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首页> 外文期刊>Journal of Molecular Neuroscience: MN >Cuprizone-Containing Pellets Are Less Potent to Induce Consistent Demyelination in the Corpus Callosum of C57BL/6 Mice
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Cuprizone-Containing Pellets Are Less Potent to Induce Consistent Demyelination in the Corpus Callosum of C57BL/6 Mice

机译:含铜酮的颗粒在Corpus Callosum的Corpus Callosum诱导Corpus Callosum的含量不太有效

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Abstract The chopper chelator cuprizone serves as a valuable chemical tool to induce consistent and reproducible demyelination in the central nervous system. However, the daily preparation of fresh cuprizone powder mixed in finely ground rodent chow might well be a particular health problem. Alternative methods, such as the fabrication of cuprizone-containing pellets, are available. The effectiveness of this method is, however, not known. In the present study, we compared whether intoxication of C57BL/6 mice with 0.25% cuprizone mixed into ground rodent chow does induce demyelination to a similar extent compared to a cuprizone-pellet intoxication protocol. We found that feeding of 0.25% cuprizone in ground chow provides a strong, well-defined, and reproducible demyelination along with increased accumulation of microglia and axonal damage in the corpus callosum, whereas all analyzed parameters were significantly less distinct in mice fed with cuprizone-containing pellets at an equivalent concentration of cuprizone at week 5. Even a higher concentration of cuprizone in pellet formulation was less potent compared to do so. This study illustrates that the established protocol of cuprizone intoxication (i.e., mixed in ground rodent chow) is the gold standard method to achieve consistent and reproducible demyelination. Why cuprizone loses its effectiveness in pellet formulation needs to be addressed in subsequent studies.
机译:斩波螯合剂铜唑嗪是一种有价值的化学工具,可以诱导中枢神经系统持续且可重复的脱髓鞘。然而,每天在细碎的啮齿类动物食物中混合新鲜的铜试剂粉很可能是一个特殊的健康问题。替代方法,如含铜颗粒的制造,是可用的。然而,这种方法的有效性尚不清楚。在本研究中,我们比较了C57BL/6小鼠与0.25%的铜唑酮混合到啮齿类动物饲料中中毒是否会导致脱髓鞘,其程度与铜唑酮颗粒中毒方案相似。我们发现,在地面食物中喂饲0.25%的铜利松可产生强烈、明确且可重复的脱髓鞘,同时胼胝体中的小胶质细胞和轴突损伤增加,而在第5周喂饲同等浓度铜利松的含铜颗粒的小鼠中,所有分析参数明显不明显。与此相比,颗粒配方中即使是更高浓度的铜试剂也没有那么有效。这项研究表明,已建立的铜唑嗪中毒方案(即混合在地面啮齿动物食物中)是实现一致且可重复脱髓鞘的金标准方法。为什么铜利松在颗粒配方中失去效力需要在后续研究中解决

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