首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Temporal and spatial patterns of DNA fragmentation following focally or systemically-evoked status epilepticus in rats.
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Temporal and spatial patterns of DNA fragmentation following focally or systemically-evoked status epilepticus in rats.

机译:大鼠局灶性或全身性癫痫持续状态后DNA片段的时空分布。

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摘要

Status epilepticus (SE) triggers neuronal degeneration comprised of both necrotic and apoptotic components. Here we determined whether internucleosomal DNA fragmentation reflects the severity of SE-induced neuronal damage. We utilized both a systemic (kainic acid) and a focally-induced model of SE in rats. DNA fragmentation was analyzed in rhinal cortex and hippocampus at various time points following SE episodes of varying durations (30-120 min). Radioactively labeled DNA fragments were analyzed by agarose gel electrophoresis and quantified by liquid scintillation counting. The spatial and temporal characteristics of the SE-evoked DNA fragmentation indicated that this marker of apoptosis appears as early as 8 h after SE and reaches peak expression at 48 h. This method permitted us to quantitatively monitor the evolution of the apoptotic component of cell death over the acute post-injury period (8-72 h). Moreover, in both models of SE, the DNA fragmentation varied directly as a linear function of the duration of SE between 30 and 120 min suggesting that this marker should be highly responsive to neuroprotective intervention.
机译:癫痫持续状态(SE)触发由坏死和凋亡组成的神经元变性。在这里,我们确定核小体间DNA片段是否反映了SE诱导的神经元损伤的严重程度。我们在大鼠中利用了全身性(海藻酸)和局部诱导的SE模型。在持续时间(30-120分钟)不同的SE发作后的不同时间点,对鼻皮质和海马的DNA片段进行分析。放射性标记的DNA片段通过琼脂糖凝胶电泳进行分析,并通过液体闪烁计数进行定量。 SE诱发的DNA片段的时空特征表明,这种凋亡的标志物最早在SE后8 h出现,并在48 h达到高峰。这种方法使我们能够定量监测急性损伤后阶段(8-72小时)内细胞死亡的凋亡成分的演变。此外,在两种SE模型中,DNA片段随SE持续时间在30到120分钟之间的线性关系而直接变化,这表明该标记物应对神经保护干预高度敏感。

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