首页> 外文期刊>Thrombosis Research: An International Journal on Vascular Obstruction, Hemorrhage and Hemostasis >Immobilisation of monocytes to a solid support: a model for the study of ligand-binding interactions and plasminogen activation at the cell surface.
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Immobilisation of monocytes to a solid support: a model for the study of ligand-binding interactions and plasminogen activation at the cell surface.

机译:将单核细胞固定在固相支持物上:用于研究配体结合相互作用和细胞表面纤溶酶原激活的模型。

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摘要

The functional and immunological identification of receptors expressed by cells of the monocyte/ macrophage lineage may be facilitated with the use of immobilised cells. A procedure is described here for attaching human blood monocytes, alveolar macrophages, and THP-1 cells to a solid support activated with polymerised glutaraldehyde. Homogeneous monolayers visualised by optical microscopy were obtained at predefined input cell densities and were quantitatively characterised with the use of 125I-plasminogen (35000+/-2772 cells/well at approximately 76000 cells/50 microL) and 125I-pro-urokinase (39000+/-3839 cells/well at approximately 86000 cells/50 microL). The cells remained stably attached during washing and incubation procedures in ligand-binding studies. The functionality of membrane receptors and acceptors of the immobilised cells for a number of ligands was verified. Parameters of the interaction of plasminogen, urokinase, and human immunoglobulin G with their corresponding receptors were similar to those previously reported using cells in suspension. The functionality of bound ligands, such as urokinase and plasminogen, was verified by measuring their ability to generate plasmin. We conclude that immobilised monocytes/macrophages are a useful tool for studying ligand interactions with membrane proteins and for the realisation of plasminogen activation studies at the surface of the cell membrane.
机译:通过使用固定化的细胞可以促进单核细胞/巨噬细胞谱系细胞表达的受体的功能和免疫学鉴定。此处描述了一种将人血单核细胞,肺泡巨噬细胞和THP-1细胞附着到由聚合戊二醛活化的固体支持物上的程序。通过光学显微镜观察的均质单层细胞在预定的输入细胞密度下获得,并通过使用125I-纤溶酶原(35000 +/- 2772个细胞/孔,约76000个细胞/ 50微升)和125I-尿激酶原(39000+大约86000个细胞/ 50 microL(-3839个细胞/孔)。在配体结合研究中,在洗涤和孵育过程中细胞保持稳定附着。验证了许多配体的固定细胞的膜受体和受体的功能。纤溶酶原,尿激酶和人免疫球蛋白G与相应受体相互作用的参数与先前报道的悬浮细胞相似。结合的配体(如尿激酶和纤溶酶原)的功能通过测量其产生纤溶酶的能力来验证。我们得出的结论是,固定的单核细胞/巨噬细胞是研究配体与膜蛋白相互作用以及在细胞膜表面实现纤溶酶原激活研究的有用工具。

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