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首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Ultrastructural and autoradiographical analysis show a faster skin repair in He-Ne laser-treated wounds
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Ultrastructural and autoradiographical analysis show a faster skin repair in He-Ne laser-treated wounds

机译:超微结构和放射自显影分析显示,He-Ne激光治疗伤口的皮肤修复更快

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There are evidences that low-intensity red laser radiation is capable to accelerate wound healing. Nowadays, this therapy has been gradually introduced in clinical practice although mechanisms underlying laser effects are poorly understood. To better understand the photobiological effects of laser radiation, this study investigated by electron microscopy, immunohistochemistry and autoradiography the morphological and functional features of irradiated and none irradiated injured mice skin. Full-thickness skin lesions were cre-2 ated on the back of mice and irradiated on days 1, 5, 8, 12, and 15 post-wounding with a He-Ne laser (lambda = 632.8 nm), dose 1 J/cm(2), exposure time 3 min. Non-irradiated lesions were used as a control. The mice were inoculated with H-3-proline and sacrificed one hour after on the 8th, 15th and 22nd days to histological and radioautographical analysis. The irradiated-lesions showed a faster reepithelization compared with control lesions. The irradiated dermis contained a higher number of activated fibroblasts compared to control group and, most of them showed several cytoplasmic collagen-containing phagosomes. In irradiated-lesions, smooth muscle a-actin positive cells predominated, which correspond to a higher number of myofibroblasts observed in the electron microscope. Moreover, laser radiation reduced the local inflammation and appears to influence the organization of collagen fibrils in the repairing areas. Quantitative autoradiography showed that the incorporation of H-3-proline was significantly higher in irradiated-dermis on the 15th day post-wounding (p < 0.05). These results suggest that laser radiation may accelerate cutaneous wound healing in a murine model. (c) 2006 Elsevier B.V. All rights reserved.
机译:有证据表明,低强度的红色激光辐射能够加速伤口愈合。如今,尽管对激光作用的潜在机制了解甚少,但该疗法已逐步引入临床实践。为了更好地了解激光辐射的光生物学效应,本研究通过电子显微镜,免疫组织化学和放射自显影技术研究了受辐照和未辐照的受伤小鼠皮肤的形态和功能特征。在小鼠背部创建全层皮肤损伤,并在伤口后第1、5、8、12和15天用He-Ne激光(λ= 632.8 nm)照射,剂量为1 J / cm (2),曝光时间3分钟。未照射的病变用作对照。将小鼠用H-3-脯氨酸接种,并在第8、15和22天一小时后处死以进行组织学和放射自显影分析。与对照病变相比,受辐照病变表现出更快的重新上皮。与对照组相比,受辐照的真皮中含有更多的活化成纤维细胞,并且大多数都显示出几个含有细胞质胶原的吞噬体。在辐照病变中,平滑肌α-肌动蛋白阳性细胞占主导地位,这对应于在电子显微镜下观察到的成肌纤维细胞数量增加。而且,激光辐射减少了局部炎症,并且似乎影响了修复区域中胶原纤维的组织。定量放射自显影显示,在伤后第15天,辐照真皮中H-3-脯氨酸的掺入量显着更高(p <0.05)。这些结果表明,激光辐射可以加速鼠模型中皮肤伤口的愈合。 (c)2006 Elsevier B.V.保留所有权利。

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