Sustained oral intake of nano-iron oxide perturbs the gut-liver axis

IF 4.7 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Jiangxue Li , Liuxiang Wang , Shilin Li , Xiaoyu Liang , Yiming Zhang , Yaling Wang , Ying Liu
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引用次数: 1

Abstract

Nanomaterial have shown excellent properties in the food industry. Although iron oxides are often considered safe and widely used as food additives, the toxicity of nano‑iron oxide remains unclear. Here we established a subchronic exposure mouse model by gavage, tested the biodistribution of nano‑iron oxide, and explored the mechanism of liver injury caused by it through disturbance of the gut-liver axis. Oral intake of nano‑iron oxide will likely disrupt the small intestinal epithelial barrier, induce hepatic lipid metabolism disorders through the gut–liver axis, and cause hepatic damage accompanied with hepatic iron deposition. Nano‑iron oxide mainly caused hepatic lipid metabolism disorder by perturbing glycerophospholipid metabolism and the sphingolipid metabolism pathways, with the total abundance of phosphatidylcholine (PC) and phosphatidylethanolamine (PE) tending to decrease while that of triglyceride tended to increase, in a time- and dose-dependent manner. The imbalanced lipid homeostasis could cause damage via membrane disruption, lipid accumulation, and lipotoxicity. This data provides information about the subchronic toxicity of nano‑iron oxide, highlights the importance of gut-liver axis in the hepatotoxicity.

持续口服纳米氧化铁扰乱肠肝轴
纳米材料在食品工业中显示出优异的性能。尽管氧化铁通常被认为是安全的,并被广泛用作食品添加剂,但纳米氧化铁的毒性仍不清楚。在这里,我们通过灌胃建立了亚慢性暴露小鼠模型,测试了纳米氧化铁的生物分布,并通过肠肝轴紊乱探讨了其引起肝损伤的机制。口服纳米氧化铁可能会破坏小肠上皮屏障,通过肠肝轴诱导肝脏脂质代谢紊乱,并导致肝脏损伤并伴有肝脏铁沉积。纳米氧化铁主要通过干扰甘油磷脂代谢和鞘脂代谢途径引起肝脏脂质代谢紊乱,磷脂酰胆碱(PC)和磷脂酰乙醇胺(PE)的总丰度呈下降趋势,甘油三酯的总丰度则呈增加趋势,呈时间和剂量依赖性。不平衡的脂质稳态可能通过膜破坏、脂质积聚和脂毒性引起损伤。该数据提供了有关纳米氧化铁亚慢性毒性的信息,强调了肠肝轴在肝毒性中的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
NanoImpact
NanoImpact Social Sciences-Safety Research
CiteScore
11.00
自引率
6.10%
发文量
69
审稿时长
23 days
期刊介绍: NanoImpact is a multidisciplinary journal that focuses on nanosafety research and areas related to the impacts of manufactured nanomaterials on human and environmental systems and the behavior of nanomaterials in these systems.
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