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氧化锌纳米颗粒可作为接触性超敏反应中小鼠皮肤免疫抑制的有效诱导剂。

ZnO Nanoparticles as Potent Inducers of Dermal Immunosuppression in Contact Hypersensitivity in Mice.

机构信息

School of Biological Sciences, University of Hong Kong, Pok Fu Lam Road, 999077 Hong Kong, People's Republic of China.

Human Microbiome Research Program, University of Helsinki, Haartmaninkatu 3, 00290 Helsinki, Finland.

出版信息

ACS Nano. 2024 Oct 29;18(43):29479-29491. doi: 10.1021/acsnano.4c04270. Epub 2024 Oct 14.

Abstract

Nanosized zinc oxide (nZnO) metal particles are used in skin creams and sunscreens to enhance their texture and optical properties as UV filters. Despite their common use, little is known about the molecular mechanisms of nZnO exposure on damaged skin. We studied the effects of topically applied nZnO particles on allergic skin inflammation in an oxazolone (OXA)-induced contact hypersensitivity (CHS) mouse model. We investigated whether exposure to nZnO during the sensitization or challenge phase would induce immunological changes and modulate transcriptional responses. We followed skin thickness, cellular infiltration, and changes in the local transcriptome up to 28 days after the challenge. The responses peaked at 24 h and were fully resolved by 28 days. Co-exposure to nZnO and hapten did not interfere with the formation of the sensitization process. Conversely, during the hapten challenge, the application of nZnO fully suppressed the development of the CHS response by the inhibition of pro-inflammatory pathways, secretion of pro-inflammatory cytokines, and proliferation of immune cells. In differentiated and stimulated THP-1 cells and the CHS mouse model, we found that nZnO particles and Zn ions contributed to anti-inflammatory responses. The immunosuppressive properties of nZnO in inflamed skin are mediated by impaired IL-1R-, CXCR2-, and LTB4-mediated pathways. nZnO-induced dermal immunosuppression may be beneficial for individuals with contact allergies who use nZnO-containing cosmetic products. Our findings also provide a deeper understanding of the mechanisms of nZnO, which could be considered when developing nanoparticle-containing skin products.

摘要

纳米氧化锌 (nZnO) 金属颗粒被用于皮肤霜和防晒霜中,以增强其质地和光学性能,作为紫外线过滤器。尽管它们被广泛使用,但对于 nZnO 暴露在受损皮肤上的分子机制知之甚少。我们研究了局部应用 nZnO 颗粒对氧化芴(OXA)诱导的接触性超敏反应 (CHS) 小鼠模型中过敏性皮肤炎症的影响。我们研究了在致敏或挑战阶段暴露于 nZnO 是否会诱导免疫变化并调节转录反应。我们跟踪了皮肤厚度、细胞浸润以及局部转录组的变化,直到挑战后 28 天。反应在 24 小时达到峰值,并在 28 天内完全解决。nZnO 和半抗原同时暴露不会干扰致敏过程的形成。相反,在半抗原挑战期间,nZnO 的应用通过抑制促炎途径、促炎细胞因子的分泌和免疫细胞的增殖,完全抑制了 CHS 反应的发展。在分化和刺激的 THP-1 细胞和 CHS 小鼠模型中,我们发现 nZnO 颗粒和 Zn 离子有助于抗炎反应。nZnO 在发炎皮肤中的免疫抑制特性是通过受损的 IL-1R-、CXCR2-和 LTB4 介导途径介导的。nZnO 诱导的皮肤免疫抑制可能对使用含 nZnO 的化妆品产品的接触过敏个体有益。我们的研究结果还提供了对 nZnO 机制的更深入理解,这在开发含纳米颗粒的皮肤产品时可以考虑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ab9/11526425/7425f9d3e069/nn4c04270_0001.jpg

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