首页> 外文期刊>Behavioural Brain Research: An International Journal >Generation and characterization of pilocarpine-sensitive C57BL/6 mice as a model of temporal lobe epilepsy
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Generation and characterization of pilocarpine-sensitive C57BL/6 mice as a model of temporal lobe epilepsy

机译:毛果芸香碱敏感的C57BL / 6小鼠的颞叶癫痫模型的产生和表征

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C57BL/6 (B6) is the most widely used inbred mouse strain, but its use in epilepsy research is compromised by low sensitivity to various convulsants, including pilocarpine. We recently identified a subline of B6NCrl mice in a barrier (#8) of a German vendor (Charles River) that was much more sensitive to status epilepticus (SE) induction than B6NCrl mice from four other barriers of the same vendor and other B6 substrains. Breeding experiments indicated that the observed differences have a genetic basis, thus offering a unique opportunity to identify the genes and pathways involved and contributing to a better understanding of the underlying molecular mechanisms of seizure susceptibility. Since the pilocarpine-sensitive B6 subline (B6NCrl#8) is not further available from the breeder, we decided to generate a new highly pilocarpine-sensitive B6NCrl subline by crossing female B6NCrl#8 mice with male F1 hybrids. Further sister-brother mating of the resulting F2 generation generated a highly susceptible F3 generation. Similar to B6NCrl#8 mice, mice from the F3 generation were significantly more susceptible to SE induction than any other B6 substrain, including B6J (JAX) mice, which were particularly insensitive to seizure induction. In contrast to the marked inter-subline differences in susceptibility to induction of SE, B6 sublines did not differ in the long-term consequences of SE, i.e., development of spontaneous seizures and neurodegeneration in the hippocampus, although hippocampal damage was much less severe than previously reported for other mouse strains. We have started to search for genetic loci underlying the high seizure susceptibility of B6NCrl#8 and filial generations obtained by cross-breeding with this B6 subline. Further characterization of the genetic variations underlying high susceptibility to convulsants such as pilocarpine will facilitate our understanding of the pathomechanisms involved in the evolution of single seizures to a self-sustained SE and provide new opportunities for interventions.
机译:C57BL / 6(B6)是使用最广泛的近交小鼠品系,但由于其对各种惊厥药(包括毛果芸香碱)的敏感性低,因此无法用于癫痫研究。我们最近在德国供应商(Charles River)的屏障(#8)中发现了B6NCrl小鼠的亚系,该亚系比来自同一供应商的其他四个屏障和其他B6亚菌株的B6NCrl小鼠对癫痫持续状态(SE)诱导更敏感。 。育种实验表明,观察到的差异具有遗传基础,因此提供了独特的机会来鉴定涉及的基因和途径,并有助于更好地了解癫痫发作易感性的潜在分子机制。由于不能再从育种家那里获得毛果芸香碱敏感的B6子系(B6NCrl#8),我们决定通过使雌性B6NCrl#8小鼠与雄性F1杂种杂交来产生新的高度毛果芸香碱敏感的B6NCrl子系。所产生的F2代的进一步兄弟姐妹交配产生了高度易感的F3代。与B6NCrl#8小鼠类似,F3代小鼠比包括B6J(JAX)小鼠在内的任何其他B6亚株对SE诱导的敏感性要高得多,而B6J(JAX)小鼠对癫痫发作的诱导特别不敏感。与亚线间诱导SE的敏感性明显不同,B6子线在SE的长期后果(即海马的自发性癫痫发作和神经退行性变)方面没有差异,尽管海马的损害远不如海马严重。先前曾报道过其他小鼠品系。我们已经开始寻找潜在的基因位点,该基因位点是B6NCrl#8的高癫痫易感性和通过与该B6子系杂交获得的孝子代的基础。对惊厥药如毛果芸香碱高度易感性的遗传变异的进一步表征将有助于我们了解单发癫痫病发展为自我维持的SE所涉及的发病机制,并为干预提供新的机会。

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