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Integrated ribosome and proteome analyses reveal insights into sevoflurane-induced long-term social behavior and cognitive dysfunctions through ADNP inhibition in neonatal mice

摘要A growing number of studies have demonstrated that repeated exposure to sevoflurane during development results in persistent social abnormalities and cognitive impairment.Davunetide,an active fragment of the activity-dependent neuroprotective protein(ADNP),has been implicated in social and cognitive protection.However,the potential of davunetide to attenuate social deficits following sevoflurane exposure and the underlying developmental mechanisms remain poorly understood.In this study,ribosome and proteome profiles were analyzed to investigate the molecular basis of sevoflurane-induced social deficits in neonatal mice.The neuropathological basis was also explored using Golgi staining,morphological analysis,western blotting,electrophysiological analysis,and behavioral analysis.Results indicated that ADNP was significantly down-regulated following developmental exposure to sevoflurane.In adulthood,anterior cingulate cortex(ACC)neurons exposed to sevoflurane exhibited a decrease in dendrite number,total dendrite length,and spine density.Furthermore,the expression levels of Homer,PSD95,synaptophysin,and vglut2 were significantly reduced in the sevoflurane group.Patch-clamp recordings indicated reductions in both the frequency and amplitude of miniature excitatory postsynaptic currents(mEPSCs).Notably,davunetide significantly ameliorated the synaptic defects,social behavior deficits,and cognitive impairments induced by sevoflurane.Mechanistic analysis revealed that loss of ADNP led to dysregulation of Ca2+activity via the Wnt/β-catenin signaling,resulting in decreased expression of synaptic proteins.Suppression of Wnt signaling was restored in the davunetide-treated group.Thus,ADNP was identified as a promising therapeutic target for the prevention and treatment of neurodevelopmental toxicity caused by general anesthetics.This study provides important insights into the mechanisms underlying social and cognitive disturbances caused by sevoflurane exposure in neonatal mice and elucidates the regulatory pathways involved.

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作者 Li-Rong Liang [1] Bing Liu [1] Shu-Hui Cao [1] You-Yi Zhao [1] Tian Zeng [2] Mei-Ting Zhai [1] Ze Fan [1] Dan-Yi He [1] San-Xin Ma [1] Xiao-Tong Shi [1] Yao Zhang [1] Hui Zhang [1] 学术成果认领
作者单位 State Key Laboratory of Oral&Maxillofacial Reconstruction and Regeneration,National Clinical Research Center for Oral Diseases,Shaanxi Engineering Research Center for Dental Materials and Advanced Manufacture,Department of Anesthesiology,School of Stomatology,Air Force Medical University,Xi'an,Shaanxi 710032,China [1] Department of Anesthesiology,986th Air Force Hospital,Air Force Medical University,Xi'an,Shaanxi 710032,China [2]
栏目名称 Special Column on Pain,Addiction,and Anesthesia
DOI 10.24272/j.issn.2095-8137.2023.315
发布时间 2024-11-28
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动物学研究

动物学研究

2024年45卷3期

663-678页

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