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激光光生物调节对伤口愈合过程中结缔组织重塑的影响。

Influence of laser photobiomodulation upon connective tissue remodeling during wound healing.

作者信息

Medrado Alena P, Soares Ana Prates, Santos Elisângela T, Reis Sílvia Regina A, Andrade Zilton A

机构信息

Laboratory of Experimental Pathology, Oswaldo Cruz Foundation, Rua Waldemar Falcão, 121, Salvador, Bahia 40.296-710, Brazil.

出版信息

J Photochem Photobiol B. 2008 Sep 18;92(3):144-52. doi: 10.1016/j.jphotobiol.2008.05.008. Epub 2008 Jul 7.

Abstract

The modulation of collagen fibers during experimental skin wound healing was studied in 112 Wistar rats submitted to laser photobiomodulation treatment. A standardized 8mm-diameter wound was made on the dorsal skin of all animals. In half of them, 0.2ml of a silica suspension was injected along the border of the wound in order to enhance collagen deposition and facilitate observation. The others received saline as vehicle. The treatment was carried out by means of laser rays from an aluminum-gallium arsenide diode semiconductor with 9mW applied every other day (total dose=4J/cm2) on the borders of the wound. Tissue sections obtained from four experimental groups representing sham-irradiated animals, laser, silica and the association of both, were studied after 3, 7, 10, 15, 20, 30 and 60 days from the laser application. The wounded skin area was surgically removed and submitted to histological, immunohistochemical, ultrastructural, and immunofluorescent studies. Besides the degree and arrangement of collagen fibers and of their isotypes, the degree of edema, the presence of several cell types especially pericytes and myofibroblasts, were described and measured. The observation of Sirius-red stained slides under polarized microscopy revealed to be of great help during the morphological analysis of the collagen tissue dynamic changes. It was demonstrated that laser application was responsible for edema regression and a diminution in the number of inflammatory cells (p<0.05). An evident increase in the number of actin-positive cells was observed in the laser-treated wounds. Collagen deposition was less than expected in silica-treated wounds, and laser treatment contributed to its better differentiation and modulation in all irradiated groups. Thus, laser photobiomodulation was able to induce several modifications during the cutaneous healing process, especially in favoring newly-formed collagen fibers to be better organized and compactedly disposed.

摘要

在112只接受激光光生物调节治疗的Wistar大鼠中,研究了实验性皮肤伤口愈合过程中胶原纤维的调节情况。对所有动物的背部皮肤制作一个直径8mm的标准化伤口。其中一半动物,沿着伤口边缘注射0.2ml二氧化硅悬浮液,以增强胶原沉积并便于观察。另一半动物接受生理盐水作为对照。通过铝镓砷二极管半导体发出的激光进行治疗,每隔一天在伤口边缘施加9mW(总剂量 = 4J/cm²)。在激光照射后的第3、7、10、15、20、30和60天,对代表假照射动物、激光、二氧化硅以及两者联合的四个实验组获取的组织切片进行研究。手术切除受伤皮肤区域,并进行组织学、免疫组织化学、超微结构和免疫荧光研究。除了描述和测量胶原纤维及其同型的程度和排列外,还对水肿程度、几种细胞类型特别是周细胞和平滑肌成纤维细胞的存在情况进行了描述和测量。在偏振显微镜下观察天狼星红染色的玻片,发现这对胶原组织动态变化的形态学分析有很大帮助。结果表明,激光照射可使水肿消退,并减少炎症细胞数量(p<0.05)。在激光治疗的伤口中观察到肌动蛋白阳性细胞数量明显增加。在二氧化硅处理的伤口中,胶原沉积少于预期,而激光治疗有助于所有照射组中胶原的更好分化和调节。因此,激光光生物调节能够在皮肤愈合过程中诱导多种改变,特别是有利于新形成的胶原纤维更好地组织化和紧密排列。

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