海马体
低血糖
海马结构
组氨酸
糖尿病
认知
医学
内科学
代谢物
碳水化合物代谢
内分泌学
神经科学
生物
生物化学
氨基酸
作者
Kejun Wu,Wenhuo Xie,Chen Zhou,Linying Zhou,Lijing Wang,Yu Zhou,Libin Liu
标识
DOI:10.1016/j.bbrc.2023.10.036
摘要
Hypoglycemia is a common adverse reaction to glucose-lowering treatment. Diabetes mellitus (DM) combined with recurrent nonsevere hypoglycemia (RH) can accelerate cognitive decline. Currently, the metabolic pattern changes in cognition-related brain regions caused by this combined effect of DM and RH (DR) remain unclear. In this study, we first characterized the metabolic profiles of the hippocampus in mice exposed to DR using non-targeted metabolomic platforms. Our results showed that DR induced a unique metabolic pattern in the hippocampus, and several significant differences in metabolite levels belonging to the histidine metabolism pathway were discovered. Based on these findings, in the follow-up experiment, we found that histidine treatment could attenuate the cognitive impairment and rescue the neuronal and synaptic damage induced by DR in the hippocampus, which are closely related to ameliorated mitochondrial injury. These findings provide new insights into the metabolic mechanisms of the hippocampus in the progression of DR, and l-histidine supplementation may be a potential metabolic therapy in the future.
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