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Intravital insights in skin wound healing using the mouse dorsal skin fold chamber

机译:使用小鼠背侧皮肤折叠腔在皮肤伤口愈合中的体内见解

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摘要

The skin fold chamber is one of the most accepted animal models for studying the microcirculation both in health and disease. Here we describe for the first time the alternative use of the skin fold chamber in mice for intravital microscopic investigation of skin regeneration after creating a full dermal thickness wound. The dorsal skin fold chamber was implanted in hairless SKH1-hr mice and a full dermal thickness wound (area ~4 mm2) was created. By means of intravital fluorescence microscopy, the kinetics of wound healing were analyzed for 12 days post wounding with assessment of epithelialization and nutritive perfusion. The morphology of the regenerating skin was characterized by hematoxylin-eosin histology and immunohistochemistry for proliferation and microvessel density. The model allows the continuous visualization of wound closure with complete epithelialization at day 12. Furthermore, a sola cutis se reficientis could be described by an inner circular ring of vessels at the wound margin surrounded by outer radial passing vessels. Inner circular vessels presented initially with large diameters and matured towards diameters of less than 15 µm for conversion into radial spreading outer vessels. Furthermore, wound healing showed all diverse core issues of skin repair. In summary, we were able to establish a model for the analysis of microcirculation in the healing skin of the mouse. This versatile model allows distinct analysis of new vessel formation and maturation in regenerating skin as well as evaluation of skin healing under different pathologic conditions.
机译:皮肤褶皱室是研究健康和疾病中微循环的最广为接受的动物模型之一。在这里,我们首次描述了在创建完整的真皮厚度伤口后,在小鼠体内对皮肤再生进行活体显微镜研究的替代方法。将背部皮肤折叠室植入无毛的SKH1-hr小鼠中,并形成全真皮厚度伤口(面积约4 mm 2 )。通过活体荧光显微术,在伤口后12天分析伤口愈合的动力学,并评估上皮化和营养性灌注。苏木精-伊红组织学和免疫组化的增殖和微血管密度的特征是再生皮肤的形态。该模型允许在第12天连续观察伤口闭合并完整上皮化。此外,可利用创面的圆形内环在外缘通过血管包围的创口处描述皮肤可逆性。最初呈大直径的圆形内容器逐渐趋于小于15 µm的直径,可转换为径向扩展的外部容器。此外,伤口愈合显示出皮肤修复的所有不同核心问题。总之,我们能够建立一个模型,用于分析小鼠愈合皮肤中的微循环。这种多功能的模型可以对再生皮肤中新血管的形成和成熟进行不同的分析,并可以评估不同病理条件下的皮肤愈合情况。

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