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The Inhalation Anesthetic Isoflurane Induces a Vicious Cycle of Apoptosis and Amyloid β-Protein Accumulation

机译:吸入麻醉药异氟醚诱导细胞凋亡和淀粉样β-蛋白积累的恶性循环

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摘要

The anesthetic isoflurane has been reported to induce apoptosis and increase Aβ generation and aggregation. However, the molecular mechanism underlying these effects remains unknown. We therefore set out to assess whether the effects of isoflurane on apoptosis are linked to amyloid β-protein (Aβ) generation and aggregation. For this purpose, we assessed the effects of isoflurane on β-site amyloid β precursor protein (APP)-cleaving enzyme (BACE) and γ-secretase, the proteases responsible for Aβ generation. We also tested the effects of inhibitors of Aβ aggregation (iAβ5, a β-sheet breaker peptide; clioquinol, a copper–zinc chelator) on the ability of isoflurane to induce apoptosis. All of these studies were performed on naive human H4 neuroglioma cells as well as those overexpressing APP (H4-APP cells). Isoflurane increased the levels of BACE and γ-secretase and secreted Aβ in the H4-APP cells. Isoflurane-induced Aβ generation could be blocked by the broad-based caspase inhibitor Z-VAD. The Aβ aggregation inhibitors, iAβ5 and clioquinol, selectively attenuated caspase-3 activation induced by isoflurane. However, isoflurane was able to induce caspase-3 activation in the absence of any detectable alterations of Aβ generation in naive H4 cells. Finally, Aβ potentiated the isoflurane-induced caspase-3 activation in naive H4 cells. Collectively, these findings suggest that isoflurane can induce apoptosis, which, in turn, increases BACE and γ-secretase levels and Aβ secretion. Isoflurane also promotes Aβ aggregation. Accumulation of aggregated Aβ in the media can then promote apoptosis. The result is a vicious cycle of isoflurane-induced apoptosis, Aβ generation and aggregation, and additional rounds of apoptosis, leading to cell death.
机译:据报道,麻醉剂异氟烷可诱导细胞凋亡并增加Aβ的产生和聚集。然而,这些作用的分子机制仍然未知。因此,我们着手评估异氟烷对细胞凋亡的影响是否与淀粉样β蛋白(Aβ)的产生和聚集有关。为此,我们评估了异氟烷对β位淀粉样蛋白β前体蛋白(APP)切割酶(BACE)和γ分泌酶(负责Aβ生成的蛋白酶)的影响。我们还测试了Aβ聚集抑制剂(iAβ5,一种β折叠肽;氯喹诺醇,一种铜锌螯合剂)对异氟烷诱导凋亡的能力的影响。所有这些研究都是在未加工的人类H4神经胶质瘤细胞以及过度表达APP(H4-APP细胞)的细胞上进行的。异氟烷增加了H4-APP细胞中BACE和γ-分泌酶的水平,并分泌了Aβ。广泛使用的半胱天冬酶抑制剂Z-VAD可阻止异氟烷诱导的Aβ生成。 Aβ聚集抑制剂iAβ5和氯喹醇可选择性减弱异氟烷诱导的caspase-3活化。但是,在未检测到幼稚H4细胞中Aβ产生的任何变化的情况下,异氟烷能够诱导caspase-3活化。最后,Aβ增强了天然H4细胞中异氟烷诱导的caspase-3激活。总的来说,这些发现表明异氟烷可以诱导细胞凋亡,进而增加BACE和γ-分泌酶水平以及Aβ分泌。异氟烷还促进Aβ聚集。然后,聚集的Aβ在培养基中的积累可以促进细胞凋亡。结果是异氟烷诱导的凋亡,Aβ生成和聚集以及另外几轮凋亡的恶性循环,导致细胞死亡。

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