穿心莲通过减轻氧化应激对氯化汞诱导的脑海马和小脑损伤具有保护作用。

Eduitem Sunday Otong, Wusa Makena, Abel Yashim Solomon, Sebastine Anthony Bazabang, Aisha Aminu, Rachael Henry
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摘要

氯化汞(HgCl2)是一种神经毒物,尽管为降低其在环境中的含量做出了许多努力,但仍对健康构成危害。利用药用植物治疗各种疾病和其他有毒物质,由于其有效性和可负担的费用而日益流行。穿心莲(a . paniculata)是一种具有收敛和解毒特性的植物,因其药用和抗氧化作用而在世界范围内得到广泛应用。本研究旨在探讨荆芥水提物对hgcl2诱导的记忆损伤、氧化应激和脑损伤的保护作用。25只成年Wistar大鼠随机分为5组:对照组、HgCl2 0.5 mg/kg、HgCl2+AP 250 mg/kg、HgCl2+AP 500 mg/kg、HgCl2+抗坏血酸200 mg/kg。连续28 d,每天1次灌胃给药。注射HgCl2导致记忆障碍,大脑中谷氨酸浓度增加,并产生氧化应激。通过平衡乙酰胆碱酯(AChE)和多巴胺的活性水平,从而降低谷氨酸浓度,避免氧化应激,改善大脑的组织病理学改变,针刺组的记忆损伤得以预防。金银花通过提高记忆指数、调节神经递质水平、降低氧化应激等方式减轻hgcl2诱导的Wistar大鼠记忆损伤。
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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Andrographis paniculata protects against brain hippocampus and cerebellum from mercury chloride induced damage by attenuating oxidative stress.

Mercury chloride (HgCl2) is a neurotoxicant that remains a health hazard despite numerous efforts to reduce its levels in the environment. The use of medicinal plants in treating various diseases and other toxic agents has grown popular owing to their effectiveness and affordable rates. Andrographis paniculata (A. paniculata) is a plant with astringent and detoxifying characteristics and is widely used worldwide for its medicinal and antioxidant benefits. This study aimed to investigate the possible protective effects of A. paniculata aqueous extract against HgCl2-induced memory impairment, oxidative stress, and brain damage. Twenty-five adult Wistar rats were randomly divided into five groups: control, HgCl2 0.5 mg/kg, HgCl2+AP 250 mg/kg, HgCl2+AP 500 mg/kg, or HgCl2+Ascorbic acid 200 mg/kg. For 28 days, administrations were given through oral gavage once a day. HgCl2 injection resulted in memory impairment, increased glutamate concentrations in the brain, and the production of oxidative stress. Memory impairment was prevented in A. paniculata-treated groups by balancing the levels of AChE and dopamine activities, which then lowered glutamate concentration, avoided oxidative stress, and improved histopathological alterations in the brain. A. paniculata alleviated HgCl2-induced memory impairment in Wistar rats by increasing the memory index, regulating neurotransmitter levels, and reducing oxidative stress.

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