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June 26, 2026The Journal of Microbiology0 citations

Adipose tissue-derived stem cell exosomes enhance skin barrier function and show exploratory associations with the skin mycobiome in aging skin

BCBo-Yun ChoiHKHye-Jin KimMKMyeong Jae Kim

Key Points

  • This research aims to explore the effects of adipose tissue-derived stem cell exosomes on skin barrier function and associations with the skin microbiome in aging skin.
  • Conducted a split-face randomized controlled trial in 16 adults aged ≥ 40 years with visible facial aging.
  • One facial side treated with ultrasound-assisted delivery of human ASCE (HACS) at two-week intervals for three sessions.
  • Biophysical assessments including TEWL, hydration, and elasticity measured at weeks 2, 4, and 8, along with microbiome analysis via 16S rRNA and ITS1 sequencing.
  • HACS treatment significantly reduced TEWL (p = 0.006 at week 2; p = 0.009 at week 8) and increased hydration (p < 0.001 at all time points).
  • Elasticity measurements showed significant improvement (R2/R5/R7 values, p < 0.001).
  • Fungal taxa showed positive associations with skin parameters on the HACS-treated side, while bacterial diversity remained unchanged.

Abstract

Skin aging increases transepidermal water loss (TEWL), reduces elasticity, and perturbs the skin microbiome. Adipose tissue-derived stem cell exosomes (ASCE) show regenerative potential; however, their clinical effects on skin physiology and microbiome remain unclear. We conducted a split-face, randomized controlled trial in 16 adults aged ≥ 40 years with visible facial aging. One facial side received ultrasound-assisted transdermal delivery of a human ASCE-containing solution (HACS), whereas the other side received normal saline, at two-week intervals for three sessions. Biophysical outcomes (TEWL, stratum corneum hydration, and elasticity parameters R2/R5/R7) were assessed at baseline and week 2, 4, and 8. Wrinkles, pigmentation, and sebum levels were quantified using Mark-Vu imaging, and the Physician’s Global Aesthetic Improvement Scale (PGAIS) and patient satisfaction assessment scores were recorded. Skin swabs from ten participants were subjected to 16S rRNA and ITS1 sequencing. HACS treatment significantly reduced TEWL (p = 0.006 at week 2; p = 0.009 at week 8) and increased hydration (p < 0.001 at all time points) with a significant increase in elasticity (R2/R5/R7 values, p < 0.001). Both the PGAIS and patient satisfaction scores were significantly higher on the experimental side. Bacterial α/β-diversity remained largely unchanged, and no bacterial taxa remained significantly associated with skin parameters after FDR correction. In contrast, several fungal taxa showed significant positive associations with skin parameters after FDR correction, detectable only on the HACS-treated side. No significant adverse events were observed. HACS improved barrier function, elasticity, and aesthetic outcomes, whereas microbiome analyses suggested a modest fungal response associated with treatment-related skin changes in aging skin.

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Cite This Study

Choi et al. (2026) studied this question.

synapsesocial.com/papers/6a3e1a93030ad1a9b3092fbdhttps://doi.org/10.71150/jm.2603020
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Also Consider

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

  1. 1Understanding exosomes in facial esthetics and skin aging.2026
  2. 2Understanding exosomes in facial esthetics and skin aging2026 · 3 citations
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  4. 4Biologically Distinct, Clinically Convergent: A Comparative Study of Umbilical Cord– and Adipose–Derived Mesenchymal Stem Cell Exosomes in Human Skin Regeneration2025
  5. 5The Combined Anti-Aging Effect of Hydrolyzed Collagen Oligopeptides and Exosomes Derived from Human Umbilical Cord Mesenchymal Stem Cells on Human Skin Fibroblasts2024 · 11 citations