海马结构
红景天苷
海马体
内分泌学
糖尿病
认知
认知功能衰退
内科学
突触蛋白I
医学
神经科学
细胞凋亡
心理学
生物
药理学
痴呆
疾病
小泡
突触小泡
生物化学
遗传学
膜
作者
Pan Lv,Zhongfu Zuo,Wenqiang Liu,Lipan Zhao,Yufei Wang,Xiaobai Wang,Shengxue Yu,Hongdan Yu,Tianyi Zhang,Jing Bi,Xuezheng Liu
出处
期刊:Neuroscience
[Elsevier]
日期:2022-12-09
卷期号:512: 47-58
被引量:5
标识
DOI:10.1016/j.neuroscience.2022.12.008
摘要
Diabetes is frequently accompanied by cognitive impairment with insidious onset, and progressive cognitive and behavioral changes. β-1, 3-galactosyltransferase 2 (B3galt2) contributes to glycosylation, showing a clue for neuronal apoptosis, proliferation and differentiation. However, the role of B3galt2 in diabetic cognitive dysfunction (DCD) has not been investigated. In the present study, we aimed to explore the role of B3galt2 in DCD. Additionally, the potential therapeutic effects of salidroside on DCD was also explored. Diabetic C57BL/6J mice showed cognitive dysfunction together with down-regulated B3galt2. Overexpression of B3galt2 reversed the cognitive decline of diabetic C57BL/6J. Moreover, cognitive impairment was aggravated in B3galt2+/− diabetic mice compared with C57BL/6J diabetic mice. Immunohistochemistry fluorescence indicated that B3galt2 and F3/Contactin were co-localized in the hippocampal regions. Importantly, the expression of F3/Contactin can be regulated by the manipulation of B3galt2, overexpression of which assuaged hippocampal neuronal damage, protected the synapsin, and reduced neuronal apoptosis in diabetic mice. Interestingly, SAL alleviated DCD and reversed the expression of B3galt2 in diabetic C57BL/6J mice. These findings indicate that inhibition of B3galt2/F3/Contactin pathway contributes to DCD, and participates in SAL reversed DCD.
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