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新生儿促炎应激诱导幼鼠海马中皮质酮和白细胞介素-6的积累:突触可塑性损伤的潜在机制

Neonatal Proinflammatory Stress Induces Accumulation of Corticosterone and Interleukin-6 in the Hippocampus of Juvenile Rats: Potential Mechanism of Synaptic Plasticity Impairments.

作者信息

Onufriev M V, Freiman S V, Peregud D I, Kudryashova I V, Tishkina A O, Stepanichev M Yu, Gulyaeva N V

机构信息

Institute of Higher Nervous Activity and Neurophysiology, Russian Academy of Sciences, Moscow, 117485, Russia.

出版信息

Biochemistry (Mosc). 2017 Mar;82(3):275-281. doi: 10.1134/S0006297917030051.

Abstract

Infectious diseases in early postnatal ontogenesis can induce neuroinflammation, disrupt normal central nervous system development, and contribute to pathogenesis of cerebral pathologies in adults. To study long-term consequences of such early stress, we induced neonatal proinflammatory stress (NPS) by injecting bacterial lipopolysaccharide into rat pups on postnatal days 3 and 5 and then assessed the levels of corticosterone, proinflammatory cytokines and their mRNAs, and neurotrophins and their mRNAs in the hippocampus and neocortex of the one-month-old animals. Long-term potentiation (LTP) was studied in hippocampal slices as an index of synaptic plasticity. NPS-induced impairments of LTP were accompanied by the accumulation of corticosterone and IL-6 in the hippocampus. In the neocortex, a decrease in exon IV BDNF mRNA was detected. We suggest that excessive corticosterone delivery to hippocampal receptors and proinflammatory changes persisting during brain maturation are among the principal molecular mechanisms responsible for NPS-induced neuroplasticity impairments.

摘要

出生后早期发育阶段的感染性疾病可诱发神经炎症,扰乱中枢神经系统的正常发育,并促使成人脑部疾病的发病。为了研究此类早期应激的长期后果,我们通过在出生后第3天和第5天给幼鼠注射细菌脂多糖来诱导新生期促炎应激(NPS),然后评估1月龄动物海马体和新皮质中皮质酮、促炎细胞因子及其mRNA以及神经营养因子及其mRNA的水平。作为突触可塑性指标,我们在海马体切片中研究了长时程增强(LTP)。NPS诱导的LTP损伤伴随着海马体中皮质酮和IL-6的积累。在新皮质中,检测到外显子IV脑源性神经营养因子(BDNF)mRNA减少。我们认为,过量的皮质酮作用于海马体受体以及大脑成熟过程中持续存在的促炎变化是NPS诱导神经可塑性损伤的主要分子机制。

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