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在层流动态条件下,具有不同转移特性的人结肠癌细胞与细胞外基质的肿瘤细胞黏附

Tumor cell adhesion of human colon carcinoma cells with different metastatic properties to extracellular matrix under dynamic conditions of laminar flow.

作者信息

Haier J, Nicolson G L

机构信息

Institute for Molecular Medicine, 15162 Triton Lane, Huntington Beach, CA 92649, USA.

出版信息

J Cancer Res Clin Oncol. 2000 Dec;126(12):699-706. doi: 10.1007/s004320000161.

Abstract

PURPOSE

Shear forces have an important influence on cell adhesion and other cellular functions, and malignant cell lines appear to possess different adhesive properties under static and dynamic conditions. Thus, we analyzed human colon carcinoma cell adhesion under dynamic conditions and examined the interactions of HT-29 colon carcinoma cells of different metastatic properties with various immobilized ECM components.

METHODS

Wall shear adhesion threshold (WSAT), dynamic adhesion rate (DAR), and adhesion stabilization rate (ASR) were compared between the cell lines using dynamic conditions in a laminar flow chamber by decreasing the flow (wall shear stress) of cell suspensions. Patterns of cell adhesion under dynamic conditions were compared to adhesive interactions in static microtiterplate assays.

RESULTS

Poorly metastatic HT-29P cells adhered six times more than highly metastatic cells to type I collagen under laminar fluid flow, whereas only highly metastatic HT-29LMM showed adhesive interactions with fibronectin under static and dynamic conditions. High rates of cell adhesion to collagen IV were found under static, but not under dynamic, conditions.

CONCLUSIONS

Although poorly and highly metastatic HT-29 cells express similar patterns of integrins, they differ in their adhesive properties to ECM components under static and dynamic conditions. Hydrodynamic shear forces appear to influence adhesive properties of HT-29 cells, and differences between dynamic and static cell adhesion were found.

摘要

目的

剪切力对细胞黏附及其他细胞功能有重要影响,恶性细胞系在静态和动态条件下似乎具有不同的黏附特性。因此,我们分析了动态条件下人类结肠癌细胞的黏附情况,并研究了具有不同转移特性的HT-29结肠癌细胞与各种固定化细胞外基质(ECM)成分之间的相互作用。

方法

通过在层流室中使用动态条件,降低细胞悬液的流速(壁面剪应力),比较各细胞系之间的壁面剪切黏附阈值(WSAT)、动态黏附率(DAR)和黏附稳定率(ASR)。将动态条件下的细胞黏附模式与静态微孔板试验中的黏附相互作用进行比较。

结果

在层流条件下,低转移潜能的HT-29P细胞与I型胶原的黏附能力比高转移潜能细胞高六倍,而只有高转移潜能的HT-29LMM细胞在静态和动态条件下均显示出与纤连蛋白的黏附相互作用。在静态条件下发现细胞对IV型胶原的黏附率较高,但在动态条件下未发现。

结论

尽管低转移潜能和高转移潜能的HT-29细胞表达相似的整合素模式,但它们在静态和动态条件下对ECM成分的黏附特性存在差异。流体动力剪切力似乎会影响HT-29细胞的黏附特性,并且发现了动态和静态细胞黏附之间的差异。

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