4.6 Article

miR-34b-3p Inhibition of eIF4E Causes Post-stroke Depression in Adult Mice

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NEUROSCIENCE BULLETIN
卷 39, 期 2, 页码 194-212

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SPRINGER
DOI: 10.1007/s12264-022-00898-7

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Post-stroke depression; Hippocampus; miRNA; Microglia; Neuroinflammation

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In this study, a mouse model of PSD was established through photothrombosis-induced focal ischemia. The hippocampus of PSD mice showed lower metabolic levels and a reduction of miR34b-3p was observed. Silencing eIF4E inhibited neuroinflammation and alleviated depression-like behaviors in PSD mice.
Post-stroke depression (PSD) is a serious and common complication of stroke, which seriously affects the rehabilitation of stroke patients. To date, the pathogenesis of PSD is unclear and effective treatments remain unavailable. Here, we established a mouse model of PSD through photothrombosis-induced focal ischemia. By using a combination of brain imaging, transcriptome sequencing, and bioinformatics analysis, we found that the hippocampus of PSD mice had a significantly lower metabolic level than other brain regions. RNA sequencing revealed a significant reduction of miR34b-3p, which was expressed in hippocampal neurons and inhibited the translation of eukaryotic translation initiation factor 4E (eIF4E). Furthermore, silencing eIF4E inactivated microglia, inhibited neuroinflammation, and abolished the depression-like behaviors in PSD mice. Together, our data demonstrated that insufficient miR34b-3p after stroke cannot inhibit eIF4E translation, which causes PSD by the activation of microglia in the hippocampus. Therefore, miR34b-3p and eIF4E may serve as potential therapeutic targets for the treatment of PSD.

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