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Floating electrode-dielectric barrier discharge-based plasma promotes skin regeneration in a full-thickness skin defect mouse model
- Subramaniam, Mohana Devi;
- Bae, Joon Suk;
- Son, Jiwon;
- Anggradita, Laurensia Danis;
- Kim, Min-Kyu;
- ... Nam, seung min;
- ... Hwang, Yongsung;
- 외 4명
WEB OF SCIENCE
10SCOPUS
11초록
Wound healing involves a complex and dynamic interplay among various cell types, cytokines, and growth factors. Macrophages and transforming growth factor-beta 1 (TGF-beta 1) play an essential role in different phases of wound healing. Cold atmospheric plasma has a wide range of applications in the treatment of chronic wounds. Hence, we aimed to investigate the safety and efficacy of a custom-made plasma device in a full-thickness skin defect mouse model. Here, we investigated the wound tissue on days 6 and 12 using histology, qPCR, and western blotting. During the inflammation phase of wound repair, macrophages play an important role in the onset and resolution of inflammation, showing decreased F4/80 on day 6 of plasma treatment and increased TGF-beta 1 levels. The plasma-treated group showed better epidermal epithelialization, dermal fibrosis, collagen maturation, and reduced inflammation than the control group. Our findings revealed that floating electrode-dielectric barrier discharge (FE-DBD)-based atmospheric-pressure plasma promoted significantly faster wound healing in the plasma-treated group than that in the control group with untreated wounds. Hence, plasma treatment accelerated wound healing processes without noticeable side effects and suppressed pro-inflammatory genes, suggesting that FE-DBD-based plasma could be a potential therapeutic option for treating various wounds.
키워드
- 제목
- Floating electrode-dielectric barrier discharge-based plasma promotes skin regeneration in a full-thickness skin defect mouse model
- 저자
- Subramaniam, Mohana Devi; Bae, Joon Suk; Son, Jiwon; Anggradita, Laurensia Danis; Kim, Min-Kyu; Lee, Min Yong; Jang, Seokyoon; Choi, Kwangok; Lee, Justine C.; Nam, seung min; Hwang, Yongsung
- 발행일
- 2024-05
- 유형
- Article
- 권
- 14
- 호
- 3
- 페이지
- 605 ~ 616