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Anatomic and Molecular Development of Corticostriatal Projection Neurons in Mice

机译:皮质皮质投射神经元在小鼠体内的解剖学和分子发育

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摘要

Corticostriatal projection neurons (CStrPN) project from the neocortex to ipsilateral and contralateral striata to control and coordinate motor programs and movement. They are clinically important as the predominant cortical population that degenerates in Huntington's disease and corticobasal ganglionic degeneration, and their injury contributes to multiple forms of cerebral palsy. Together with their well-studied functions in motor control, these clinical connections make them a functionally, behaviorally, and clinically important population of neocortical neurons. Little is known about their development. “Intratelencephalic” CStrPN (CStrPNi), projecting to the contralateral striatum, with their axons fully within the telencephalon (intratelencephalic), are a major population of CStrPN. CStrPNi are of particular interest developmentally because they share hodological and axon guidance characteristics of both callosal projection neurons (CPN) and corticofugal projection neurons (CFuPN); CStrPNi send axons contralaterally before descending into the contralateral striatum. The relationship of CStrPNi development to that of broader CPN and CFuPN populations remains unclear; evidence suggests that CStrPNi might be evolutionary “hybrids” between CFuPN and deep layer CPN—in a sense “chimeric” with both callosal and corticofugal features. Here, we investigated the development of CStrPNi in mice—their birth, maturation, projections, and expression of molecular developmental controls over projection neuron subtype identity.
机译:皮质上皮投射神经元(CStrPN)从新皮层投射到同侧和对侧纹状体,以控制和协调运动程序和运动。它们在临床上很重要,因为它们是在亨廷顿氏病和皮质基底节神经节变性中退化的主要皮质群体,并且它们的损伤导致多种形式的脑瘫。这些在运动控制方面经过充分研究的功能,加上这些临床联系,使它们成为功能,行为和临床上重要的新皮层神经元群体。他们的发展知之甚少。 CStrPN的主要人群是投射到对侧纹状体,其轴突完全位于端脑(脑内)的“脑中脑” CStrPN(CStrPNi)。 CStrPNi在发展中特别受关注,因为它们共享call投射神经元(CPN)和皮质肱骨投射神经元(CFuPN)的流变学和轴突引导特性。 CStrPNi在进入对侧纹状体之前先向对侧发送轴突。 CStrPNi发育与更广泛的CPN和CFuPN人群之间的关系尚不清楚。证据表明,CStrPNi可能是CFuPN和深层CPN之间的进化“杂种”,在某种意义上具有call和皮质皮质功能的“嵌合”。在这里,我们研究了小鼠中CStrPNi的发育-它们的出生,成熟,预测以及对投射神经元亚型同一性的分子发育控制的表达。

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