首页> 外文期刊>Neurological Research: An Interdisciplinary Quarterly Journal >Caspase inhibitors reduce the apoptotic but not necrotic component of kainate injury in primary murine cortical neuronal cultures.
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Caspase inhibitors reduce the apoptotic but not necrotic component of kainate injury in primary murine cortical neuronal cultures.

机译:半胱天冬酶抑制剂可减少原代鼠皮层神经元培养物中海藻酸盐损伤的凋亡成分,但不能减少坏死成分。

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Excitotoxicity has been demonstrated to play a major role in ischemic neuronal injury. While the necrotic component of excitotoxicity has been well demonstrated, apoptosis has also been shown to play a role. We sought to quantitate and modulate the apoptotic component of kainate-induced injury. Experiments were performed in mouse primary cortical neuronal cultures after three or 10 days in vitro. Cell death was assessed by Hoechst/propidium iodide staining and cell counting. Apoptosis was further confirmed with inhibition by caspase inhibitors. Exposure of three-day old neurons to 100 microM kainate produced an injury in which 56% +/- 0.9% of cells showed apoptotic nuclei and 13.5% +/- 2.0% showed necrotic nuclei. After 10 days in vitro neurons were more easily injured by kainate, but the cell death had primarily necrotic characteristics. Inhibition of both caspases 1 and 3 significantly reduced the apoptotic injury of 3-day old neurons. Neither reduced the necrotic component. Inhibition of protein synthesis with cycloheximide was also effective in reducing the apoptotic injury without affecting the necrotic injury. Kainate injury causes both apoptosis and necrosis, with the injury depending on both the dose of kainate and the age of the culture. The apoptotic component can be selectively reduced by caspase inhibition or cycloheximide.
机译:已证明兴奋性毒性在缺血性神经元损伤中起主要作用。尽管兴奋性毒性的坏死成分已得到充分证明,但细胞凋亡也已显示出作用。我们试图量化和调节海藻酸盐诱导的损伤的凋亡成分。在体外三或十天后,在小鼠原代皮层神经元培养物中进行实验。通过Hoechst /碘化丙锭染色和细胞计数评估细胞死亡。凋亡进一步被胱天蛋白酶抑制剂抑制。将三天大的神经元暴露于100 microM海藻酸盐会产生损伤,其中56%+/- 0.9%的细胞显示凋亡核,而13.5%+/- 2.0%的细胞显示坏死核。体外培养10天后,海藻酸盐更容易损伤神经元,但细胞死亡主要具有坏死特征。抑制胱天蛋白酶1和3均显着降低了3天大的神经元的细胞凋亡损伤。两者均未减少坏死成分。用环己酰亚胺抑制蛋白质合成在减少凋亡损伤而不影响坏死损伤方面也是有效的。海藻酸盐的损伤引起细胞凋亡和坏死,损伤取决于海藻酸盐的剂量和培养物的年龄。凋亡成分可通过半胱天冬酶抑制或环己酰亚胺选择性地降低。

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