缺氧对克隆小鼠间充质基质细胞系分化能力和免疫抑制特性的影响。
The influence of hypoxia on the differentiation capacities and immunosuppressive properties of clonal mouse mesenchymal stromal cell lines.
作者信息
Prado-Lòpez Sonia, Duffy Michelle M, Baustian Claas, Alagesan Senthilkumar, Hanley Shirley A, Stocca Alessia, Griffin Matthew D, Ceredig Rhodri
机构信息
Regenerative Medicine Institute, National Centre for Biomedical Engineering Science and School of Medicine, Nursing and Health Sciences, National University of Ireland, Galway, Ireland.
出版信息
Immunol Cell Biol. 2014 Aug;92(7):612-23. doi: 10.1038/icb.2014.30. Epub 2014 Apr 29.
Multipotent mesenchymal stromal cells are multipotent cells capable of differentiating into different mesodermal cell types. Enigmatically, mesenchymal stromal cells present in the bone marrow support early lymphopoiesis yet can inhibit mature lymphocyte growth. Critical features of the bone marrow microenvironment, such as the level of oxygen, play an important role in mesenchymal stromal cell biology. Herein, we show that a panel of continuously growing mouse mesenchymal stromal cell lines, namely OP9, MS5, PA6, ST2 and B16-14, exhibit mesenchymal stromal cell characteristic phenotypes and respond physiologically to oxygen deprivation. Culturing freshly isolated bone marrow-derived mesenchymal stromal cells or cell lines at 5% O2 resulted in a dramatic increase in expression of hypoxia-inducible factor family members and of key genes involved in their differentiation. Phenotypically, their osteogenic and adipogenic differentiation capacity was generally improved in hypoxia, whereas their inhibitory effects on in vitro T-cell proliferation were preserved. Taken together, we conclude that these continuously growing mouse cell lines behave as canonical mesenchymal stromal cells and respond physiologically to hypoxia, thereby providing a potent tool for the study of different aspects of mesenchymal stromal cell biology.
多能间充质基质细胞是能够分化为不同中胚层细胞类型的多能细胞。神秘的是,存在于骨髓中的间充质基质细胞支持早期淋巴细胞生成,但却能抑制成熟淋巴细胞的生长。骨髓微环境的关键特征,如氧气水平,在间充质基质细胞生物学中起着重要作用。在此,我们表明一组持续生长的小鼠间充质基质细胞系,即OP9、MS5、PA6、ST2和B16 - 14,表现出间充质基质细胞特征性表型,并对缺氧作出生理反应。在5%氧气条件下培养新鲜分离的骨髓来源间充质基质细胞或细胞系,导致缺氧诱导因子家族成员以及参与其分化的关键基因的表达显著增加。从表型上看,它们的成骨和成脂分化能力在缺氧条件下通常得到改善,而它们对体外T细胞增殖的抑制作用得以保留。综上所述,我们得出结论,这些持续生长的小鼠细胞系表现为典型的间充质基质细胞,并对缺氧作出生理反应,从而为研究间充质基质细胞生物学的不同方面提供了一个有力工具。