Jadhav S, Bochner B S, Konstantopoulos K
Department of Chemical Engineering, Johns Hopkins University, Baltimore, MD 21218, USA.
J Immunol. 2001 Nov 15;167(10):5986-93. doi: 10.4049/jimmunol.167.10.5986.
The ability of tumor cells to metastasize hematogenously is regulated by their interactions with polymorphonuclear leukocytes (PMNs). However, the mechanisms mediating PMN binding to tumor cells under physiological shear forces remain largely unknown. This study was designed to characterize the molecular interactions between PMNs and tumor cells as a function of the dynamic shear environment, using two human colon adenocarcinoma cell lines (LS174T and HCT-8) as models. PMN and colon carcinoma cell suspensions, labeled with distinct fluorophores, were sheared in a cone-and-plate rheometer in the presence of the PMN activator fMLP. The size distribution and cellular composition of formed aggregates were determined by flow cytometry. PMN binding to LS174T cells was maximal at 100 s(-1) and decreased with increasing shear. At low shear (100 s(-1)) PMN CD11b alone mediates PMN-LS174T heteroaggregation. However, L-selectin, CD11a, and CD11b are all required for PMN binding to sialyl Lewis(x)-bearing LS174T cells at high shear (800 s(-1)). In contrast, sialyl Lewis(x)-low HCT-8 cells fail to aggregate with PMNs at high shear conditions, despite extensive adhesive interactions at low shear. Taken together, our data suggest that PMN L-selectin initiates LS174T cell tethering at high shear by binding to sialylated moieties on the carcinoma cell surface, whereas the subsequent involvement of CD11a and CD11b converts these transient tethers into stable adhesion. This study demonstrates that the shear environment of the vasculature modulates the dynamics and molecular constituents mediating PMN-tumor cell adhesion.
肿瘤细胞经血行转移的能力受其与多形核白细胞(PMN)相互作用的调控。然而,在生理剪切力作用下介导PMN与肿瘤细胞结合的机制仍 largely 未知。本研究旨在以两种人结肠腺癌细胞系(LS174T 和 HCT - 8)为模型,表征PMN与肿瘤细胞之间作为动态剪切环境函数的分子相互作用。用不同荧光团标记的PMN和结肠癌细胞悬液在存在PMN激活剂fMLP的情况下,在锥板流变仪中进行剪切。通过流式细胞术确定形成聚集体的大小分布和细胞组成。PMN与LS174T细胞的结合在100 s(-1)时最大,并随剪切力增加而降低。在低剪切力(100 s(-1))下,单独的PMN CD11b介导PMN - LS174T异聚。然而,在高剪切力(800 s(-1))下,L - 选择素、CD11a和CD11b对于PMN与带有唾液酸化路易斯(x)的LS174T细胞的结合都是必需的。相比之下,尽管在低剪切力下有广泛的粘附相互作用,但唾液酸化路易斯(x)含量低的HCT - 8细胞在高剪切力条件下未能与PMN聚集。综上所述,我们的数据表明,PMN L - 选择素通过结合癌细胞表面的唾液酸化部分在高剪切力下启动LS174T细胞的系留,而随后CD11a和CD11b的参与将这些短暂的系留转化为稳定的粘附。本研究表明脉管系统的剪切环境调节介导PMN - 肿瘤细胞粘附的动力学和分子成分。