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在暴露于食品级合成无定形二氧化硅的树突状细胞中,依赖髓样分化因子88的前白细胞介素-1β诱导作用

MyD88-dependent pro-interleukin-1β induction in dendritic cells exposed to food-grade synthetic amorphous silica.

作者信息

Winkler Hans Christian, Kornprobst Julian, Wick Peter, von Moos Lea Maria, Trantakis Ioannis, Schraner Elisabeth Maria, Bathke Barbara, Hochrein Hubertus, Suter Mark, Naegeli Hanspeter

机构信息

Institute of Pharmacology and Toxicology, University of Zurich-Vetsuisse, Winterthurerstrasse 260, 8057, Zurich, Switzerland.

Present address: Institute of Food, Nutrition and Health, Laboratory of Human Nutrition, ETH Zurich, Schmelzbergstrasse 7, 8092, Zurich, Switzerland.

出版信息

Part Fibre Toxicol. 2017 Jun 23;14(1):21. doi: 10.1186/s12989-017-0202-8.

Abstract

BACKGROUND

Dendritic cells (DCs) are specialized first-line sensors of foreign materials invading the organism. These sentinel cells rely on pattern recognition receptors such as Nod-like or Toll-like receptors (TLRs) to launch immune reactions against pathogens, but also to mediate tolerance to self-antigens and, in the intestinal milieu, to nutrients and commensals. Since inappropriate DC activation contributes to inflammatory diseases and immunopathologies, a key question in the evaluation of orally ingested nanomaterials is whether their contact with DCs in the intestinal mucosa disrupts this delicate homeostatic balance between pathogen defense and tolerance. Here, we generated steady-state DCs by incubating hematopoietic progenitors with feline McDonough sarcoma-like tyrosine kinase 3 ligand (Flt3L) and used the resulting immature DCs to test potential biological responses against food-grade synthetic amorphous silica (SAS) representing a common nanomaterial generally thought to be safe.

RESULTS

Interaction of immature and unprimed DCs with food-grade SAS particles and their internalization by endocytic uptake fails to elicit cytotoxicity and the release of interleukin (IL)-1α or tumor necrosis factor-α, which were identified as master regulators of acute inflammation in lung-related studies. However, the display of maturation markers on the cell surface shows that SAS particles activate completely immature DCs. Also, the endocytic uptake of SAS particles into these steady-state DCs leads to induction of the pro-IL-1β precursor, subsequently cleaved by the inflammasome to secrete mature IL-1β. In contrast, neither pro-IL-1β induction nor mature IL-1β secretion occurs upon internalization of TiO or FePO nanoparticles. The pro-IL-1β induction is suppressed by pharmacologic inhibitors of endosomal TLR activation or by genetic ablation of MyD88, a downstream adapter of TLR pathways, indicating that endosomal pattern recognition is responsible for the observed cytokine response to food-grade SAS particles.

CONCLUSIONS

Our results unexpectedly show that food-grade SAS particles are able to directly initiate the endosomal MyD88-dependent pathogen pattern recognition and signaling pathway in steady-state DCs. The ensuing activation of immature DCs with de novo induction of pro-IL-1β implies that the currently massive use of SAS particles as food additive should be reconsidered.

摘要

背景

树突状细胞(DCs)是机体抵御外来物质入侵的特化一线传感器。这些哨兵细胞依靠模式识别受体,如Nod样受体或Toll样受体(TLRs),来启动针对病原体的免疫反应,同时也介导对自身抗原的耐受性,以及在肠道环境中对营养物质和共生菌的耐受性。由于不适当的DC激活会导致炎症性疾病和免疫病理,评估口服纳米材料时的一个关键问题是,它们与肠道黏膜中的DCs接触是否会破坏病原体防御与耐受性之间这种微妙的稳态平衡。在此,我们通过用猫莫氏肉瘤样酪氨酸激酶3配体(Flt3L)孵育造血祖细胞来生成稳态DCs,并使用所得的未成熟DCs来测试针对食品级合成无定形二氧化硅(SAS)的潜在生物学反应,SAS是一种普遍认为安全的常见纳米材料。

结果

未成熟且未致敏的DCs与食品级SAS颗粒的相互作用以及通过内吞摄取将其内化,均未引发细胞毒性以及白细胞介素(IL)-1α或肿瘤坏死因子-α的释放,在与肺部相关的研究中,这两种物质被确定为急性炎症的主要调节因子。然而,细胞表面成熟标志物的展示表明,SAS颗粒激活了完全未成熟的DCs。此外,SAS颗粒被内吞摄取到这些稳态DCs中会导致前白细胞介素-1β前体的诱导,随后该前体被炎性小体切割以分泌成熟的白细胞介素-1β。相比之下,二氧化钛或磷酸铁纳米颗粒内化后既不会诱导前白细胞介素-1β,也不会分泌成熟的白细胞介素-1β。内体TLR激活的药理学抑制剂或TLR途径的下游衔接蛋白MyD88的基因敲除可抑制前白细胞介素-1β的诱导,这表明内体模式识别是观察到的对食品级SAS颗粒的细胞因子反应的原因。

结论

我们的结果意外地表明,食品级SAS颗粒能够在稳态DCs中直接启动内体MyD88依赖性病原体模式识别和信号通路。随之而来的未成熟DCs的激活以及前白细胞介素-1β的从头诱导意味着,目前大量将SAS颗粒用作食品添加剂的做法应重新考虑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d67/5481969/e832f7799543/12989_2017_202_Fig3_HTML.jpg

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