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首页> 外文期刊>Biophysical Journal >Tangential tether extraction and spontaneous tether retraction of human neutrophils
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Tangential tether extraction and spontaneous tether retraction of human neutrophils

机译:人嗜中性粒细胞的切向系绳提取和自发系绳缩回

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摘要

Membrane tethers are extracted when neutrophils roll on the endothelium to initiate their transendothelial migration. Tether extraction from both neutrophils and endothelial cells stabilizes neutrophil rolling, so it has been studied extensively and the force-velocity relationship for tether extraction is of great interest. Due to limitations of the techniques used in previous studies, this relationship has been obtained only from tethers perpendicular to the cell surface. Here, with the microcantilever technique, where latex beads affixed on silicon cantilevers were used as the force transducer, we extracted tethers either perpendicular or tangential to the neutrophil surface. We found that the force-velocity relationship was not sensitive to tether pulling direction. Little movement of the tether-cell junction was observed during tangential tether extraction, and no coalescence was observed during multiple tether extraction. Following adhesion rupture, spontaneous tether retraction was visualized by membrane staining, which revealed two phases: one was fast and exponential, whereas the other was slow and linear. Both phases can be reproduced with a mechanical model. These results show for the first time, to our knowledge, how neutrophil tethers shorten upon instantaneous force removal, and furthermore, they illustrate how membrane tethers contribute to neutrophil rolling stability during the inflammatory response.
机译:当嗜中性粒细胞卷在内皮上以引发其颅骨迁移时,提取膜系。来自中性粒细胞和内皮细胞的系绳萃取稳定中性粒细胞轧制,因此已经广泛地研究了与氮萃取的力 - 速度关系非常关注。由于先前研究中使用的技术的局限性,这种关系仅从垂直于细胞表面的微量获得。这里,利用微膜技术,使用硅悬臂器上固定的乳胶珠作为力换能器,我们提取垂直或切向于中性粒细胞表面的重温。我们发现力 - 速度关系对系绳拉动方向不敏感。在切向系绳萃取期间观察到系带 - 细胞结的少量运动,并且在多个系绳萃取过程中没有观察到聚结。在粘附破裂之后,通过膜染色可视化自发的系绳缩回,显示出两相:一个是快速和指数的,而另一个是缓慢和线性的。两个相可以用机械模型再现。这些结果表明,我们的知识首次表现出中性粒细胞,在瞬时的力去除时,它们说明了在炎症反应期间如何有助于膜系有助于中性粒细胞滚动稳定性。

著录项

  • 来源
    《Biophysical Journal》 |2012年第11期|共8页
  • 作者

    LiuB.; ShaoJ.-Y.;

  • 作者单位

    Department of Biomedical Engineering Washington University Saint Louis MO United States;

    Department of Biomedical Engineering Washington University Saint Louis MO United States;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物物理学;
  • 关键词

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