免疫
体内
同种类的
免疫系统
体外
获得性免疫系统
免疫学
抗原
化学
纳米技术
生物
生物物理学
生物系统
材料科学
生物化学
物理
统计物理学
遗传学
作者
Gareth R. Williams,Kaat Fierens,Stephen G. Preston,Daniel Lunn,Oliwia Ryśnik,Sofie De Prijck,Mirjam Kool,Hannah C. Buckley,Bart N. Lambrecht,Dermot O’Hare,Jonathan M. Austyn
摘要
There is currently no paradigm in immunology that enables an accurate prediction of how the immune system will respond to any given agent. Here we show that the immunological responses induced by members of a broad class of inorganic crystalline materials are controlled purely by their physicochemical properties in a highly predictable manner. We show that structurally and chemically homogeneous layered double hydroxides (LDHs) can elicit diverse human dendritic cell responses in vitro. Using a systems vaccinology approach, we find that every measured response can be modeled using a subset of just three physical and chemical properties for all compounds tested. This correlation can be reduced to a simple linear equation that enables the immunological responses stimulated by newly synthesized LDHs to be predicted in advance from these three parameters alone. We also show that mouse antigen–specific antibody responses in vivo and human macrophage responses in vitro are controlled by the same properties, suggesting they may control diverse responses at both individual component and global levels of immunity. This study demonstrates that immunity can be determined purely by chemistry and opens the possibility of rational manipulation of immunity for therapeutic purposes.
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