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August 22, 2026ViewOpen Access

Plant‐derived nanovesicles as potential drug delivery systems for topical use: Emerging applications in dermatology and cosmetology

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Authors

DFDorotea FioreBPBeatrice PellegriniAMAntonia Mancuso

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Overview

Narrative review demonstrates the therapeutic potential of plant-derived nanovesicles for topical drug delivery across the skin barrier, suggesting a sustainable alternative to synthetic carriers.

Key Points

  • To evaluate the isolation, characterization, and therapeutic potential of plant-derived nanovesicles as topical drug delivery systems in dermatology and cosmetology.
  • Reviewed literature on botanical sources, isolation, purification, characterization, and storage parameters affecting plant-derived nanovesicle yield and purity.
  • Compared plant-derived nanovesicles with conventional synthetic vesicular nanocarriers in terms of skin barrier interaction, safety profiles, industrial scalability, and regulatory barriers.
  • Identified that lipid-bilayer nanovesicles from plants efficiently traverse the stratum corneum while transporting bioactive proteins, lipids, and nucleic acids.
  • Summarized preclinical evidence confirming that plant-derived nanovesicles offer enhanced biocompatibility, intrinsic biological activity, and sustainability relative to conventional synthetic nanocarriers.

Cite This Study

Fiore et al. (2026) studied this question.

synapsesocial.com/papers/6a898131ca7ade938187f2f2https://doi.org/10.1002/viw2.70194
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Molecular mechanisms and translational potential of plant-derived nanovesicles in skin care and regeneration2026
  2. 2Plant-derived nanovesicles: the intelligent nanoplatforms for therapeutics and drug delivery.2026 · 2 citations
  3. 3From Nature to Nanomedicine: Engineered Plant-Derived Nanovesicles for Skin Disease2026 · 2 citations
  4. 4Plant-derived bioactive compounds in nanocarrier systems for dermatological applications2026
  5. 5Plant-Derived Vesicle-like Nanoparticles: The Next-Generation Drug Delivery Nanoplatforms2024 · 33 citations