人多发性骨髓瘤细胞系与不同细胞外基质分子的粘附相互作用。

C Kibler, F Schermutzki, H D Waller, R Timpl, C A Müller, G Klein
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引用次数: 37

摘要

多发性骨髓瘤是一种人类B细胞恶性肿瘤,其特点是主要定位于骨髓内的恶性细胞克隆。除疾病晚期外,骨髓瘤肿瘤细胞不能在外周血中循环。骨髓微环境在骨髓瘤细胞的归巢、增殖和终末分化中起着重要作用。在这里,我们研究了几种细胞外基质(ECM)分子在多发性骨髓瘤患者骨髓中的表达,并分析了它们与四种不同的人类骨髓瘤来源细胞系的粘附能力。在多发性骨髓瘤患者骨髓低温切片中均可检测到所分析的所有ECM分子(tenascin, laminin,纤连蛋白,I型,III型,V型和VI型胶原)。黏附实验表明,只有层粘连蛋白、VI型微纤维胶原蛋白和纤维连接蛋白是骨髓瘤细胞系U266、IM-9、OPM-2和NCI-H929的强黏附成分。Tenascin和I型胶原仅是这些骨髓瘤细胞的弱粘附底物。层粘连蛋白和纤维连接蛋白的粘附是由β 1-整合素介导的,因为添加抗β 1-整合素抗体可以抑制四种不同类型的细胞与这两种基质分子的结合。相反,整合素似乎并不参与骨髓瘤细胞与VI型胶原的结合。相反,肝素对结合的抑制表明,膜结合的硫酸肝素蛋白聚糖是与VI型胶原结合的配体。对几种类似于早期分化阶段的b细胞系进行的粘附试验显示,与腱蛋白的相互作用很弱,与VI型胶原、层粘连蛋白或纤维连接蛋白没有相互作用。总之,人类骨髓瘤细胞与细胞外基质的相互作用可以解释骨髓内浆细胞的特异性保留。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adhesive interactions of human multiple myeloma cell lines with different extracellular matrix molecules.

Multiple myeloma represents a human B cell malignancy which is characterized by a predominant localization of the malignant cell clone within the bone marrow. With the exception of the terminal stage of the disease the myeloma tumor cells do not circulate in the peripheral blood. The bone marrow microenvironment is believed to play an important role in homing, proliferation and terminal differentiation of myeloma cells. Here we have studied the expression of several extracellular matrix (ECM) molecules in the bone marrow of multiple myeloma patients and analyzed their adhesive capacities with four different human myeloma-derived cell lines. All ECM molecules analyzed (tenascin, laminin, fibronectin, collagen types I, III, V and VI) could be detected in bone marrow cryostat sections of multiple myeloma patients. Adhesion assays showed that only laminin, the microfibrillar collagen type VI and fibronectin were strong adhesive components for the myeloma cell lines U266, IM-9, OPM-2 and NCI-H929. Tenascin and collagen type I were only weak adhesive substrates for these myeloma cells. Adhesion to laminin and fibronectin was beta 1-integrin-mediated since addition of anti-beta 1-integrin antibodies could inhibit the binding of the four different cell types to both matrix molecules. In contrast, integrins do not seem to be involved in binding of the myeloma cells to collagen type VI. Instead, inhibition of binding by heparin suggested that membrane-bound heparan sulfate proteoglycans are responsible ligands for binding to collagen type VI. Adhesion assays with several B-cell lines resembling earlier differentiation stages revealed only weak interactions with tenascin and no interactions with collagen type VI, laminin or fibronectin. In summary, the interactions of human myeloma cells with the extracellular matrix may explain the specific retention of the plasma cells within the bone marrow.

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