早期生活应激对抑郁症大鼠基因环境模型中NMDA受体依赖性突触可塑性的重塑。

B. Ryan, L. Musazzi, A. Mallei, D. Tardito, S. Gruber, A. El Khoury, R. Anwyl, G. Racagni, A. Mathé, M. Rowan, M. Popoli
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引用次数: 72

摘要

将弗林德斯敏感系(FSL)大鼠置于母体分离的标准范式中,制备了遗传易感性和早期生活应激(ELS)相结合的抑郁症动物模型。我们分析了FSL大鼠、对照弗林德斯抗性系(FRL)大鼠和两种ELS大鼠体内的海马突触传递和可塑性以及谷氨酸的嗜离子受体。FSL大鼠的长时程增强(LTP)受到强烈抑制,NMDA受体NR1亚基的突触表达降低。值得注意的是,ELS仅在FSL大鼠中诱导突触可塑性的重塑,减轻了LTP的抑制;同时AMPA受体的突触NR1亚基和GluR2/3亚基显著增加。慢性艾司西酞普兰治疗可抑制FRL大鼠的LTP,但这种作用被先前的ELS减弱。目前的研究结果表明,早期的基因-环境相互作用导致终身突触变化,影响可塑性的功能和分子方面,部分被抗抑郁药物治疗逆转。
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Remodelling by early-life stress of NMDA receptor-dependent synaptic plasticity in a gene-environment rat model of depression.
An animal model of depression combining genetic vulnerability and early-life stress (ELS) was prepared by submitting the Flinders Sensitive Line (FSL) rats to a standard paradigm of maternal separation. We analysed hippocampal synaptic transmission and plasticity in vivo and ionotropic receptors for glutamate in FSL rats, in their controls Flinders Resistant Line (FRL) rats, and in both lines subjected to ELS. A strong inhibition of long-term potentiation (LTP) and lower synaptic expression of NR1 subunit of the NMDA receptor were found in FSL rats. Remarkably, ELS induced a remodelling of synaptic plasticity only in FSL rats, reducing inhibition of LTP; this was accompanied by marked increase of synaptic NR1 subunit and GluR2/3 subunits of AMPA receptors. Chronic treatment with escitalopram inhibited LTP in FRL rats, but this effect was attenuated by prior ELS. The present results suggest that early gene-environment interactions cause lifelong synaptic changes affecting functional and molecular aspects of plasticity, partly reversed by antidepressant treatments.
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