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首页> 外文期刊>Scientific reports. >N-acetylcysteine attenuates lipopolysaccharide-induced impairment in lamination of Ctip2-and Tbr1- expressing cortical neurons in the developing rat fetal brain
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N-acetylcysteine attenuates lipopolysaccharide-induced impairment in lamination of Ctip2-and Tbr1- expressing cortical neurons in the developing rat fetal brain

机译:N-乙酰半胱氨酸衰减脂多糖诱导的CTIP2-and TBR1-表达培养基胎儿脑中的皮质神经元的层压损伤

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Oxidative stress and inflammatory insults are the major instigating events of bacterial intrauterine infection that lead to fetal brain injury. The purpose of this study is to investigate the remedial effects of N-acetyl-cysteine (NAC) for inflammation-caused deficits in brain development. We found that lipopolysaccharide (LPS) induced reactive oxygen species (ROS) production by RAW264.7 cells. Macrophage-conditioned medium caused noticeable cortical cell damage, specifically in cortical neurons. LPS at 25?μg/kg caused more than 75% fetal loss in rats. An increase in fetal cortical thickness was noted in the LPS-treated group. In the enlarged fetal cortex, laminar positioning of the early born cortical cells expressing Tbr1 and Ctip2 was disrupted, with a scattered distribution. The effect was similar, but minor, in later born Satb2-expressing cortical cells. NAC protected against LPS-induced neuron toxicity in vitro and counteracted pregnancy loss and alterations in thickness and lamination of the neocortex in vivo. Fetal loss and abnormal fetal brain development were due to LPS-induced ROS production. NAC is an effective protective agent against LPS-induced damage. This finding highlights the key therapeutic impact of NAC in LPS-caused abnormal neuronal laminar distribution during brain development.
机译:氧化应激和炎症性侮辱是细菌宫内感染的主要煽动事件,导致胎儿脑损伤。本研究的目的是探讨N-乙酰半胱氨酸(NAC)对脑发育中炎症缺陷的补救效果。我们发现脂多糖(LPS)诱导Raw264.7细胞产生的活性氧物质(ROS)产生。巨噬细胞调节培养基引起显着的皮质细胞损伤,特别是皮质神经元。 LPS在25Ωμg/ kg引起大鼠胎儿丢失超过75%。在LPS处理基团中注意到胎儿皮质厚度的增加。在扩大的胎儿皮层中,表达TBR1和CTIP2的早生皮质细胞的层状定位被破坏,分布分布。效果类似,但次要,在以后出生的SATB2表达皮质细胞。 NAC在体外保护LPS诱导的神经元毒性,并在体内抵消妊娠损失和厚度的厚度和层压的改变。胎儿损失和异常胎儿脑发育是由于LPS诱导的ROS生产。 NAC是针对LPS诱导损伤的有效保护剂。该发现突出了NAC在脑发育过程中LPS引起的INGINAL神经元层状分布的关键治疗影响。

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