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Expression of the Nrf2-system at the blood-CSF barrier is modulated by neonatal inflammation and hypoxia-ischemia

机译:Nrf2系统在血脑脊液屏障中的表达受新生儿炎症和缺氧缺血的调节

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摘要

Transcription factor NF-E2-related factor-2 (Nrf2) is a key regulator of endogenous anti-oxidant systems shown to play a neuroprotective role in the adult by preserving blood-brain barrier function. The choroid plexus, site for the blood-CSF barrier, has been suggested to be particularly important in maintaining brain barrier function in development. We investigated the expression of Nrf2- and detoxification-system genes in choroid plexus following systemic LPS injections, unilateral cerebral hypoxia-ischemia (HI) as well as the combination of LPS and HI (LPS/HI). Plexuses were collected at different time points after LPS, HI and LPS/HI in 9-day old mice. mRNA levels of Nrf2 and many of its target genes were analyzed by quantitative PCR. Cell death was analyzed by caspase-3 immunostaining and TUNEL. LPS caused down-regulation of the Nrf2-system genes while HI increased expression at earlier time points. LPS exposure prior to HI prevented many of the HI-induced gene increases. None of the insults resulted in any apparent cell death to choroidal epithelium. These data imply that the function of the inducible anti-oxidant system in the choroid plexus is down-regulated by inflammation, even if choroid cells are not structurally damaged. Further, LPS prevented the endogenous antioxidant response following HI, suggesting the possibility that the choroid plexus may be at risk if LPS is united with an insult that increases oxidative stress such as hypoxia-ischemia.
机译:转录因子NF-E2相关因子2(Nrf2)是内源性抗氧化剂系统的关键调节剂,其通过保持血脑屏障功能在成年人中发挥神经保护作用。有人提出脉络丛(CSF血液的屏障)对维持发育中的脑屏障功能特别重要。我们调查了全身性LPS注射,单侧脑缺氧缺血(HI)以及LPS和HI的组合(LPS / HI)后脉络丛中Nrf2和解毒系统基因的表达。在9天大的小鼠中,在LPS,HI和LPS / HI之后的不同时间点收集丛。通过定量PCR分析了Nrf2及其许多靶基因的mRNA水平。通过caspase-3免疫染色和TUNEL分析细胞死亡。 LPS导致Nrf2系统基因的下调,而HI在较早的时间点增加了表达。 HI之前的LPS暴露阻止了HI诱导的许多基因增加。没有任何侮辱导致脉络膜上皮细胞明显死亡。这些数据表明,即使脉络膜细胞在结构上没有受到损害,脉络丛中可诱导的抗氧化剂系统的功能也会被炎症下调。此外,LPS预防了HI后的内源性抗氧化反应,这表明如果LPS与增加氧化应激的损伤(如缺氧缺血)联合,则脉络丛可能处于危险中。

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