4.8 Article

Systemically administered silica nanoparticles result in diminished T cell response in lung

期刊

NANO TODAY
卷 42, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.nantod.2021.101332

关键词

Immune microenvironment; T cell; Nanomaterials; Myeloid cell; Lung microenvironment

资金

  1. National Natural Science Foundation of China [32022043]
  2. Suzhou Key Laboratory of Nanotechnology and Biomedicine, Collaborative Innovation Center of Suzhou Nano Science Technology
  3. 111 Project, Joint International Research Laboratory of Carbon-Based Functional Materials and Devices

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In this study, we investigated the immune microenvironment of the lung, liver, and spleen following the systemic administration of silica nanoparticles (SiO2 NPs). Our results showed a dramatic decrease in the number of T cells in the lung, coupled with an increase in IL-17-producing T cells frequency, a decrease in the a ss T population, and increased expression of T cells dysfunctional markers.
In the context of nanomedicine, the inevitable accumulation of systemically administered inorganic na-nomaterials in normal tissues and organs (e.g. liver, lung, spleen) may inadvertently perturb the normal immune microenvironment. Here, we investigate the immune microenvironment of the lung, liver, and spleen following the systemic administration of silica nanoparticles (SiO2 NPs). Using single-cell RNA sequencing technology, we observe a dramatic decrease in the number of T cells in the lung following SiO2 NPs administration, coupled to the enhanced IL-17-producing.d T cells frequency, the reduced a ss T population, as well as the greater expression of the T cells dysfunctional markers. We further find that this effect is caused by accumulation of bone-marrow-derived cells in the lung, which are recruited by the SiO2 NPs. Unexpectedly, in multiple mouse models, tumor metastasis in the lung is found more easily in SiO2-treated mice. Our results indicate that systemically administered SiO2 NPs may inadvertently perturb normal lung microenvironment characterized by T cell-dysfunction signature, which increases the likelihood of malignant cells survival in the lung tissue. (c) 2021 Elsevier Ltd. All rights reserved.

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