Changteng Zhang, Xiaoyu Zhu, Rui Gao, Hai Chen, Caiyi Yan, Wangyang Liu, Lina Yang, Xianzheng Zeng, Haoran Yang, Jin Liu, Qi Li, Daqing Ma, Tao Zhu, Chan Chen
{"title":"CircITSN1/EIF4A3/Itsn1轴介导老年小鼠术后认知功能障碍:一个新的机制和治疗靶点。","authors":"Changteng Zhang, Xiaoyu Zhu, Rui Gao, Hai Chen, Caiyi Yan, Wangyang Liu, Lina Yang, Xianzheng Zeng, Haoran Yang, Jin Liu, Qi Li, Daqing Ma, Tao Zhu, Chan Chen","doi":"10.1016/j.omtn.2025.102555","DOIUrl":null,"url":null,"abstract":"<p><p>Circular RNAs (circRNAs) are stable noncoding RNAs that play a crucial role in neurodegenerative diseases, and they have been implicated in the pathogenesis of postoperative cognitive dysfunction (POCD). However, their underlying molecular mechanisms in POCD remain poorly understood. This study identified hsa_circRNA_061570 as significantly upregulated in plasma after anesthesia/surgery using high-throughput circRNA microarray screening, correlating with cognitive decline. Its murine homolog, circITSN1, was further investigated using shRNA-mediated knockdown in the hippocampus. Behavioral tests (open field, Y maze, and fear conditioning) revealed that circITSN1 suppression improved spatial and contextual memory without affecting motor function. Neuronal damage analysis via Golgi staining demonstrated that circITSN1 knockdown alleviated synaptic and dendritic spine impairments. Mechanistically, circITSN1 directly bound to RNA-binding protein EIF4A3, stabilizing <i>Itsn1</i> mRNA and activating the JNK inflammatory pathway, thereby increasing pro-inflammatory cytokines. Spatial co-localization of circITSN1 with neuronal markers and EIF4A3 underscored its neuron-specific regulatory role. These findings establish circITSN1 as a critical mediator of neuroinflammation through JNK pathway activation, positioning it as both a diagnostic biomarker and a promising therapeutic target for POCD intervention. The study bridges circRNA biology with neurocognitive pathology, offering novel insights into post-surgical cognitive impairment mechanisms.</p>","PeriodicalId":18821,"journal":{"name":"Molecular Therapy. 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CircITSN1/EIF4A3/Itsn1 axis mediates postoperative cognitive dysfunction in aged mice: A novel mechanism and therapeutic target.
Circular RNAs (circRNAs) are stable noncoding RNAs that play a crucial role in neurodegenerative diseases, and they have been implicated in the pathogenesis of postoperative cognitive dysfunction (POCD). However, their underlying molecular mechanisms in POCD remain poorly understood. This study identified hsa_circRNA_061570 as significantly upregulated in plasma after anesthesia/surgery using high-throughput circRNA microarray screening, correlating with cognitive decline. Its murine homolog, circITSN1, was further investigated using shRNA-mediated knockdown in the hippocampus. Behavioral tests (open field, Y maze, and fear conditioning) revealed that circITSN1 suppression improved spatial and contextual memory without affecting motor function. Neuronal damage analysis via Golgi staining demonstrated that circITSN1 knockdown alleviated synaptic and dendritic spine impairments. Mechanistically, circITSN1 directly bound to RNA-binding protein EIF4A3, stabilizing Itsn1 mRNA and activating the JNK inflammatory pathway, thereby increasing pro-inflammatory cytokines. Spatial co-localization of circITSN1 with neuronal markers and EIF4A3 underscored its neuron-specific regulatory role. These findings establish circITSN1 as a critical mediator of neuroinflammation through JNK pathway activation, positioning it as both a diagnostic biomarker and a promising therapeutic target for POCD intervention. The study bridges circRNA biology with neurocognitive pathology, offering novel insights into post-surgical cognitive impairment mechanisms.
期刊介绍:
Molecular Therapy Nucleic Acids is an international, open-access journal that publishes high-quality research in nucleic-acid-based therapeutics to treat and correct genetic and acquired diseases. It is the official journal of the American Society of Gene & Cell Therapy and is built upon the success of Molecular Therapy. The journal focuses on gene- and oligonucleotide-based therapies and publishes peer-reviewed research, reviews, and commentaries. Its impact factor for 2022 is 8.8. The subject areas covered include the development of therapeutics based on nucleic acids and their derivatives, vector development for RNA-based therapeutics delivery, utilization of gene-modifying agents like Zn finger nucleases and triplex-forming oligonucleotides, pre-clinical target validation, safety and efficacy studies, and clinical trials.