非洲槲寄生(Loranthaceae)可改善成年BALB/c小鼠胆固醇诱导的运动障碍和氧化应激

A. Oremosu, E. Edem, O. Dosumu, A. Osuntoki
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引用次数: 4

摘要

简介:胆固醇稳态紊乱可影响神经元细胞膜并诱导氧化应激,从而影响运动功能。非洲槲寄生(罗兰科)是一种半寄生植物,已被用于治疗和管理几种疾病,包括中风和癫痫。目的:本研究旨在确定非洲槲寄生对胆固醇诱导的BALB/c小鼠运动障碍的改善作用。材料与方法:选用小鼠20只。将其分为对照组、试验组、提取组和处理组。通过给小鼠喂食富含2%胆固醇的饮食8周,建立了运动缺陷。小鼠随后口服槲寄生甲醇提取物制剂(每天200 mg/kg,连续2周)或生理盐水(0.5 ml)作为对照。数据以均数±平均值的标准误差表示;P < 0.05和P < 0.01(显著水平)。结果:与其他组相比,高胆固醇饮食(HCD)引起的运动障碍具有统计学意义。饲喂HCD 8周后,组织学结果显示BALB/c小鼠纹状体和小脑皮层结构明显破坏。给药200 mg/kg槲寄生甲醇提取物可改善慢性暴露于HCD所产生的组织形态扭曲。结论:研究结果表明,慢性暴露于HCD可影响BALB/c小鼠的运动神经系统及其功能,非洲槲寄生甲醇提取物可改善BALB/c小鼠的运动功能。
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African mistletoe (Loranthaceae) ameliorates cholesterol-induced motor deficit and oxidative stress in adult BALB/c mice
INTRODUCTION: Disturbances in cholesterol homeostasis can influence neuronal cell membranes and induce oxidative stress, which can impact motor function. African mistletoe (Loranthaceae) is a hemiparasitic plant which has been employed in the treatment and management of several ailments including strokes and epilepsies. AIM: This study was undertaken to determine the ameliorative effect of African mistletoe in cholesterol-induced motor deficit in BALB/c mice. MATERIALS AND METHODS: Twenty mice were used for this study. They were divided into four groups, namely, control, experimental, extract, and treatment. The motor deficit was established by feeding the mice with a diet enriched with 2% cholesterol for 8 weeks. Mice were subsequently treated with a mistletoe methanolic extract preparation through oral administration (200 mg/kg daily for 2 weeks) or with normal saline (0.5 ml) as a control. Data were expressed as a mean ± standard error of the mean; P < 0.05 and P < 0.01 (level of significance). RESULTS: The high cholesterol diet (HCD) induced a statistically significant motor deficit when compared to the other groups. After 8 weeks of HCD feeding, histological results showed remarkable structural disruptions in the corpus striatum and the cerebellar cortex of the BALB/c mice. Administration of 200 mg/kg of methanolic extract of mistletoe ameliorated histomorphological distortion produced by the chronic exposure to an HCD. CONCLUSION: The study findings have revealed that chronic exposure to a HCD can impact the motor neural systems and their functions, and treatment with methanolic extract of African mistletoe improves motor function in BALB/c mice.
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