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Physical activation of innate immunity by spiky particles.


ABSTRACT: Microbial biochemicals have been indicated as the primary stimulators of innate immunity, the first line of the body's defence against infections. However, the influence of topological features on a microbe's surface on immune responses remains largely unknown. Here we demonstrate the ability of TiO2 microparticles decorated with nanospikes (spiky particles) to activate and amplify the immune response in vitro and in vivo. The nanospikes exert mechanical stress on the cells, which results in potassium efflux and inflammasome activation in macrophages and dendritic cells during phagocytosis. The spiky particles augment antigen-specific humoral and cellular immune responses in the presence of monophosphoryl lipid A and elicit protective immunity against tumour growth and influenza viral infection. The study offers insights into how surface physical cues can tune the activation of innate immunity and provides a basis for engineering particles with increased immunogenicity and adjuvanticity.

SUBMITTER: Wang J 

PROVIDER: S-EPMC7432992 | biostudies-literature | 2018 Nov

REPOSITORIES: biostudies-literature

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Physical activation of innate immunity by spiky particles.

Wang Ji J   Chen Hui-Jiuan HJ   Hang Tian T   Yu Yang Y   Liu Guishi G   He Gen G   Xiao Shuai S   Yang Bo-Ru BR   Yang Chengduan C   Liu Fanmao F   Tao Jun J   Wu Mei X MX   Xie Xi X  

Nature nanotechnology 20181029 11


Microbial biochemicals have been indicated as the primary stimulators of innate immunity, the first line of the body's defence against infections. However, the influence of topological features on a microbe's surface on immune responses remains largely unknown. Here we demonstrate the ability of TiO<sub>2</sub> microparticles decorated with nanospikes (spiky particles) to activate and amplify the immune response in vitro and in vivo. The nanospikes exert mechanical stress on the cells, which res  ...[more]

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