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首页> 外文期刊>Journal of Biophotonics >In vivo multimodal microscopy for detecting bone-marrow-derived cell contribution to skin regeneration
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In vivo multimodal microscopy for detecting bone-marrow-derived cell contribution to skin regeneration

机译:体内多峰显微镜用于检测骨髓来源的细胞对皮肤再生的贡献

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摘要

Bone-marrow (BM)-derived cells have been shown to be capable of aiding skin regeneration in vivo by differentiating into keratinocytes. However, the conditions under which this occurs are not fully understood. Characterizing innate mechanisms of skin regeneration by stem cells in vivo is important for the area of stem cell biology. In this study, we investigate the use of novel in vivo imaging technology for characterizing the contribution of BM-derived cells to regeneration of the epidermis in mouse skin in vivo. In vivo imaging provides the ability to non-invasively observe the spatial positions and morphology of the BM-derived cells. Using a GFP BM-transplanted mouse model and in vivo multimodal microscopy, BM-derived cells can be observed in the skin. Our in vivo imaging method was used to search for the presence and identify the 3D spatial distribution of BM-derived cells in the epidermis of the skin under normal conditions, following wound healing, and after syngeneic skin grafting. We did not observe any evidence of BM-derived keratinocytes under these conditions, but we did observe BM-derived dendritic cells in the skin grafts. In vivo multimodal imaging has great potential for characterizing the conditions under which BM-derived cells contribute to skin regeneration. ((c) 2014 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim)
机译:骨髓(BM)来源的细胞已被证明能够分化为角质形成细胞,从而在体内帮助皮肤再生。但是,尚未完全了解发生这种情况的条件。表征体内干细胞再生皮肤的先天机制对于干细胞生物学领域很重要。在这项研究中,我们调查了使用新颖的体内成像技术来表征BM衍生细胞对小鼠皮肤表皮再生的贡献。体内成像提供了无创观察BM衍生细胞的空间位置和形态的能力。使用GFP BM移植的小鼠模型和体内多峰显微镜,可以在皮肤中观察到BM衍生的细胞。我们的体内成像方法用于搜索正常情况下,伤口愈合后和同种皮肤移植后皮肤表皮中BM衍生细胞的存在并确定其3D空间分布。在这些条件下,我们没有观察到任何来自BM的角质形成细胞的证据,但是我们确实在皮肤移植物中观察到了BM的树突状细胞。体内多峰成像具有很大的潜力来表征BM来源的细胞促进皮肤再生的条件。 ((c)2014 WILEY-VCH Verlag GmbH&Co.KGaA,Weinheim)

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