Erqember减轻氯化铝对小鼠的神经毒性作用:神经行为和计算机方法的植物化学见解。

IF 3.4 Q2 TOXICOLOGY
Journal of Toxicology Pub Date : 2025-04-02 eCollection Date: 2025-01-01 DOI:10.1155/jt/3997995
Habiba Khan, Sana Javaid, Waseem Ashraf, Farhan Siddique, Mehvish Bibi, Tanveer Ahmad, Muhammad Shoaib Ali Gill, Asad Abrar, Faleh Alqahtani, Imran Imran
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引用次数: 0

摘要

草药制剂的日益普及促使世界各地的人们将草药产品纳入他们的均衡饮食,旨在改善大脑健康并预防神经系统疾病。Erqember(Erq-Em)含有多种神经保护植物化合物的混合物。本研究旨在对其进行植物化学分析,并科学验证其对神经系统的益处。在通过UHPLC-MS进行化学表征后,体内研究包括在alcl3诱导的失忆小鼠模型中补充10和20 mL/kg剂量的Erq-Em,然后在一系列行为测试中对焦虑和认知进行行为评估。随后,解剖全脑进行生化和组织病理学分析。此外,该研究还包括在硅研究中了解检测到的植物化合物与乙酰胆碱酯酶蛋白的相互作用。结果显示,用Eqr-Em治疗的小鼠可以避免类似焦虑的行为,因为它们在OFT、L/D和EPM测试中更倾向于天生令人恐惧的中心、减轻和升高区域。此外,Erq-Em的补充改善了y迷宫和NOR测试中的自发学习,而在被动回避和水迷宫测试中,他们的记忆分别从更长的穿越步和更短的逃避潜伏期中显现出来。脑匀浆生化分析显示,Erq-Em小鼠的AchE和MDA水平降低,SOD和GPx水平升高。此外,erq - em处理小鼠尼氏染色海马CA1区和DG区健康和完整的神经元计数明显高。通过硅研究,UPLC-MS检测到的化合物显示出良好的血脑屏障通透性,并与乙酰胆碱酯酶蛋白相互作用良好。总的来说,Erqember对神经系统的益处可能来自于增强的胆碱能神经传递和其植物化合物的抗氧化活性,它们共同起着对抗alcl3诱导的神经毒性的多模式策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Erqember Mitigates Neurotoxic Effects of Aluminum Chloride in Mice: Phytochemical Insights With Neurobehavioral and In Silico Approaches.

The increasing popularity of herbal preparations has prompted people around the world to incorporate herbal products into their balanced diet, aiming to improve brain health and protect against neurological disorders. Erqember(Erq-Em) possesses a blend of various neuroprotective phytocompounds. The present study aimed to phytochemically analyze this polyherbal product and scientifically validate its neurological benefits. After chemical characterization through UHPLC-MS, in vivo studies involved the supplementation of mice with 10 and 20 mL/kg doses of Erq-Em in an AlCl3-induced amnesic mice model followed by behavioral assessment for anxiety and cognition in a battery of behavioral tests. Subsequently, whole brains were dissected for biochemical and histopathological analysis. Further, the study also included in silico studies to understand the interaction of detected phytocompounds with acetylcholinesterase protein. The outcomes revealed that mice treated with Eqr-Em were protected from anxiety-like behavior as they dose-dependently prefer innately frightening central, lightened, and elevated zones in OFT, L/D, and EPM tests. Moreover, the Erq-Em supplementation caused improved spontaneous learning in Y-maze and NOR tests, while their memory in passive avoidance and water maze tests was evident from longer step-through and shorter escape latencies, respectively. The biochemical analysis of brain homogenates showed a reduction in AchE and MDA while elevation in SOD and GPx levels in mice receiving Erq-Em. Moreover, the healthy and intact neuronal counts were markedly high in CA1 and DG regions of Nissl's-stained hippocampi of Erq-Em-treated mice. The compounds detected by UPLC-MS showed favorable BBB permeability and interacted well with acetylcholinesterase protein through in silico studies. Overall, the neurological benefits of Erqember might result from enhanced cholinergic neurotransmission and antioxidative activity of its phytocompounds, which together function as multimodal strategies against AlCl3-induced neurotoxicity.

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来源期刊
Journal of Toxicology
Journal of Toxicology TOXICOLOGY-
CiteScore
5.50
自引率
3.40%
发文量
0
审稿时长
10 weeks
期刊介绍: Journal of Toxicology is a peer-reviewed, Open Access journal that publishes original research articles, review articles, and clinical studies in all areas of toxicological sciences. The journal will consider articles looking at the structure, function, and mechanism of agents that are toxic to humans and/or animals, as well as toxicological medicine, risk assessment, safety evaluation, and environmental health.
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