Gebril Sahar M, El Din M Lasheen Fakhr, Khalaf Mohamed, Abdelhamed Amr, Bahkali Manal I, El Hossary Fayez, Hussein Mahmoud Rezk Abdelwahed
Histology and Cell Biology Department, Faculty of Medicine, Sohag University, Sohag city 82524, Egypt.
Zoology Department, Faculty of Science, Sohag University, Sohag city 82524, Egypt.
Biomolecules. 2025 Jun 24;15(7):924. doi: 10.3390/biom15070924.
Cold atmospheric plasma (CAP) interacts with tissues, leading to fast wound disinfection. Given the frequent global burden of burn injuries and the risks of infection associated with acute full-thickness burns (FTBs), this investigation examined CAP as a potential therapeutic method for wound healing due to its antimicrobial and pro-healing effects. Here, we examined the impacts of CAP on the healing of wounds resulting from acute FTSBs. We established an animal model that included four groups: (1) healthy control animals without burns, (2) untreated animals with acute FTSBs, (3) animals with acute FTSBs treated with CAP for 5 s per day for 21 days, and (4) animals with acute FTSBs treated with CAP for 10 s per day for 21 days. Wound healing was assessed using immunohistological methods. In animals with FTSBs, CAP therapy was accompanied by (i) accelerated wound closure, (ii) enhanced regeneration of the dermis and epidermis, and (iii) increased protein expression of transforming growth factor-β1 (TGF-β1) and connective tissue growth factor (CTGF). These changes were more pronounced following CAP treatment for 10 s per day compared to CAP treatment for 5 s per day.
冷大气等离子体(CAP)与组织相互作用,可实现快速伤口消毒。鉴于全球烧伤负担频繁以及急性全层烧伤(FTB)相关的感染风险,本研究考察了CAP因其抗菌和促进愈合作用作为伤口愈合潜在治疗方法的可能性。在此,我们研究了CAP对急性FTB所致伤口愈合的影响。我们建立了一个动物模型,包括四组:(1)无烧伤的健康对照动物,(2)未经治疗的急性FTB动物,(3)急性FTB动物,每天接受5秒CAP治疗,持续21天,以及(4)急性FTB动物,每天接受10秒CAP治疗,持续21天。使用免疫组织学方法评估伤口愈合情况。在患有FTB的动物中,CAP治疗伴随着(i)伤口闭合加速,(ii)真皮和表皮再生增强,以及(iii)转化生长因子-β1(TGF-β1)和结缔组织生长因子(CTGF)的蛋白表达增加。与每天5秒的CAP治疗相比,每天10秒的CAP治疗后这些变化更为明显。