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蛋白质组学揭示了与二氧化硅纳米颗粒诱导肝损伤相关的组成和大小调节剂。

Proteomics revealed composition- and size-related regulators for hepatic impairments induced by silica nanoparticles.

机构信息

Department of Toxicology and Sanitary Chemistry, School of Public Health, Capital Medical University, Beijing 100069, China; Beijing Key Laboratory of Environmental Toxicology, Capital Medical University, Beijing 100069, China.

Beijing Key Laboratory of Environmental Toxicology, Capital Medical University, Beijing 100069, China; Department of Occupational Health and Environmental Health, School of Public Health, Capital Medical University, Beijing 100069, China.

出版信息

Sci Total Environ. 2024 Apr 20;922:170584. doi: 10.1016/j.scitotenv.2024.170584. Epub 2024 Feb 2.

Abstract

Along with the growing production and application of silica nanoparticles (SiNPs), increased human exposure and ensuing safety evaluation have progressively attracted concern. Accumulative data evidenced the hepatic injuries upon SiNPs inhalation. Still, the understanding of the hepatic outcomes resulting from SiNPs exposure, and underlying mechanisms are incompletely elucidated. Here, SiNPs of two sizes (60 nm and 300 nm) were applied to investigate their composition- and size-related impacts on livers of ApoE mice via intratracheal instillation. Histopathological and biochemical analysis indicated SiNPs promoted inflammation, lipid deposition and fibrosis in the hepatic tissue, accompanied by increased ALT, AST, TC and TG. Oxidative stress was activated upon SiNPs stimuli, as evidenced by the increased hepatic ROS, MDA and declined GSH/GSSG. Of note, these alterations were more dramatic in SiNPs with a smaller size (SiNPs-60) but the same dosage. LC-MS/MS-based quantitative proteomics unveiled changes in mice liver protein profiles, and filtered out particle composition- or size-related molecules. Interestingly, altered lipid metabolism and oxidative damage served as two critical biological processes. In accordance with correlation analysis and liver disease-targeting prediction, a final of 10 differentially expressed proteins (DEPs) were selected as key potential targets attributable to composition- (4 molecules) and size-related (6 molecules) liver impairments upon SiNPs stimuli. Overall, our study provided strong laboratory evidence for a comprehensive understanding of the harmful biological effects of SiNPs, which was crucial for toxicological evaluation to ensure nanosafety.

摘要

随着二氧化硅纳米颗粒(SiNPs)的产量和应用不断增加,人类接触和随之而来的安全性评估问题也引起了越来越多的关注。大量数据表明,吸入 SiNPs 会导致肝脏损伤。然而,人们对 SiNPs 暴露导致的肝脏后果及其潜在机制的了解还不完全。在这里,我们使用了两种不同尺寸(60nm 和 300nm)的 SiNPs,通过气管内滴注的方式研究了它们的组成和尺寸对 ApoE 小鼠肝脏的影响。组织病理学和生化分析表明,SiNPs 促进了肝脏组织的炎症、脂质沉积和纤维化,同时伴随着 ALT、AST、TC 和 TG 的增加。SiNPs 刺激激活了氧化应激,表现为肝 ROS、MDA 的增加和 GSH/GSSG 的减少。值得注意的是,这些变化在尺寸较小(SiNPs-60)但剂量相同的 SiNPs 中更为明显。基于 LC-MS/MS 的定量蛋白质组学揭示了小鼠肝脏蛋白质图谱的变化,并筛选出了与颗粒组成或尺寸相关的分子。有趣的是,改变的脂质代谢和氧化损伤是两个关键的生物学过程。根据相关性分析和肝脏疾病靶向预测,最终选择了 10 个差异表达蛋白(DEPs)作为关键的潜在靶点,这些靶点归因于 SiNPs 刺激导致的组成(4 个分子)和尺寸相关(6 个分子)的肝脏损伤。总的来说,我们的研究为全面了解 SiNPs 的有害生物学效应提供了强有力的实验室证据,这对于确保纳米材料的安全性的毒理学评价至关重要。

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