Michelini Sara, Barbero Francesco, Prinelli Alessandra, Steiner Philip, Weiss Richard, Verwanger Thomas, Andosch Ancuela, Lütz-Meindl Ursula, Puntes Victor F, Drobne Damjana, Duschl Albert, Horejs-Hoeck Jutta
Department of Biosciences, Paris-Lodron University Salzburg, Hellbrunner Str. 34, 5020 Salzburg, Austria.
Insitut Català de Nanosciència i Nanotecnologia (ICN2), UAB Campus, Bellaterra, Barcelona 08193, Spain.
Nanoscale. 2021 Apr 30;13(16):7648-7666. doi: 10.1039/d0nr09153g.
Dendritic cells (DCs) shape immune responses by influencing T-cell activation. Thus, they are considered both an interesting model for studying nano-immune interactions and a promising target for nano-based biomedical applications. However, the accentuated ability of nanoparticles (NPs) to interact with biomolecules may have an impact on DC function that poses an unexpected risk of unbalanced immune reactions. Here, we investigated the potential effects of gold nanoparticles (AuNPs) on DC function and the consequences for effector and memory T-cell responses in the presence of the microbial inflammatory stimulus lipopolysaccharide (LPS). Overall, we found that, in the absence of LPS, none of the tested NPs induced a DC response. However, whereas 4-, 8-, and 11 nm AuNPs did not modulate LPS-dependent immune responses, 26 nm AuNPs shifted the phenotype of LPS-activated DCs toward a tolerogenic state, characterized by downregulation of CD86, IL-12 and IL-27, upregulation of ILT3, and induction of class E compartments. Moreover, this DC phenotype was less proficient in promoting Th1 activation and central memory T-cell proliferation. Taken together, these findings support the perception that AuNPs are safe under homeostatic conditions; however, particular care should be taken in patients experiencing a current infection or disorders of the immune system.
树突状细胞(DCs)通过影响T细胞活化来塑造免疫反应。因此,它们被认为既是研究纳米-免疫相互作用的有趣模型,也是基于纳米的生物医学应用的有前景的靶点。然而,纳米颗粒(NPs)与生物分子相互作用的增强能力可能会影响DC功能,这带来了免疫反应失衡的意外风险。在这里,我们研究了金纳米颗粒(AuNPs)在存在微生物炎症刺激脂多糖(LPS)的情况下对DC功能的潜在影响以及对效应和记忆T细胞反应的后果。总体而言,我们发现,在没有LPS的情况下,所测试的NPs均未诱导DC反应。然而,虽然4、8和11纳米的AuNPs没有调节LPS依赖性免疫反应,但26纳米的AuNPs将LPS激活的DCs的表型转变为耐受状态,其特征是CD86、IL-12和IL-27下调,ILT3上调,以及E类区室的诱导。此外,这种DC表型在促进Th1激活和中枢记忆T细胞增殖方面不太熟练。综上所述,这些发现支持了AuNPs在稳态条件下是安全的这一观点;然而,对于目前正在经历感染或免疫系统紊乱的患者应格外小心。