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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >DIDS protects against neuronal injury by blocking Toll-like receptor 2 activated-mechanisms.
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DIDS protects against neuronal injury by blocking Toll-like receptor 2 activated-mechanisms.

机译:DIDS通过阻止Toll样受体2激活机制来保护神经元免受伤害。

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Using an in vitro ischemia model (ischemic solution; IS model) that induces penumbral cell death, we examined the effect of 4,4'-diisothio-cyanostilbene-2,2'-disulfonic acid (DIDS) on cell injury/death and underlying molecular mechanisms. Propidium iodide (PI) uptake was used to quantify cell death in organotypic hippocampal slice cultures. A 24-h IS exposure caused a fivefold increase in mean PI fluorescence intensity. DIDS, dose-dependently (1-4000 microM), reduced the IS-induced PI uptake in hippocampal CA1 neurons with an IC(50) of 26 microM. This protective effect of DIDS was reversible and effective even 6 h following the onset of IS treatment. Gene expression profiling studies indicated that among approximately 46,000 transcripts tested, the most significantly up-regulated gene by IS was interleukin-1beta (IL-1beta) which was also the most significantly down-regulated gene when DIDS was added to the IS-treated slices. The addition of a recombinant IL-1 receptor antagonist (100 microg/mL) or neutralizing IL-1beta antibody significantly attenuated the IS-induced cell death, indicating that the up-regulation of IL-1beta with IS treatment contributed to the IS-induced cell death. Toll-like receptor 2 (TLR2), another gene that was significantly up-regulated by IS and suppressed by DIDS, was studied to determine whether it was related to the IL-1beta up-regulation. Indeed, this was the case as the IS-induced IL-1beta up-regulation was abolished in TLR2-/- mouse brain slices. Furthermore, the IS-induced cell death was significantly reduced in TLR2-/- when compared with that in wild-type slices, indicating that TLR2 is functionally upstream of IL-1beta in this IS model. We conclude that (i) IS up-regulates TLR2 expression and augments TLR2 signaling, causing over-expression of IL-1beta which leads to cell death and (ii) DIDS blocks IS-induced neuronal injury, at least partially, by suppressing the TLR2 pathway.
机译:使用诱导半影细胞死亡的体外缺血模型(缺血溶液; IS模型),我们检查了4,4'-二异硫代氰基苯乙烯2,2'-二磺酸(DIDS)对细胞损伤/死亡和潜在损伤的影响分子机制。碘化丙啶(PI)的摄取被用于量化器官型海马切片培养物中的细胞死亡。 24小时IS暴露导致平均PI荧光强度增加了五倍。 DIDS剂量依赖性(1-4000 microM)减少了IS诱导的海马CA1神经元的PI摄取,IC(50)为26 microM。即使在IS治疗开始后6小时,DIDS的这种保护作用也是可逆的且有效的。基因表达谱研究表明,在测试的约46,000个转录本中,IS上调最明显的基因是白介素-1beta(IL-1beta),当将DIDS加入IS处理过的切片中时白介素-1beta(IL-1beta)也是最下调的基因。加入重组IL-1受体拮抗剂(100 microg / mL)或中和IL-1beta抗体可显着减弱IS诱导的细胞死亡,表明用IS治疗上调IL-1beta有助于IS诱导细胞死亡。研究了Toll样受体2(TLR2),该基因被IS显着上调并被DIDS抑制,以确定它是否与IL-1beta上调有关。的确如此,因为在TLR2-/-小鼠脑切片中IS诱导的IL-1beta上调被取消了。此外,与野生型切片相比,TLR2-/-中IS诱导的细胞死亡显着减少,表明在该IS模型中TLR2在功能上位于IL-1beta的上游。我们得出的结论是:(i)IS上调TLR2表达并增强TLR2信号传导,导致IL-1beta过表达,从而导致细胞死亡;(ii)DIDS至少部分地通过抑制TLR2来阻断IS诱导的神经元损伤。途径。

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