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首页> 外文期刊>Comparative Medicine >Dietary Supplementation with S-Adenosyl Methionine was Associated with Protracted Reduction of Seizures in a Line of Transgenic Mice
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Dietary Supplementation with S-Adenosyl Methionine was Associated with Protracted Reduction of Seizures in a Line of Transgenic Mice

机译:膳食补充S-腺苷蛋氨酸与转基因小鼠品系癫痫发作的持续减少有关

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摘要

Transgenic mice, although useful for analyses of gene function, can present unanticipated phenotypic manifestations, including behavioral problems, that may not be directly associated with the gene of interest but rather due to the complex interplay inherent in genomes. These unexpected events can present unique insight into gene function, leading to an advantage in some situations, yet in others can confound interpretation and compromise usefulness of the transgenic line. Here we document that short-term supplementation with S-adenosyl methionine (SAM)-a nutriceutical known to regulate neurotransmitter levels, improve working memory, and reduce aggression-reduced handling- and startling-induced seizures that otherwise precluded behavioral analyses in a transgenic line. This effect lasted for at least 1 mo after withdrawal of SAM and allowed mice to be used in standard maze analyses. These findings suggest that short-term administration of a neurotropic nutriceutical may provide a functional rescue for behavioral studies in an otherwise intractable transgenic mouse line as well as improve the welfare of similar lines.
机译:尽管转基因小鼠可用于分析基因功能,但仍可能表现出意料之外的表型表现,包括行为问题,可能与目的基因不直接相关,而是由于基因组固有的复杂相互作用。这些意外事件可以提供对基因功能的独特见解,在某些情况下会带来优势,而在另一些情况下则会混淆解释并损害转基因品系的有用性。在这里,我们记录了短期补充S-腺苷甲硫氨酸(SAM)-一种已知的营养物质,它可以调节神经递质水平,改善工作记忆并减少侵略性降低的处理和惊吓诱发的癫痫发作,而这可能会阻止转基因品系中的行为分析。撤回SAM后,这种效应至少持续了1个月,并且允许小鼠用于标准迷宫分析。这些发现表明,短期施用神经营养性药物可以为原本难于治疗的转基因小鼠品系中的行为研究提供功能性拯救,并改善类似品系的福利。

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