Adhesion and Inflammation Lab (LAI), Aix Marseille University, LAI UM 61, 13288, Marseille, France.
Adhesion and Inflammation Lab (LAI), Inserm, UMR_S 1067, 13288, Marseille, France.
Sci Rep. 2021 Mar 24;11(1):6783. doi: 10.1038/s41598-021-86133-1.
We designed a strategy, based on a careful examination of the activation capabilities of proteins and antibodies used as substrates for adhering T cells, coupled to protein microstamping to control at the same time the position, shape, spreading, mechanics and activation state of T cells. Once adhered on patterns, we examined the capacities of T cells to be activated with soluble anti CD3, in comparison to T cells adhered to a continuously decorated substrate with the same density of ligands. We show that, in our hand, adhering onto an anti CD45 antibody decorated surface was not affecting T cell calcium fluxes, even adhered on variable size micro-patterns. Aside, we analyzed the T cell mechanics, when spread on pattern or not, using Atomic Force Microscopy indentation. By expressing MEGF10 as a non immune adhesion receptor in T cells we measured the very same spreading area on PLL substrates and Young modulus than non modified cells, immobilized on anti CD45 antibodies, while retaining similar activation capabilities using soluble anti CD3 antibodies or through model APC contacts. We propose that our system is a way to test activation or anergy of T cells with defined adhesion and mechanical characteristics, and may allow to dissect fine details of these mechanisms since it allows to observe homogenized populations in standardized T cell activation assays.
我们设计了一种策略,基于对用作粘附 T 细胞底物的蛋白质和抗体的激活能力进行仔细检查,结合蛋白质微盖章,同时控制 T 细胞的位置、形状、扩散、力学和激活状态。一旦粘附在图案上,我们就检查了 T 细胞在有可溶性抗 CD3 的情况下被激活的能力,与粘附在具有相同配体密度的连续修饰底物上的 T 细胞进行了比较。我们表明,在我们的手中,粘附在抗 CD45 抗体修饰的表面上不会影响 T 细胞钙通量,即使粘附在可变大小的微图案上也是如此。此外,我们使用原子力显微镜压痕分析了 T 细胞在图案上或不在图案上的力学特性。通过在 T 细胞中表达 MEGF10 作为非免疫粘附受体,我们在 PLL 底物上测量了与非修饰细胞相同的扩展面积和杨氏模量,这些细胞固定在抗 CD45 抗体上,同时通过使用可溶性抗 CD3 抗体或通过模型 APC 接触保留类似的激活能力。我们提出,我们的系统是一种用定义的粘附和力学特性测试 T 细胞激活或失能的方法,并且由于它允许在标准化的 T 细胞激活测定中观察均匀化的群体,因此可能允许剖析这些机制的细微细节。