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海马神经发生受损参与了硫胺素缺乏在病理前期病变早期所诱导的认知功能障碍。

Impaired hippocampal neurogenesis is involved in cognitive dysfunction induced by thiamine deficiency at early pre-pathological lesion stage.

作者信息

Zhao Na, Zhong Chunjiu, Wang Yang, Zhao Yanling, Gong Neng, Zhou Guomin, Xu Tianle, Hong Zhen

机构信息

Department of Neurology, Zhongshan Hospital, Fudan University, China.

出版信息

Neurobiol Dis. 2008 Feb;29(2):176-85. doi: 10.1016/j.nbd.2007.08.014. Epub 2007 Sep 7.

Abstract

It has not been reported whether thiamine deficiency (TD) affects hippocampal neurogenesis or not. Here, we explored the influence of TD at early pre-pathological lesion stage on hippocampal neurogenesis and the correlation between affected hippocampal neurogenesis and cognitive dysfunction. We prepared TD mouse model by feeding a thiamine-depleted diet. Learning and memory functions of TD mice were tested with Y-maze. Hippocampal neurogenesis was studied with BrdU, PCNA, Dcx, and NeuN immunohistochemical staining. The results showed significant decline in learning ability and hippocampal neurogenesis simultaneously since 9-days of treatment when the model mice did not exhibit regular pathological lesion, the loss of cholinergic neurons, decrease of NeuN-positive hippocampal cell, and abnormal long-term potentiation of hippocampal CA1 and CA3. Re-administering thiamine reversed the weakened learning ability as well as the impaired hippocampal neurogenesis induced by TD at early pre-pathological lesion stage. The present study demonstrated that hippocampal neurogenesis was vulnerable to TD and the impaired hippocampal neurogenesis is greatly involved in cognitive dysfunction induced by TD at early pre-pathological lesion stage.

摘要

硫胺素缺乏(TD)是否会影响海马神经发生尚未见报道。在此,我们探讨了病理损伤前期早期TD对海马神经发生的影响,以及受影响的海马神经发生与认知功能障碍之间的相关性。我们通过喂食硫胺素缺乏饮食制备了TD小鼠模型。用Y迷宫测试TD小鼠的学习和记忆功能。用BrdU、PCNA、Dcx和NeuN免疫组化染色研究海马神经发生。结果显示,自治疗9天起,当模型小鼠未出现典型病理损伤、胆碱能神经元未丢失、NeuN阳性海马细胞未减少以及海马CA1和CA3区长期增强未异常时,学习能力和海马神经发生同时显著下降。重新给予硫胺素可逆转病理损伤前期早期TD诱导的学习能力减弱以及海马神经发生受损。本研究表明,海马神经发生易受TD影响,且受损的海马神经发生在病理损伤前期早期TD诱导的认知功能障碍中起重要作用。

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