Peccin Maria Stella, Renno Ana Claudia Muniz, de Oliveira Flavia, Giusti Paulo Ricardo, Ribeiro Daniel Araki
Department of Human Movement Sciences, Federal University of São Paulo, UNIFESP, SP, Brazil.
J Cosmet Laser Ther. 2012 Dec;14(6):286-9. doi: 10.3109/14764172.2012.738917.
The purpose of this study was to evaluate the influence of helium-neon laser on skin injury in rabbits. For this purpose, 15 New Zealand rabbits underwent bilateral skin damage in leg. Helium-neon laser light, at a fluence of 6 J∕cm2 and wavelength of 632.8 nm, was applied on the left legs (laser group). The right leg lesions (control group) served as negative control. All sections were histopathologically analyzed using HE sections. The results showed little infiltration of inflammatory cells, with proliferation of fibroblasts forming a few fibrous connective tissue after 1 week post-injury. The lesion on the 3rd week was characterized by granulation tissue, which formed from proliferated fibrous connective tissue, congested blood vessels and mild mononuclear cell infiltration. On the 5th week, it was observed that debris material surrounded by a thick layer of connective tissue and dense collage, fibroblasts cells present in the dermis covered by a thick epidermal layer represented by keratinized epithelium. Taken together, our results suggest that helium-neon laser is able to improve skin repair in rabbits at early phases of recovery.
本研究的目的是评估氦氖激光对兔皮肤损伤的影响。为此,15只新西兰兔的腿部双侧皮肤受到损伤。将能量密度为6 J∕cm2、波长为632.8 nm的氦氖激光照射在左腿部(激光组)。右腿部损伤(对照组)作为阴性对照。所有切片均采用苏木精-伊红(HE)切片进行组织病理学分析。结果显示,损伤后1周炎症细胞浸润较少,有成纤维细胞增殖形成少量纤维结缔组织。第3周的损伤以肉芽组织为特征,肉芽组织由增生的纤维结缔组织、充血的血管和轻度单核细胞浸润形成。在第5周时,观察到由厚层结缔组织和致密胶原包围的碎屑物质,真皮中存在的成纤维细胞被以角化上皮为代表的厚表皮层覆盖。综上所述,我们的结果表明,氦氖激光能够在兔恢复的早期阶段促进皮肤修复。