Gao Yuan, Yu Yan
Department of Chemistry, Indiana University , Bloomington, Indiana 47405, United States.
Langmuir. 2015 Mar 10;31(9):2833-8. doi: 10.1021/la504668c. Epub 2015 Feb 23.
Properties of synthetic particles, such as size and shape, influence how immune cells uptake vaccine and drug carriers. Here, we explore the role of a new property, anisotropic presentation of ligands, in particle uptake by macrophage cells. We use micrometer-sized Janus particles that are partially coated with ligands and investigate how the ligand patch size (Janus balance) affects their uptake by macrophages. Macrophage uptake of both 1.6 and 3 μm Janus particles is enhanced as the size of the ligand patch increases. However, presenting ligands asymmetrically reduces particle phagocytosis; Janus particles with the same amount of ligands as uniformly coated particles are internalized less efficiently. We also show that, because of the asymmetric geometry of Janus particles, the onset of ligand-mediated phagocytosis depends upon the orientation of the particles with respect to the cells. This study demonstrates Janus balance as a new parameter that we can use to manipulate the macrophage uptake of particles.
合成颗粒的性质,如大小和形状,会影响免疫细胞摄取疫苗和药物载体的方式。在此,我们探讨一种新性质——配体的各向异性呈现,在巨噬细胞摄取颗粒中的作用。我们使用部分包覆有配体的微米级Janus颗粒,并研究配体斑块大小(Janus平衡)如何影响巨噬细胞对它们的摄取。随着配体斑块大小的增加,巨噬细胞对1.6微米和3微米Janus颗粒的摄取均增强。然而,不对称呈现配体会降低颗粒吞噬作用;与均匀包覆颗粒具有相同配体量的Janus颗粒内化效率较低。我们还表明,由于Janus颗粒的不对称几何形状,配体介导的吞噬作用的起始取决于颗粒相对于细胞的取向。这项研究证明Janus平衡是一个新的参数,可用于操控巨噬细胞对颗粒的摄取。