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Cortical Demyelination Is Prominent in the Murine Cuprizone Model and Is Strain-Dependent

机译:皮质脱髓鞘作用在鼠铜酮模型中很明显并且依赖于应变

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摘要

The cuprizone model of toxic demyelination in the central nervous system is commonly used to investigate the pathobiology of remyelination in the corpus callosum. However, in human demyelinating diseases such as multiple sclerosis, recent evidence indicates a considerable amount of cortical demyelination in addition to white matter damage. Therefore, we have investigated cortical demyelination in the murine cuprizone model. To induce demyelination, C57BL/6 mice were challenged with 0.2% cuprizone feeding for 6 weeks followed by a recovery phase of 6 weeks with a cuprizone-free diet. In addition to the expected demyelination in the corpus callosum, the cortex of C57BL/6 mice was completely demyelinated after 6 weeks of cuprizone feeding. After withdrawal of cuprizone the cortex showed complete remyelination similar to that in the corpus callosum. When C57BL/6 mice were fed cuprizone for a prolonged period of 12 weeks, cortical remyelination was significantly delayed. Because interstrain differences have been described, we also investigated the effects of cuprizone on cortical demyelination in BALB/cJ mice. In these mice, cortical demyelination was only partial. Moreover, cortical microglia accumulation was markedly increased in BALB/cJ mice, whereas microglia were absent in the cortex of C57BL/6 mice. In summary, our results show that cuprizone feeding is an excellent model in which to study cortical demyelination and remyelination, including contributing genetic factors represented by strain differences.
机译:中枢神经系统中毒性脱髓鞘的铜酮模型通常用于研究call体中髓鞘再生的病理生物学。然而,在诸如多发性硬化症之类的人脱髓鞘疾病中,最近的证据表明,除了白质损害之外,还存在大量的皮质脱髓鞘。因此,我们研究了鼠铜酮模型中的皮质脱髓鞘。为了诱导脱髓鞘,向C57BL / 6小鼠挑战0.2%的铜酮喂养6周,然后在无铜酮饮食的情况下恢复6周。除了预期的call体脱髓鞘作用外,在喂食铜酮6周后,C57BL / 6小鼠的皮质也被完全脱髓鞘。撤出铜酮后,皮质显示出完全的髓鞘再生,类似于call体。当C57BL / 6小鼠长期喂食铜酮12周时,皮层髓鞘再生明显延迟。因为已描述了菌株间的差异,所以我们还研究了铜酮对BALB / cJ小鼠皮层脱髓鞘的作用。在这些小鼠中,皮质脱髓鞘仅是部分的。此外,BALB / cJ小鼠的皮质小胶质细胞蓄积明显增加,而C57BL / 6小鼠的皮质中无小胶质细胞。总而言之,我们的结果表明,饲喂铜酮是研究皮质脱髓鞘和再髓鞘,包括以菌株差异为代表的遗传因素的绝佳模型。

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