Neonatal anesthesia impairs synapsin 1 and synaptotagmin 1, two key regulators of synaptic vesicle docking and fusion

被引:8
|
作者
Atluri, Navya [1 ]
Ferrarese, Bianca [1 ,4 ]
Osuru, Hari P. [1 ]
Sica, Ryan [2 ]
Keller, Caroline [3 ]
Zuo, Zhiyi [1 ]
Lunardi, Nadia [1 ]
机构
[1] Univ Virginia, Dept Anesthesiol, Univ Virginia Hlth Syst, Charlottesville, VA USA
[2] Univ Virginia, Sch Med, Charlottesville, VA 22908 USA
[3] Univ Virginia, Undergrad Program, Charlottesville, VA 22908 USA
[4] Univ Padua, Dept Anesthesiol, Padua, Italy
基金
美国国家卫生研究院;
关键词
freezing behavior; retention memory; synaptic docking; synaptic fusion; vesicle exocytosis; ISOFLURANE; RELEASE; MEMORY; RAT;
D O I
10.1097/WNR.0000000000001235
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Early exposure to anesthetics may interfere with synaptic development and lead to cognitive deficits. We previously demonstrated a decrease in vesicles docked at and within 100 nm from the presynaptic membrane in hippocampal nerve terminals of neonatal rats after anesthesia. Hence, we designed this study to assess the effects of neonatal anesthesia on synapsin 1 (Syn1) and synaptotagmin 1 (Syt1), two key regulators of vesicle docking and fusion. To test the link between changes in Syn1 and Syt1 and behavioral deficits observed after neonatal anesthesia, we also assessed retention memory and fear conditioning in adolescent rats after neonatal anesthesia. Pups received a combination of clinical anesthetics, then Syn1 and Syt1 mRNA and protein expression were determined at the peak (postnatal day 8, P8), part-way through (P12) and end of synaptogenesis (P24) in the CA1-subiculum by qPCR and western blotting. Anesthesia decreased Syn1 and Syt1 mRNA expression at P8 (P< 0.01 and < 0.001) and P12 (P= 0.001 and 0.017), but not P24 (P= 0.538 and 0.671), and impaired Syn1, p-Syn1, and Syt1 protein levels at P8 (P= 0.038, 0.041, and 0.004, respectively), P12 (P< 0.001, P= 0.001, and P< 0.0001), and P24 (P= 0.025, 0.031, and 0.001). Anesthetic-challenged rats displayed deficient long-term retention memory (P= 0.019) and hippocampusdependent fear conditioning (P< 0.001). These results suggest that anesthetics alter Syn1 and Syt1 during synapse assembly and maturation, raising the possibility that anesthetic interference with Syn1 and Syt1 could initiate changes in synaptic function that contribute to the cognitive deficits observed after neonatal anesthesia. NeuroReport 30: 544-549 Copyright (c) 2019 Wolters Kluwer Health, Inc. All rights reserved.
引用
收藏
页码:544 / 549
页数:6
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