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PMID: 41904426 已发表 · epublish 英语

Comparative analysis of horsetail and lavender-derived nanovesicles in wound healing and antioxidant defense.

BMC biotechnology ·第 26 卷 ·第 1 期 ·2026-03-28

Aşık S, Okay A, Karaca B, Derkuş B, Eylem CC, Nemutlu E, Aras ES, Büyük İ

摘要

BACKGROUND: Plant-derived exosome-like nanovesicles (pEVs) have emerged as promising natural biomaterials due to their safety profile, high biocompatibility, and rich bioactive cargo. In particular, pEVs have attracted interest because of their roles in intercellular communication. This study aimed to isolate and comprehensively characterize pEVs derived from Equisetum arvense (H-EVs) and Lavandula angustifolia (L-EVs), and to evaluate their morphological features, protein content, and biological functions, with a specific focus on wound healing, senescence, oxidative stress modulation, and antimicrobial activity. RESULTS: H-EVs and L-EVs displayed spherical morphology, high stability, narrow size distribution, and substantial protein content as confirmed by TEM and DLS analyses. In vitro assays in human dermal fibroblasts (HDFs) and keratinocytes (HaCaT) demonstrated that both pEV types were non-cytotoxic and significantly enhanced cellular metabolic activity. Scratch wound assays revealed markedly accelerated wound closure, driven by a combination of cell migration and proliferation. Senescence analyses showed reduced β-galactosidase activity and improved cellular morphology following with pEV treatment. Antioxidant assessments indicated increased total antioxidant capacity, decreased oxidant load, and a reduced oxidative stress index. Gene expression analysis by qPCR confirmed upregulation of COL1A1, COL1A2, and FGF, supporting extracellular matrix production and tissue repair. Additionally, both H-EVs and L-EVs exhibited notable antibacterial and antifungal activities. CONCLUSIONS: H-EVs and L-EVs effectively alleviate oxidative stress and cellular senescence while promoting wound healing through enhanced collagen synthesis, cell migration, and proliferation. Their non-cytotoxic nature, combined with antioxidant, anti-senescent, and antimicrobial properties, underscores their versatility and therapeutic potential. These findings highlight that pEVs as safe and effective biotherapeutic candidates, supporting their future clinical translation in dermatology and regenerative medicine.

关键词
Antimicrobial effect Cellular senescence Horsetail Lavender Plant-derived exosome-like nanovesicles (pEVs) Wound healing
文献信息
期刊
BMC biotechnology
期刊简称
BMC Biotechnol
ISSN
1472-6750
发表日期
2026-03-28
语言
英语
国家/地区
England
NLM ID
101088663
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