AuNPs with Cynara scolymus leaf extracts rescue arsenic-induced neurobehavioral deficits and hippocampal tissue toxicity in Balb/c mice through D1R and D2R activation

IF 4.2 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Betul Cicek , Ahmet Hacimuftuoglu , Yesim Yeni , Mehmet Kuzucu , Sidika Genc , Ahmet Cetin , Emre Yavuz , Betul Danısman , Akin Levent , Kemal Volkan Ozdokur , Mecit Kantarcı , Anca Oana Docea , Vasileios Siokas , Konstantinos Tsarouhas , Michael D. Coleman , Aristidis Tsatsakis , Ali Taghizadehghalehjoughi
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Abstract

The present study was designed to evaluate whether AuNPs (gold nanoparticles) synthesized with the Cynara scolymus (CS) leaf exert protective and/or alleviative effects on arsenic (As)-induced hippocampal neurotoxicity in mice. Neurotoxicity in mice was developed by orally treating 10 mg/kg/day sodium arsenite (NaAsO2) for 21 days. 10 µg/g AuNPs, 1.6 g/kg CS, and 10 µg/g CS-AuNPs were administered orally simultaneously with 10 mg/kg As. CS and CS-AuNPs treatments showed down-regulation of TNF-α and IL-1β levels. CS and CS-AuNPs also ameliorated apoptosis and reduced the alterations in the expression levels of D1 and D2 dopamine receptors induced by As. Simultaneous treatment with CS and CS-AuNPs improved As-induced learning, memory deficits, and motor coordination in mice assessed by water maze and locomotor tests, respectively. The results of this study provide evidence that CS-AuNPs demonstrated neuroprotective roles with antioxidant, anti-inflammatory, and anti-apoptotic effects, as well as improving D1 and D2 signaling, and eventually reversed neurobehavioral impairments.

含有茜草叶提取物的 AuNPs 可通过激活 D1R 和 D2R 挽救砷诱导的 Balb/c 小鼠神经行为缺陷和海马组织毒性。
本研究旨在评估用茜草(CS)叶合成的 AuNPs(金纳米粒子)是否对砷(As)诱导的小鼠海马神经毒性具有保护和/或缓解作用。小鼠的神经毒性是通过口服 10 毫克/千克/天的亚砷酸钠(NaAsO2)21 天而产生的。10µg/g AuNPs、1.6g/kg CS 和 10µg/g CS-AuNPs 与 10mg/kg As 同时口服。结果显示,CS和CS-AuNPs能下调TNF-α和IL-1β的水平。CS 和 CS-AuNPs 还能改善 As 诱导的细胞凋亡并减少 D1 和 D2 多巴胺受体表达水平的变化。同时使用 CS 和 CS-AuNPs 还能改善 As 诱导的小鼠学习、记忆缺陷和运动协调能力,分别通过水迷宫和运动测试进行评估。这项研究的结果证明,CS-AuNPs 具有抗氧化、抗炎和抗凋亡的神经保护作用,并能改善 D1 和 D2 信号传导,最终逆转神经行为损伤。
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来源期刊
CiteScore
7.00
自引率
4.70%
发文量
185
审稿时长
34 days
期刊介绍: Environmental Toxicology and Pharmacology publishes the results of studies concerning toxic and pharmacological effects of (human and veterinary) drugs and of environmental contaminants in animals and man. Areas of special interest are: molecular mechanisms of toxicity, biotransformation and toxicokinetics (including toxicokinetic modelling), molecular, biochemical and physiological mechanisms explaining differences in sensitivity between species and individuals, the characterisation of pathophysiological models and mechanisms involved in the development of effects and the identification of biological markers that can be used to study exposure and effects in man and animals. In addition to full length papers, short communications, full-length reviews and mini-reviews, Environmental Toxicology and Pharmacology will publish in depth assessments of special problem areas. The latter publications may exceed the length of a full length paper three to fourfold. A basic requirement is that the assessments are made under the auspices of international groups of leading experts in the fields concerned. The information examined may either consist of data that were already published, or of new data that were obtained within the framework of collaborative research programmes. Provision is also made for the acceptance of minireviews on (classes of) compounds, toxicities or mechanisms, debating recent advances in rapidly developing fields that fall within the scope of the journal.
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