Department of Materials Engineering, Ben-Gurion University of the Negev, P.O. Box 653, Beer-Sheva, 84105, Israel.
Ilse Katz Institute for Nanoscale Science and Technology, The Shraga Segal Department of Microbiology, Immunology, Ben-Gurion University of the Negev, P.O. Box 653, Beer-Sheva, 84105, Israel.
Small. 2021 Apr;17(14):e2007347. doi: 10.1002/smll.202007347. Epub 2021 Mar 14.
The cytotoxic activity of natural killer (NK) cells is regulated by many chemical and physical cues, whose integration mechanism is still obscure. Here, a multifunctional platform is engineered for NK cell stimulation, to study the effect of the signal integration and spatial heterogeneity on NK cell function. The platform is based on nanowires, whose mechanical compliance and site-selective tip functionalization with antigens produce the physical and chemical stimuli, respectively. The nanowires are confined to micron-sized islands, which induce a splitting of the NK cells into two subpopulations with distinct morphologies and immune responses: NK cells atop the nanowire islands display symmetrical spreading and enhanced activation, whereas cells lying in the straits between the islands develop elongated profiles and show lower activation levels. The demonstrated tunability of NK cell cytotoxicity provides an important insight into the mechanism of their immune function and introduces a novel technological route for the ex vivo shaping of cytotoxic lymphocytes in immunotherapy.
自然杀伤 (NK) 细胞的细胞毒性活性受许多化学和物理线索的调节,其整合机制尚不清楚。在这里,设计了一种多功能平台来刺激 NK 细胞,以研究信号整合和空间异质性对 NK 细胞功能的影响。该平台基于纳米线,其机械顺应性和抗原的位点选择性尖端功能化分别产生物理和化学刺激。纳米线被限制在微米大小的岛屿上,这些岛屿将 NK 细胞分裂成两个具有不同形态和免疫反应的亚群:位于纳米线岛屿上的 NK 细胞表现出对称的扩展和增强的激活,而位于岛屿之间海峡中的细胞则呈现出拉长的形态并表现出较低的激活水平。所展示的 NK 细胞细胞毒性的可调性为理解它们的免疫功能机制提供了重要的见解,并为免疫疗法中细胞毒性淋巴细胞的体外塑形引入了一种新的技术途径。