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Effects of subcutaneous injection of ozone during wound healing in rats

机译:大鼠伤口愈合过程中皮下注射臭氧的影响

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摘要

Fibroblast growth factor 2 (FGF2) regulates the wound repair process and it is secreted by inflammatory and endothelial cells, and by myofibroblasts. This study aimed to establish the expression patterns of FGF2 and myofibroblastic differentiation during wound healing in rats treated with subcutaneous ozone injection. We created full-thickness excisional wounds in rats, and the healing process was analyzed through morphometric analyses and digital quantification of immunoreactivity of smooth muscle actin and FGF2. Ozone therapy-treated wounds presented granulation tissue with a reduced number of inflammatory cells and greater dermal cellularity, and intense collagen deposition. FGF2 immunoreactivity, microvessel density, and amount of myofibroblasts were significantly higher in treated wounds compared to controls. In conclusion, it was demonstrated that subcutaneous injections of ozone accelerate and ameliorate wound repairing process. Moreover, injectable ozone therapy's action mechanism may be associated with FGF2 overexpression.
机译:成纤维细胞生长因子2(FGF2)调节伤口修复过程,它由炎症和内皮细胞分泌,并通过肌纤维细胞分泌。该研究旨在建立皮下臭氧注射液治疗大鼠伤口愈合期间FGF2和肌纤维囊肿分化的表达模式。我们在大鼠中创造了全厚的切除伤口,通过平滑肌肌动蛋白和FGF2的免疫反应性分析愈合过程。臭氧治疗治疗的伤口呈现造粒组织,炎性细胞数量减少,更强大的皮肤细胞,并且强烈的胶原沉积。与对照相比,在处理的伤口中,FGF2免疫反应性,微血管密度和肌纤维素的量显着较高。总之,证明皮下注射臭氧加速和改善伤口修复过程。此外,可注射臭氧治疗的动作机制可以与FGF2过表达相关联。

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