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首页> 外文期刊>Journal of pharmacological sciences. >Role of caspase-12 in amyloid beta-peptide-induced toxicity in organotypic hippocampal slices cultured for long periods.
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Role of caspase-12 in amyloid beta-peptide-induced toxicity in organotypic hippocampal slices cultured for long periods.

机译:caspase-12在淀粉样β肽诱导的长期培养的有机型海马切片中的毒性中的作用。

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Amyloid beta (Abeta) toxicity has been implicated in cell death in the hippocampus, but its specific mechanisms are poorly understood. In this study, Abeta-induced cell death was investigated in organotypic hippocampal slice cultures (OHCs) that were cultured for various periods in vitro. There were no obvious histological differences among slices cultured for 3 to 7 weeks in vitro. Although there was little neurotoxicity after treatment with Abeta25-35 in OHCs cultured for relatively shorter periods (3-5 weeks), age-dependent cell death was evident in OHCs cultured for relatively longer periods (6-7 weeks) after exposure to Abeta25-35. In OHCs cultured for 7 weeks, S-allyl-L-cysteine (SAC), a component of aged garlic extract, protected the cells in areas CA1 and CA3 and the dentate gyrus from Abeta25-35-induced toxicity. The immunoreactivity of cleaved caspase-12 was increased whereas that of glucose-regulated protein 78 was not altered after exposure to Abeta25-35. The increases in the cleaved caspase-12 were also reversed by simultaneously applied SAC. These results suggest that OHCs cultured for relatively longer periods are more susceptible to Abeta-induced toxicity and that the Abeta-induced cell death involves caspase-12-dependent pathways. It is also suggested that SAC is able to protect against the Abeta-induced neuronal cell death through the inhibition of the caspase-12-dependent pathway.
机译:淀粉样β(Abeta)毒性已被认为与海马细胞死亡有关,但对其具体机制了解甚少。在这项研究中,对器官型海马切片培养物(OHC)进行了Abeta诱导的细胞死亡研究,该培养物在体外培养了多个时期。在体外培养3至7周的切片之间没有明显的组织学差异。尽管在相对较短的时间(3-5周)培养的OHC中用Abeta25-35治疗后几乎没有神经毒性,但在暴露于Abeta25-35的较长时间(6-7周)培养的OHC中,年龄依赖性细胞死亡明显。 35岁在培养7周的OHC中,S-烯丙基-L-半胱氨酸(SAC)是陈年大蒜提取物的成分,可保护CA1和CA3区以及齿状回的细胞免受Abeta25-35诱导的毒性。暴露于Abeta25-35后,裂解的caspase-12的免疫反应性增加,而葡萄糖调节蛋白78的免疫反应性未改变。裂解的胱天蛋白酶12的增加也被同时应用的SAC逆转。这些结果表明,培养相对较长时间的OHC对Abeta诱导的毒性更敏感,并且Abeta诱导的细胞死亡涉及caspase-12依赖性途径。还建议SAC能够通过抑制caspase-12依赖性途径来防止Abeta诱导的神经元细胞死亡。

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