Isochlorogenic acid A ameliorated lead-induced anxiety-like behaviors in mice by inhibiting ferroptosis-mediated neuroinflammation via the BDNF/Nrf2/GPX4 pathways

IF 3.9 3区 医学 Q2 FOOD SCIENCE & TECHNOLOGY Food and Chemical Toxicology Pub Date : 2024-06-13 DOI:10.1016/j.fct.2024.114814
Jun-Tao Guo , Han-Yu Li , Chao Cheng, Jia-Xue Shi, Hai-Nan Ruan, Jun Li, Chan-Min Liu
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Abstract

Lead (Pb) is a common environmental neurotoxicant that causes behavioral impairments in both rodents and humans. Isochlorogenic acid A (ICAA), a phenolic acid found in a variety of natural sources such as tea, fruits, vegetables, coffee, plant-based food products, and various medicinal plants, exerts multiple effects, including protective effects on the lungs, livers, and intestines. The objective of this study was to investigate the potential neuroprotective effects of ICAA against Pb-induced neurotoxicity in ICR mice. The results indicate that ICAA attenuates Pb-induced anxiety-like behaviors. ICAA reduced neuroinflammation, ferroptosis, and oxidative stress caused by Pb. ICAA successfully mitigated the Pb-induced deficits in the cholinergic system in the brain through the reduction of ACH levels and the enhancement of AChE and BChE activities. ICAA significantly reduced the levels of ferrous iron and MDA in the brain and prevented decreases in GSH, SOD, and GPx activity. Immunofluorescence analysis demonstrated that ICAA attenuated ferroptosis and upregulated GPx4 expression in the context of Pb-induced nerve damage. Additionally, ICAA downregulated TNF-α and IL-6 expression while concurrently enhancing the activations of Nrf2, HO-1, NQO1, BDNF, and CREB in the brains of mice. The inhibition of BDNF, Nrf2 and GPx4 reversed the protective effects of ICAA on Pb-induced ferroptosis in nerve cells. In general, ICAA ameliorates Pb-induced neuroinflammation, ferroptosis, oxidative stress, and anxiety-like behaviors through the activation of the BDNF/Nrf2/GPx4 pathways.

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异绿原酸A通过BDNF/Nrf2/GPX4途径抑制铁变态介导的神经炎症,从而改善铅诱导的小鼠焦虑样行为。
铅(Pb)是一种常见的环境神经毒物,会导致啮齿动物和人类的行为障碍。异绿原酸 A(ICAA)是一种酚酸,存在于茶叶、水果、蔬菜、咖啡、植物性食品和各种药用植物等多种天然来源中,具有多种功效,包括对肺、肝脏和肠道的保护作用。本研究的目的是研究 ICAA 对铅诱导的 ICR 小鼠神经毒性的潜在神经保护作用。结果表明,ICAA 可减轻铅诱导的焦虑样行为。ICAA减轻了铅引起的神经炎症、铁变态反应和氧化应激。ICAA 通过降低 ACH 水平、增强 AChE 和 BChE 活性,成功缓解了铅诱导的大脑胆碱能系统缺陷。ICAA 能明显降低大脑中亚铁和 MDA 的水平,防止 GSH、SOD 和 GPx 活性的降低。免疫荧光分析表明,在铅诱导的神经损伤中,ICAA减轻了铁变态反应,并上调了GPx4的表达。此外,ICAA 还能降低 TNF-α 和 IL-6 的表达,同时增强小鼠大脑中 Nrf2、HO-1、NQO1、BDNF 和 CREB 的活化。对 BDNF、Nrf2 和 GPx4 的抑制逆转了 ICAA 对铅诱导的神经细胞铁突变的保护作用。总的来说,ICAA通过激活BDNF/Nrf2/GPx4通路,可改善铅诱导的神经炎症、铁蛋白沉积、氧化应激和焦虑样行为。
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来源期刊
Food and Chemical Toxicology
Food and Chemical Toxicology 工程技术-毒理学
CiteScore
10.90
自引率
4.70%
发文量
651
审稿时长
31 days
期刊介绍: Food and Chemical Toxicology (FCT), an internationally renowned journal, that publishes original research articles and reviews on toxic effects, in animals and humans, of natural or synthetic chemicals occurring in the human environment with particular emphasis on food, drugs, and chemicals, including agricultural and industrial safety, and consumer product safety. Areas such as safety evaluation of novel foods and ingredients, biotechnologically-derived products, and nanomaterials are included in the scope of the journal. FCT also encourages submission of papers on inter-relationships between nutrition and toxicology and on in vitro techniques, particularly those fostering the 3 Rs. The principal aim of the journal is to publish high impact, scholarly work and to serve as a multidisciplinary forum for research in toxicology. Papers submitted will be judged on the basis of scientific originality and contribution to the field, quality and subject matter. Studies should address at least one of the following: -Adverse physiological/biochemical, or pathological changes induced by specific defined substances -New techniques for assessing potential toxicity, including molecular biology -Mechanisms underlying toxic phenomena -Toxicological examinations of specific chemicals or consumer products, both those showing adverse effects and those demonstrating safety, that meet current standards of scientific acceptability. Authors must clearly and briefly identify what novel toxic effect (s) or toxic mechanism (s) of the chemical are being reported and what their significance is in the abstract. Furthermore, sufficient doses should be included in order to provide information on NOAEL/LOAEL values.
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