Bearpark A D, Gordon M Y
Leukaemia Research Fund Centre, Institute of Cancer Research, London, UK.
Bone Marrow Transplant. 1989 Nov;4(6):625-8.
The adhesive properties of clonogenic haemopoietic progenitor cells have been assessed by allowing them to bind to cultured marrow-derived stromal layers, stromal cell lines or bare plastic surfaces. We have compared the adhesive characteristics of murine marrow repopulating cells, spleen colony-forming cells (CFU-S) and granulocyte-macrophage colony-forming cells (GM-CFC) and of human blast colony-forming cells (Bl-CFC). The data indicate, first, that murine marrow repopulating cells bind to plastic and to stromal layers. Second, the CFU-S compartment contains three sub-populations: (a) CFU-S that bind to plastic and to stroma; (b) CFU-S that bind to stroma but not to plastic; (c) CFU-S that do not bind to stroma or plastic. Third, that more mature GM-CFC are not adhesive in these tests; and fourth, that recognitive events between stem cells and marrow stroma can operate across species barriers. Adhesion to both marrow-derived stroma and plastic appears to be a characteristic of haemopoietic stem cells that is lost or modulated as cells differentiate.
通过使克隆性造血祖细胞与培养的骨髓来源的基质层、基质细胞系或裸露的塑料表面结合,对其黏附特性进行了评估。我们比较了小鼠骨髓再植细胞、脾集落形成细胞(CFU-S)、粒细胞-巨噬细胞集落形成细胞(GM-CFC)以及人原始细胞集落形成细胞(Bl-CFC)的黏附特性。数据表明,首先,小鼠骨髓再植细胞可与塑料和基质层结合。其次,CFU-S组分包含三个亚群:(a)可与塑料和基质结合的CFU-S;(b)可与基质但不与塑料结合的CFU-S;(c)不与基质或塑料结合的CFU-S。第三,在这些试验中,更成熟的GM-CFC不具有黏附性;第四点,干细胞与骨髓基质之间的识别事件可跨越物种屏障发生。对骨髓来源的基质和塑料的黏附似乎是造血干细胞的一个特性,该特性会随着细胞分化而丧失或受到调节。