Evaluation of the Neuroprotective Effects of Idebenone in an Experimental Carbon Monoxide Poisoning Model.

IF 2.7 4区 医学 Q3 TOXICOLOGY Journal of Applied Toxicology Pub Date : 2024-12-05 DOI:10.1002/jat.4742
Hulya Karakus, Ozlem Bulbul, Ali Kulaber, Huseyin Yaman, Sinan Pasli, Melih Imamoglu, Yunus Karaca, Engin Yenilmez, Vildan Ozer
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Abstract

Carbon monoxide (CO) poisoning is among the main causes of poisoning-related mortality and morbidity, primarily affecting the central nervous system and leading to delayed neurological sequelae. Idebenone exerts antioxidant and neuroprotective effects. In this study, we aimed to evaluate the specific neuroprotective effects of idebenone against CO poisoning. Forty female Wistar Albino rats were used in this study. Except the controls, the other rats inhaled 5000 ppm CO until a change in consciousness was observed. Rats with carboxyhemoglobin concentrations over 20% in blood samples collected from the tail vein were considered successful acute CO poisoning models. The rats were divided into five groups: healthy control (HC; group 1), CO + saline (CO-S; group 2), CO + 100 mg/kg idebenone (CO-I100; group 3), CO + 200 mg/kg idebenone (CO-I200; group 4), and CO + 300 mg/kg idebenone (CO-I300; group 5). Pre-determined doses of idebenon were orally administered to the rats at 24-h intervals for 5 days. The rats were anesthetized and sacrificed 24 h after the last drug dose. Histopathological and biochemical parameters were examined in the blood and hippocampus samples of the rats. Histopathological grading of neurons in the hippocampus revealed that the CO-S group exhibited the highest number of grade 1, 2, and 3 degenerative cells (all p = 0.001). Apoptotic index was the highest in the CO-S group and significantly low in the idebenone-treated groups (p = 0.001). Neuron-specific enolase and malondialdehyde levels and oxidative stress index were significantly lower in both the hippocampus and serum samples of the idebenone-treated groups than in those of the CO-S group (all p values = 0.001). Overall, idebenone inhibited degeneration due to CO-induced brain damage and exerted neuroprotective effects against oxidative stress in rats.

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艾地苯酮对一氧化碳中毒模型的神经保护作用评价。
一氧化碳(CO)中毒是中毒相关死亡率和发病率的主要原因之一,主要影响中枢神经系统并导致延迟的神经后遗症。依地苯酮具有抗氧化和神经保护作用。在本研究中,我们旨在评估地地苯酮对一氧化碳中毒的特异性神经保护作用。本研究选用40只雌性Wistar白化大鼠。除了对照组,其他老鼠吸入5000ppm的二氧化碳,直到观察到意识的变化。尾静脉血中碳氧血红蛋白浓度超过20%的大鼠为成功的急性一氧化碳中毒模型。将大鼠分为5组:健康对照组(HC);1组),CO +生理盐水(CO- s;第二组),CO + 100 mg/kg伊地苯酮(CO- i100;3组),CO + 200 mg/kg伊地苯酮(CO- i200;第4组),CO + 300 mg/kg伊地苯酮(CO- i300;第5组)。预先确定剂量的依地苯农每隔24小时给药,连续5天。末次给药后24 h麻醉处死大鼠。测定大鼠血液和海马组织病理学和生化指标。海马神经元的组织病理学分级显示,CO-S组表现出最多的1级、2级和3级退行性细胞(均p = 0.001)。凋亡指数以CO-S组最高,依地苯酮处理组明显较低(p = 0.001)。与CO-S组相比,伊地苯酮处理组海马和血清样本中神经元特异性烯醇化酶和丙二醛水平及氧化应激指数显著降低(p值均为0.001)。总体而言,伊地苯酮抑制co诱导的大鼠脑损伤变性,并对氧化应激发挥神经保护作用。
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来源期刊
CiteScore
7.00
自引率
6.10%
发文量
145
审稿时长
1 months
期刊介绍: Journal of Applied Toxicology publishes peer-reviewed original reviews and hypothesis-driven research articles on mechanistic, fundamental and applied research relating to the toxicity of drugs and chemicals at the molecular, cellular, tissue, target organ and whole body level in vivo (by all relevant routes of exposure) and in vitro / ex vivo. All aspects of toxicology are covered (including but not limited to nanotoxicology, genomics and proteomics, teratogenesis, carcinogenesis, mutagenesis, reproductive and endocrine toxicology, toxicopathology, target organ toxicity, systems toxicity (eg immunotoxicity), neurobehavioral toxicology, mechanistic studies, biochemical and molecular toxicology, novel biomarkers, pharmacokinetics/PBPK, risk assessment and environmental health studies) and emphasis is given to papers of clear application to human health, and/or advance mechanistic understanding and/or provide significant contributions and impact to their field.
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