首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Tumor necrosis factors alpha and beta protect neurons against amyloid beta-peptide toxicity: evidence for involvement of a kappa B-binding factor and attenuation of peroxide and Ca2+ accumulation.
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Tumor necrosis factors alpha and beta protect neurons against amyloid beta-peptide toxicity: evidence for involvement of a kappa B-binding factor and attenuation of peroxide and Ca2+ accumulation.

机译:肿瘤坏死因子α和β保护神经元免受淀粉样β肽毒性的影响:κB结合因子的参与以及过氧化物和Ca2 +积累的减弱的证据。

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摘要

In Alzheimer disease (AD) the amyloid beta-peptide (A beta) accumulates in plaques in the brain. A beta can be neurotoxic by a mechanism involving induction of reactive oxygen species (ROS) and elevation of intracellular free calcium levels ([Ca2+]i). In light of evidence for an inflammatory response in the brain in AD and reports of increased levels of tumor necrosis factor (TNF) in AD brain we tested the hypothesis that TNFs affect neuronal vulnerability to A beta. A beta-(25-35) and A beta-(1-40) induced neuronal degeneration in a concentration- and time-dependent manner. Pretreatment of cultures for 24 hr with TNF-beta or TNF-alpha resulted in significant attenuation of A beta-induced neuronal degeneration. Accumulation of peroxides induced in neurons by A beta was significantly attenuated in TNF-pretreated cultures, and TNFs protected neurons against iron toxicity, suggesting that TNFs induce antioxidant pathways. The [Ca2+]i response to glutamate (quantified by fura-2 imaging) was markedly potentiated in neurons exposed to A beta, and this action of A beta was suppressed in cultures pretreated with TNFs. Electrophoretic mobility-shift assays demonstrated an induction of a kappa beta-binding activity in hippocampal cells exposed to TNFs. Exposure of cultures to I kappa B (MAD3) antisense oligonucleotides, a manipulation designed to induce NF-kappa B, mimicked the protection by TNFs. These data suggest that TNFs protect hippocampal neurons against A beta toxicity by suppressing accumulation of ROS and Ca2+ and that kappa B-dependent transcription is sufficient to mediate these effects. A modulatory role for TNF in the neurodegenerative process in AD is proposed.
机译:在阿尔茨海默氏病(AD)中,淀粉样β肽(A beta)积聚在大脑斑块中。 β可以通过涉及活性氧(ROS)诱导和细胞内游离钙水平([Ca2 +] i)升高的机制而具有神经毒性。根据有关AD中大脑炎症反应的证据以及AD脑中肿瘤坏死因子(TNF)水平升高的报道,我们测试了TNF影响神经元对Aβ的脆弱性的假设。一个β-(25-35)和一个β-(1-40)以浓度和时间依赖性方式诱导神经元变性。用TNF-β或TNF-α对培养物进行24小时的预处理可显着减弱Aβ诱导的神经元变性。在TNF预处理的培养物中,Aβ诱导的神经元中过氧化物的积累显着减弱,并且TNF保护神经元免受铁毒性,表明TNF诱导抗氧化途径。在暴露于A beta的神经元中,对谷氨酸的[Ca2 +] i反应(通过fura-2成像量化)显着增强,在用TNFs预处理的培养物中,A beta的这种作用被抑制。电泳迁移率变动分析表明,暴露于TNF的海马细胞中Kappa结合活性的诱导。将培养物暴露于IκB(MAD3)反义寡核苷酸(一种旨在诱导NF-κB的操作)可以模仿TNF的保护作用。这些数据表明,TNF通过抑制ROS和Ca2 +的积聚来保护海马神经元免受Aβ毒性,并且κB依赖性转录足以介导这些作用。提出了TNF在AD的神经变性过程中的调节作用。

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