气管内灌注不同直径的氧化石墨烯可抑制小鼠肺和肝脏中toll样受体3介导的脂滴生物生成。

IF 2.1 4区 医学 Q3 TOXICOLOGY
Toxicology Research Pub Date : 2025-05-17 eCollection Date: 2025-06-01 DOI:10.1093/toxres/tfaf069
Yijin Wang, Xiaomin Tang, Sihuan Luo, Zhaohui Zhang, Yi Cao
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引用次数: 0

摘要

近年来的研究表明,脂滴作为动态先天免疫中枢,协调细胞代谢和防御机制。先前的研究主要集中在纳米材料(NMs)改变脂质代谢以影响脂滴动力学,而本研究开创性地通过toll样受体(TLR)途径研究纳米诱导的免疫调节作为脂滴的新调控轴。基于我们之前的发现,氧化石墨烯(GO)会损害tlr3介导的脂质信号,我们系统地探索了氧化石墨烯直径在调节这一过程中的作用。小鼠每天气管内灌注三种氧化石墨烯变体(50-200 nm, 500 nm),剂量为1 mg/kg,持续7天。虽然没有观察到体重或器官系数的显著变化,但所有氧化石墨烯暴露都抑制了小鼠肺和肝脏的脂质染色,这与TLR3和periilipin 2 (PLIN2)共定位的改变有关,这是脂滴生物形成的关键调节因子。TLR3信号成分,即干扰素诱导的四肽重复蛋白1 (IFIT1)、含s -腺苷基酪氨酸结构域2 (RSAD2)和PLIN2的下调以直径依赖性的方式发生,其中GO 50-200 nm表现出最明显的影响,可能是由于悬浮液的水动力尺寸和多分散性指数最小。这项工作提供了纳米几何结构控制tlr介导的脂滴调节的证据,弥合了纳米毒理学和免疫代谢串话之间的知识差距,这是一种不同于传统的以脂质代谢为重点的纳米毒理学研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Intratracheal instillation of graphene oxide with different diameters suppressed toll-like receptor 3-mediated lipid droplet biogenesis in lungs and livers of mice.

Recent advances have established lipid droplets as dynamic innate immune hubs coordinating cellular metabolism and defense mechanisms. While previous studies primarily focused on nanomaterials (NMs) altering lipid metabolism to influence lipid droplet dynamics, this study pioneers the investigation of NM-induced immune modulation via Toll-like receptor (TLR) pathways as a novel regulatory axis for lipid droplets. Building on our prior findings that graphene oxide (GO) impaired TLR3-mediated lipid signaling, we systematically explored the role of GO's diameter in modulating this process. Mice were subjected to daily intratracheal instillation of three GO variants (50-200 nm, <500 nm or > 500 nm) at 1 mg/kg for 7 days. Although no significant change in body weight or organ coefficient was observed, all GO exposure suppressed lipid staining in mouse lungs and livers, correlating with altered co-localization of TLR3 and perilipin 2 (PLIN2), critical regulators of lipid droplet biogenesis. Down-regulation of TLR3 signaling components, namely interferon induced protein with tetratricopeptide repeats 1 (IFIT1), radical S-adenosyl methionine domain containing 2 (RSAD2), and PLIN2, occurred in a diameter-dependent manner, with GO 50-200 nm showing the most pronounced effects, likely attributable to the smallest hydrodynamic size and polydispersity index in suspension. This work provides evidence that NM geometry governs TLR-mediated lipid droplet regulation, bridging the knowledge gap between nanotoxicology and immunometabolic cross-talking, a paradigm distinct from conventional lipid metabolism-focused nanotoxicological studies.

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来源期刊
Toxicology Research
Toxicology Research TOXICOLOGY-
CiteScore
3.60
自引率
0.00%
发文量
82
期刊介绍: A multi-disciplinary journal covering the best research in both fundamental and applied aspects of toxicology
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