EU and FDA regulations.
  • Identified benefits of nanocarriers including improved solubility and stability.
  • Limited penetration of particles ≥20 nm through intact skin was noted, with exceptions under specific conditions.
  • Outlined the need for long-term toxicology research and standardization of testing methods.

Abstract

Nanosomes—lipid vesicles at the nanoscale—enable the encapsulation of both hydrophilic and lipophilic actives and are increasingly used as skin delivery systems in cosmetic products. Alongside nanoemulsions, polymer nanocapsules, and inorganic nanoparticles (e.g., TiO2, ZnO, Ag), they can enhance solubility, stability, residence time, and local bioavailability while enabling controlled release. This review summarizes nanocarrier structures, preparation concepts, and skin penetration pathways (transepidermal intercellular/transcellular and transappendageal), and discusses formulation factors that modulate delivery. We highlight applications in UV protection, anti-aging, and fragrance retention, focusing on lipid-based systems (liposomes/nanosomes, ethosomes, niosomes). Safety considerations are critically appraised with reference to EU and FDA frameworks, including physicochemical characterization, dermal penetration, irritation/sensitization, and genotoxicity testing. While most data indicate limited penetration through intact skin for particles ≥20 nm, enhanced uptake may occur under specific conditions (very small size, barrier impairment, mechanical stress), warranting careful risk assessment. We conclude with regulatory and sustainability perspectives and outline research priorities for long-term toxicology, in-use exposure, and standardization of methods.

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Cite This Study

Jadach et al. (2026) studied this question.

synapsesocial.com/papers/69e4741c010ef96374d8fe42https://doi.org/10.3390/molecules31081312
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