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通过旋转跟踪和黏附足迹法绘制细胞表面黏附图谱。

Mapping cell surface adhesion by rotation tracking and adhesion footprinting.

机构信息

Department of Physics and Center for Physics of Living Cells, University of Illinois at Urbana-Champaign, 1110 W Green St., Urbana, IL, 61801, USA.

Howard Hughes Medical Institute, Department of Biophysics and Biophysical Chemistry, Department of Biophysics and Department of Biomedical Engineering, Johns Hopkins University, 725 N. Wolfe Street, Baltimore, MD, 21205, USA.

出版信息

Sci Rep. 2017 Mar 14;7:44502. doi: 10.1038/srep44502.

Abstract

Rolling adhesion, in which cells passively roll along surfaces under shear flow, is a critical process involved in inflammatory responses and cancer metastasis. Surface adhesion properties regulated by adhesion receptors and membrane tethers are critical in understanding cell rolling behavior. Locally, adhesion molecules are distributed at the tips of membrane tethers. However, how functional adhesion properties are globally distributed on the individual cell's surface is unknown. Here, we developed a label-free technique to determine the spatial distribution of adhesive properties on rolling cell surfaces. Using dark-field imaging and particle tracking, we extract the rotational motion of individual rolling cells. The rotational information allows us to construct an adhesion map along the contact circumference of a single cell. To complement this approach, we also developed a fluorescent adhesion footprint assay to record the molecular adhesion events from cell rolling. Applying the combination of the two methods on human promyelocytic leukemia cells, our results surprisingly reveal that adhesion is non-uniformly distributed in patches on the cell surfaces. Our label-free adhesion mapping methods are applicable to the variety of cell types that undergo rolling adhesion and provide a quantitative picture of cell surface adhesion at the functional and molecular level.

摘要

滚动黏附是指细胞在切变流作用下被动地沿表面滚动,是炎症反应和癌症转移过程中的一个关键步骤。黏附受体和膜系绳调节的表面黏附特性对于理解细胞滚动行为至关重要。局部来看,黏附分子分布在膜系绳的尖端。然而,在单个细胞表面上,功能黏附特性是如何在全局范围内分布的,目前尚不清楚。在这里,我们开发了一种无标记技术来确定滚动细胞表面上黏附特性的空间分布。我们使用暗场成像和粒子跟踪技术提取单个滚动细胞的旋转运动。旋转信息使我们能够构建单个细胞接触圆周上的黏附图谱。为了补充这种方法,我们还开发了荧光黏附足迹测定法来记录细胞滚动过程中的分子黏附事件。将这两种方法结合应用于人早幼粒细胞白血病细胞,结果令人惊讶地揭示了黏附在细胞表面上呈非均匀分布的斑块。我们的无标记黏附图谱方法适用于多种经历滚动黏附的细胞类型,并在功能和分子水平上提供了细胞表面黏附的定量图像。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f6c/5349612/42094c725b89/srep44502-f1.jpg

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