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Understanding the Mechanisms of Callosal Development Through the Use of Transgenic Mouse Models

机译:通过使用转基因小鼠模型了解愈伤组织发育的机制

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摘要

The cerebral cortex is the area of the brain where higher-order cognitive processing occurs. The 2 hemispheres of the cerebral cortex communicate through one of the largest fiber tracts in the brain, the corpus callosum. Malformation of the corpus callosum in human beings occurs in 1 in 4000 live births, and those afflicted experience an extensive range of neurologic disorders, from relatively mild to severe cognitive deficits. Understanding the molecular and cellular processes involved in these disorders would therefore assist in the development of prognostic tools and therapies. During the past 3 decades, mouse models have been used extensively to determine which molecules play a role in the complex regulation of corpus callosum development. This review provides an update on these studies, as well as highlights the value of using mouse models with the goal of developing therapies for human acallosal syndromes.
机译:大脑皮层是发生高级认知加工的大脑区域。大脑皮层的两个半球通过大脑中最大的纤维束之一call体进行通讯。每4000名活产婴儿中就有1人发生call体畸形,这些患病者经历了从相对轻度到严重的认知缺陷的各种神经系统疾病。因此,了解与这些疾病有关的分子和细胞过程将有助于开发预后工具和疗法。在过去的三十年中,小鼠模型已被广泛用于确定哪些分子在call体发育的复杂调控中起作用。这篇综述提供了这些研究的最新信息,并着重介绍了使用小鼠模型的价值,该模型的目的是开发用于人类call症的疗法。

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