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June 4, 2026International Journal of Molecular Sciences0 citationsOpen Access

Characterization of Rosa damascena Callus-Derived Exosome-like Vesicles and Their Multifunctional Activities in Skin-Related Cellular Models

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BCByong Seung ChoHLHyun Jung LeeBSBogeun Son

Key Points

  • This study aims to isolate and characterize exosome-like vesicles from Rosa damascena and assess their biological activities in skin-related models.
  • Isolated exosome-like vesicles (RSC-EXO) from Rosa damascena callus culture medium.
  • Analyzed vesicle characteristics using nanoparticle tracking analysis and cryo-electron microscopy.
  • Evaluated biological activities in human dermal fibroblasts and melanoma cells regarding collagen synthesis, melanin production, and cytokine secretion.
  • RSC-EXO increased collagen synthesis in fibroblasts and improved biocompatibility compared to crude conditioned medium.
  • RSC-EXO reduced melanin production in α-MSH-stimulated B16F10 melanoma cells.
  • RSC-EXO suppressed secretion of IL-1α, IL-6, and TNF-α in LPS-stimulated RAW 264.7 macrophages.

Abstract

Plant-derived extracellular vesicles (PDEVs) are emerging as promising bioactive materials for biomedical and dermatological applications. In this study, we isolated and characterized exosome-like vesicles derived from Rosa damascena callus culture medium (RSC-EXO) and evaluated their molecular features and biological activities in skin-related cellular models. Nanoparticle tracking analysis and cryo-electron microscopy showed that RSC-EXO exhibited a nanoscale size distribution and spherical morphology. Western blotting confirmed enrichment of the plant EV-associated markers PEN1 and TET8. RSC-EXO were efficiently internalized by human dermal fibroblasts and showed markedly improved biocompatibility compared with crude conditioned medium (RSC-CM). Functionally, RSC-EXO significantly increased collagen synthesis and showed a trend toward enhanced wound closure in fibroblasts. In addition, RSC-EXO reduced melanin production in α-MSH-stimulated B16F10 melanoma cells and suppressed the secretion of pro-inflammatory cytokines, including IL-1α, IL-6, and TNF-α, in LPS-stimulated RAW 264.7 macrophages. Proteomic analysis revealed a distinct cargo enriched in stress-, defense-, and metabolism-related proteins, while small RNA sequencing identified a heterogeneous small RNA population containing a limited fraction of miRNA-sized reads. Collectively, these findings suggest that RSC-EXO represents a biologically active plant-derived vesicle population with regenerative and anti-inflammatory activity observed in vitro in skin-related cellular models and support its potential as a promising platform for future cosmeceutical and dermatological applications.

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Cite This Study

Cho et al. (2026) studied this question.

synapsesocial.com/papers/6a211670d499ed480b16f5aahttps://doi.org/10.3390/ijms27114938
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