Li Haihong, Fu Xiaobing, Ouyang Yunshu, Cai Cunliang, Wang Jun, Sun Tongzhu
Wound Healing and Cell Biology Laboratory, Burns Institute, The First Affiliated Hospital (304th Hospital), General Hospital of PLA, Trauma Center of Postgraduate Medical College, Beijing, People's Republic of China.
Cell Tissue Res. 2006 Dec;326(3):725-36. doi: 10.1007/s00441-006-0270-9. Epub 2006 Aug 12.
Adult bone-marrow-derived mesenchymal stem cells (MSCs) are well-established as having the capacity to differentiate into cells with mesodermal, ectodermal, and endodermal characteristics and can leave their niche to home toward and engraft within foreign tissues. To investigate whether adult MSCs contribute to the repair of skin appendages after injury, BrdU-labeled MSCs were co-cultured with heat-shocked confluent sweat gland cells (SGCs) in vitro and later intravenously injected into full-thickness skin wounds in rats. When adult MSCs were co-cultured with heat-shocked SGCs, a subset of adult MSCs differentiated into SGCs, the percentage of differentiation being enhanced by epidermal growth factor and the injured microenviroment, but weakened by PD98059. The ERK (extracellular signal-regulated kinase) pathway, especially pERK, was involved in the phenotype conversion of human MSCs into human SGC. Labeled MSCs were noted in hair follicles, sebaceous glands, blood vessels, and dermis in full-thickness wounds, and the incorporated cells in hair follicles and sebaceous glands were also positive for pan-cytokeratin. After wound healing, some labeled MSCs returned to the bone marrow, whereas other were retained in the dermis. We conclude that adult MSCs have the capacity to dock at specific sites, to contribute to wound healing of skin appendages, and to home toward marrow, and that engraftment of bone-marrow-derived cells is a functional event.
成人骨髓间充质干细胞(MSCs)已被充分证实具有分化为具有中胚层、外胚层和内胚层特征细胞的能力,并且能够离开其生态位,趋向并植入异体组织。为了研究成人MSCs是否有助于损伤后皮肤附属器的修复,将用溴脱氧尿苷(BrdU)标记的MSCs与热休克的汇合汗腺细胞(SGCs)在体外共培养,随后静脉注射到大鼠的全层皮肤伤口中。当成人MSCs与热休克的SGCs共培养时,一部分成人MSCs分化为SGCs,表皮生长因子和损伤的微环境可提高分化百分比,但PD98059会削弱该百分比。细胞外信号调节激酶(ERK)通路,尤其是磷酸化ERK(pERK),参与了人MSCs向人SGC的表型转化。在全层伤口的毛囊、皮脂腺、血管和真皮中发现了标记的MSCs,毛囊和皮脂腺中整合的细胞对泛细胞角蛋白也呈阳性。伤口愈合后,一些标记的MSCs返回骨髓,而其他的则保留在真皮中。我们得出结论,成人MSCs有能力在特定部位着床,有助于皮肤附属器的伤口愈合,并归巢至骨髓,并且骨髓来源细胞的植入是一个功能性事件。