Peripheral delivery of a ROCK inhibitor improves learning and working memory.

Peripheral delivery of a ROCK inhibitor improves learning and working memory.
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DOI:
10.1037/a0014260
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发表时间:
2009-02
影响因子:
1.9
通讯作者:
Bimonte-Nelson, Heather A.
Bimonte-Nelson, Heather A.
中科院分区:
医学4区
文献类型:
--
作者:
Huentelman, Matthew J.;Stephan, Dietrich A.;Talboom, Joshua;Corneveaux, Jason J.;Reiman, David A.;Gerber, Jill D.;Barnes, Carol A.;Alexander, Gene E.;Reiman, Eric M.;Bimonte-Nelson, Heather A.

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在此之前,利用一系列全基因组关联、脑成像和基因表达研究,我们暗示KIBRA基因和RhoA/ROCK通路参与了大脑介导的人类记忆。在这里,我们表明,外周给予ROCK抑制剂羟基法舒地尔改善啮齿动物模型的空间学习和工作记忆。这项研究支持ROCK对学习和记忆的作用,表明ROCK抑制对促进人类认知的潜在价值,并强调了无偏见的全基因组关联研究的强大潜力,为现有药物的潜在新用途提供信息。
Previously, utilizing a series of genome-wide association, brain imaging and gene expression studies we implicated the KIBRA gene and the RhoA/ROCK pathway in hippocampal-mediated human memory. Here we show that peripheral administration of the ROCK inhibitor hydroxyfasudil improves spatial learning and working memory in the rodent model. This study supports the action of ROCK on learning and memory, suggests the potential value of ROCK inhibition for the promotion of cognition in humans and highlights the powerful potential of unbiased genome-wide association studies to inform potential novel uses for existing pharmaceuticals.
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