Environmental Toxicology Unit, Department of Biochemistry, Faculty of Science, University of Port Harcourt, P.M.B 5323, Choba, Rivers State, Nigeria.
Drug Metabolism and Toxicology Research Laboratories, Department of Biochemistry, College of Medicine, University of Ibadan, Ibadan, Nigeria.
Biol Trace Elem Res. 2019 Sep;191(1):135-148. doi: 10.1007/s12011-018-1587-4. Epub 2018 Nov 28.
This study investigated the effects of ethanol (EtOH) on manganese (Mn)-induced striatal toxicity in rat by evaluating the neurobehavioral changes, biochemical and molecular events in rats exposed to Mn alone at 30 mg/kg, or their combination with EtOH at 1.25- and 5-g/kg body weight for 35 consecutive days. Locomotive and exploratory profiles were assessed using a video tracking software (ANY-Maze software) during a 5-min trial in a novel environment. Subsequently, acetylcholinesterase (AChE) activity, oxidative stress markers, histological morphology, and expression of apoptotic proteins (p53 and Bax and caspase-3) and anti-apoptotic protein (Bcl-2) were assessed in the striatum. Results showed that Mn, EtOH, and their combination induced locomotor and motor deficits. Track plot analysis indicated that EtOH exacerbated the Mn-induced reduction in exploratory profiles of exposed rats. Similarly, exposure of rats to Mn, EtOH, or combination of Mn and EtOH resulted in decreased activities of anti-oxidant enzymes, diminished level of reduced glutathione, downregulated Bcl-2 expression, increased AChE activity, enhanced hydrogen peroxide and lipid peroxidation levels, and upregulated expressions of p53, Bax, and caspase-3. Moreover, potentiation of Mn-induced striatal toxicity by EtOH co-exposure was dose dependent. Taken together, it seems that EtOH exacerbates Mn-induced neurobehavioral deficits, oxidative stress, and apoptosis induction via the regulation of p53, caspase-3, and Bax/Bcl-2 ratio-dependent pathway in rat striatum.
本研究通过评估单独暴露于 30mg/kg 锰(Mn)的大鼠以及同时暴露于 1.25-和 5g/kg 体重乙醇(EtOH)的大鼠的神经行为变化、生化和分子事件,研究了 EtOH 对 Mn 诱导的纹状体毒性的影响。在新环境中进行 5 分钟的试验期间,使用视频跟踪软件(ANY-Maze 软件)评估运动和探索性特征。随后,评估纹状体中的乙酰胆碱酯酶(AChE)活性、氧化应激标志物、组织形态以及凋亡蛋白(p53、Bax 和 caspase-3)和抗凋亡蛋白(Bcl-2)的表达。结果表明,Mn、EtOH 及其组合诱导运动和运动缺陷。轨迹图分析表明 EtOH 加剧了 Mn 诱导的暴露大鼠探索性特征的减少。同样,暴露于 Mn、EtOH 或 Mn 和 EtOH 的组合导致抗氧化酶活性降低,还原型谷胱甘肽水平降低,Bcl-2 表达下调,AChE 活性增加,过氧化氢和脂质过氧化水平升高,以及 p53、Bax 和 caspase-3 的表达上调。此外,EtOH 共暴露增强了 Mn 诱导的纹状体毒性,具有剂量依赖性。总之,似乎 EtOH 通过调节 p53、caspase-3 和 Bax/Bcl-2 比值依赖性途径,加剧了 Mn 诱导的大鼠纹状体中的神经行为缺陷、氧化应激和细胞凋亡诱导。