Turel K R, Rao S G
Chemotherapy and Stem Cell Biology Division, Cancer Research Institute, Tata Memorial Hospital, Parel Mumbai, 400 012, India.
Cell Biol Int. 1998;22(9-10):641-8. doi: 10.1006/cbir.1998.0308.
Bone marrow stroma is the physical basis of the haematopoietic microenvironment and regulates several key features of stem cell proliferation and differentiation. It plays a crucial role in maintaining haematopoietic homeostasis. Earlier studies have shown that this is achieved through interactions with the extracellular matrix and specific molecules called the cell adhesion molecules (CAMs). In this paper, we show that E-cadherin, a cell adhesion molecule which plays a crucial role in cell-cell aggregation during development, is also present in the bone marrow stroma. The expression of the CAM can also be demonstrated on a subset of CD34(+)stem cells. Stromal expression of E-cadherin is decreased when treated with lymphokine mixture, phytohaemagglutinin-treated-leukocyte-conditioned medium (PHA-LCM). This is the reverse of ICAM-I expression, which increases with PHA-LCM treatment. E-cadherin shows homotypic and homophilic interaction and its presence on a subset of CD34(+)cells leads to speculation on whether this CAM has a role in adherence of primitive stem cells to the marrow stroma.
骨髓基质是造血微环境的物质基础,调节干细胞增殖和分化的几个关键特征。它在维持造血稳态中起关键作用。早期研究表明,这是通过与细胞外基质和称为细胞粘附分子(CAMs)的特定分子相互作用来实现的。在本文中,我们表明E-钙粘蛋白,一种在发育过程中对细胞间聚集起关键作用的细胞粘附分子,也存在于骨髓基质中。这种CAM在一部分CD34(+)干细胞上也有表达。用细胞因子混合物、植物血凝素处理的白细胞条件培养基(PHA-LCM)处理后,骨髓基质中E-钙粘蛋白的表达降低。这与ICAM-I的表达相反,ICAM-I的表达在PHA-LCM处理后增加。E-钙粘蛋白表现出同种型和同嗜性相互作用,它在一部分CD34(+)细胞上的存在引发了关于这种CAM是否在原始干细胞与骨髓基质的粘附中起作用的猜测。