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Membrane Surface Nanostructures and Adhesion Property of T Lymphocytes Exploited by AFM

机译:原子力显微镜(AFM)提取的T淋巴细胞膜表面纳米结构及其粘附特性

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摘要

The activation of T lymphocytes plays a very important role in T-cell-mediated immune response. Though there are many related literatures, the changes of membrane surface nanostructures and adhesion property of T lymphocytes at different activation stages have not been reported yet. However, these investigations will help us further understand the biophysical and immunologic function of T lymphocytes in the context of activation. In the present study, the membrane architectures of peripheral blood T lymphocytes were obtained by AFM, and adhesion force of the cell membrane were measured by acquiring force–distance curves. The results indicated that the cell volume increased with the increases of activation time, whereas membrane surface adhesion force decreased, even though the local stiffness for resting and activated cells is similar. The results provided complementary and important data to further understand the variation of biophysical properties of T lymphocytes in the context of in vitro activation.
机译:T淋巴细胞的激活在T细胞介导的免疫反应中起着非常重要的作用。尽管已有许多相关文献,但尚未报道不同活化阶段T淋巴细胞的膜表面纳米结构和粘附特性的变化。但是,这些研究将帮助我们进一步了解激活过程中T淋巴细胞的生物物理和免疫功能。在本研究中,通过AFM获得了外周血T淋巴细胞的膜结构,并通过获取力-距离曲线来测量细胞膜的粘附力。结果表明,即使静止和活化细胞的局部刚度相似,细胞体积也随活化时间的增加而增加,而膜表面粘附力却降低。结果提供了补充和重要的数据,以进一步了解在体外激活的背景下T淋巴细胞的生物物理特性的变化。

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