Department of Histology and Embryology, Jessenius Faculty of Medicine, Comenius University in Bratislava, 03601 Martin, Slovakia.
Department of Neuroscience, Biomedical Center Martin, Jessenius Faculty of Medicine, Comenius University in Bratislava, 03601 Martin, Slovakia.
Int J Mol Sci. 2021 May 7;22(9):4961. doi: 10.3390/ijms22094961.
L-methionine, an essential amino acid, plays a critical role in cell physiology. High intake and/or dysregulation in methionine (Met) metabolism results in accumulation of its intermediate(s) or breakdown products in plasma, including homocysteine (Hcy). High level of Hcy in plasma, hyperhomocysteinemia (hHcy), is considered to be an independent risk factor for cerebrovascular diseases, stroke and dementias. To evoke a mild hHcy in adult male Wistar rats we used an enriched Met diet at a dose of 2 g/kg of animal weight/day in duration of 4 weeks. The study contributes to the exploration of the impact of Met enriched diet inducing mild hHcy on nervous tissue by detecting the histo-morphological, metabolomic and behavioural alterations. We found an altered plasma metabolomic profile, modified spatial and learning memory acquisition as well as remarkable histo-morphological changes such as a decrease in neurons' vitality, alterations in the morphology of neurons in the selective vulnerable hippocampal CA 1 area of animals treated with Met enriched diet. Results of these approaches suggest that the mild hHcy alters plasma metabolome and behavioural and histo-morphological patterns in rats, likely due to the potential Met induced changes in "methylation index" of hippocampal brain area, which eventually aggravates the noxious effect of high methionine intake.
L-蛋氨酸是一种必需氨基酸,在细胞生理学中发挥着关键作用。蛋氨酸(Met)代谢的高摄入和/或失调会导致其中间产物或代谢产物在血浆中积累,包括同型半胱氨酸(Hcy)。血浆中 Hcy 水平升高,即高同型半胱氨酸血症(hHcy),被认为是脑血管疾病、中风和痴呆的独立危险因素。为了在成年雄性 Wistar 大鼠中诱发轻度 hHcy,我们使用了一种富含 Met 的饮食,剂量为 2 g/kg 动物体重/天,持续 4 周。这项研究通过检测组织形态学、代谢组学和行为改变,有助于探索富含 Met 的饮食诱导轻度 hHcy 对神经组织的影响。我们发现,血浆代谢组图谱发生了改变,空间和学习记忆获得能力发生了改变,并且还出现了明显的组织形态学变化,如神经元活力下降,以及接受富含 Met 饮食治疗的动物海马 CA1 区选择性脆弱神经元形态的改变。这些方法的结果表明,轻度 hHcy 改变了大鼠的血浆代谢组、行为和组织形态学模式,这可能是由于 Met 诱导的海马脑区“甲基化指数”发生潜在变化,最终加重了高 Met 摄入的有害影响。