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Spatial and Chemical Surface Guidance of NK Cell Cytotoxic Activity

机译:NK细胞细胞毒性活性的空间和化学表面引导

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Studying how different signaling pathways spatially integrate in cells requires selective manipulation and control of different transmembrane ligand receptor pairs at the same time. This work explores a novel method for precisely arranging two arbitrarily chosen ligands on a micron scale two-dimensional pattern. The approach is based on lithographic patterning of Au and TiO2 films, followed by their selective functionalization with Ni-nitrilotriacetic acid histidine and biotin avidin chemistries, respectively. The selectivity of chemical and biological functionalizations is demonstrated by X-ray photoelectron spectroscopy and immunofluorescence imaging, respectively. This approach is applied to produce the first type of bifunctional surfaces with controllably positioned ligands for activating the receptors of natural killer (NK) immune cells. NK cells were used as a model system to demonstrate the potency of the surface in guiding site-selective cell attachment and activation. Upon applying the suitable ligand or ligand combination, the surfaces guided the appropriate single or bifunctional attachment and activation. These encouraging results demonstrate the effectiveness of the system as an experimental platform aimed at the comprehensive understanding of the immunological synapse. The great simplicity, modularity, and specificity of this approach make it applicable for a myriad of combinations of other biomolecules and applications, turning it into the "Swiss knife" of biointerfaces.
机译:研究在细胞中的空间上整合的不同信令途径是如何同时选择性操纵和控制不同的跨膜配体受体对。该工作探讨了一种新的方法,用于精确地布置在微米级二维图案上的两个任意选择的配体。该方法基于Au和TiO 2薄膜的光刻图案化,然后分别用Ni-硝基乙酸组氨酸和生物素抗生物素蛋白化学的选择性官能化。通过X射线光电子能谱和免疫荧光成像分别证明了化学和生物官能化的选择性。施加该方法以产生第一类双官能表面,具有可控制的定位配体,用于激活天然杀伤(NK)免疫细胞的受体。 NK细胞用作模型系统,以证明表面在引导位点选择性细胞附着和活化中的表面效力。在施加合适的配体或配体组合时,表面引导适当的单或双功能附着和活化。这些令人鼓舞的结果证明了该系统作为一个实验平台的效果,旨在旨在综合理解免疫突触。这种方法的简单性,模块化和特异性使其适用于其他生物分子和应用的多数组合,将其转化为生物界面的“瑞士刀”。

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