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小鼠早期双侧眼球摘除术后皮质和皮质下脑区的快速变化

Rapid Changes in Cortical and Subcortical Brain Regions after Early Bilateral Enucleation in the Mouse.

作者信息

Kozanian Olga O, Abbott Charles W, Huffman Kelly J

机构信息

Department of Psychology, University of California Riverside, 900 University Avenue, Riverside, CA 92521, United States of America.

Interdepartmental Neuroscience Program, University of California Riverside 900 University Avenue, Riverside, CA 92521, United States of America.

出版信息

PLoS One. 2015 Oct 9;10(10):e0140391. doi: 10.1371/journal.pone.0140391. eCollection 2015.

Abstract

Functional sensory and motor areas in the developing mammalian neocortex are formed through a complex interaction of cortically intrinsic mechanisms, such as gene expression, and cortically extrinsic mechanisms such as those mediated by thalamic input from the senses. Both intrinsic and extrinsic mechanisms are believed to be involved in cortical patterning and the establishment of areal boundaries in early development; however, the nature of the interaction between intrinsic and extrinsic processes is not well understood. In a previous study, we used a perinatal bilateral enucleation mouse model to test some aspects of this interaction by reweighting sensory input to the developing cortex. Visual deprivation at birth resulted in a shift of intraneocortical connections (INCs) that aligned with ectopic ephrin A5 expression in the same location ten days later at postnatal day (P) 10. A prevailing question remained: Does visual deprivation first induce a change in gene expression, followed by a shift in INCs, or vice versa? In the present study, we address this question by investigating the neuroanatomy and patterns of gene expression in post-natal day (P) 1 and 4 mice following bilateral enucleation at birth. Our results demonstrate a rapid reduction in dorsal lateral geniculate nucleus (dLGN) size and ephrin A5 gene expression 24-hours post-enucleation, with more profound effects apparent at P4. The reduced nuclear size and diminished gene expression mirrors subtle changes in ephrin A5 expression evident in P1 and P4 enucleated neocortex, 11 and 8 days prior to natural eye opening, respectively. Somatosensory and visual INCs were indistinguishable between P1 and P4 mice bilaterally enucleated at birth, indicating that perinatal bilateral enucleation initiates a rapid change in gene expression (within one day) followed by an alteration of sensory INCs later on (second postnatal week). With these results, we gain a deeper understanding of how gene expression and sensory input together regulate cortical arealization and plasticity during early development.

摘要

发育中的哺乳动物新皮层中的功能性感觉和运动区域是通过皮层内在机制(如基因表达)与皮层外在机制(如由来自感觉的丘脑输入介导的机制)之间的复杂相互作用形成的。内在和外在机制都被认为参与了早期发育中的皮层模式形成和区域边界的建立;然而,内在和外在过程之间相互作用的本质尚未得到很好的理解。在先前的一项研究中,我们使用围产期双侧眼球摘除小鼠模型,通过重新加权传入发育中皮层的感觉输入来测试这种相互作用的某些方面。出生时的视觉剥夺导致皮层内连接(INC)发生偏移,这种偏移在出生后第10天(P10)与同一位置的异位ephrin A5表达一致。一个普遍存在的问题仍然存在:视觉剥夺是首先诱导基因表达的变化,随后是INC的偏移,还是反之亦然?在本研究中,我们通过研究出生时双侧眼球摘除的出生后第1天(P1)和第4天(P4)小鼠的神经解剖结构和基因表达模式来解决这个问题。我们的结果表明,眼球摘除后24小时,背外侧膝状核(dLGN)大小和ephrin A5基因表达迅速降低,在P4时影响更为明显。核大小的减小和基因表达的降低反映了在自然睁眼之前11天和8天分别在P1和P4摘除眼球的新皮层中ephrin A5表达的细微变化。出生时双侧眼球摘除的P1和P4小鼠之间的体感和视觉INC没有区别,这表明围产期双侧眼球摘除会引发基因表达的快速变化(在一天内),随后在出生后第二周后期改变感觉INC。通过这些结果,我们对基因表达和感觉输入如何共同调节早期发育过程中的皮层区域化和可塑性有了更深入的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b287/4599918/77ca4930c233/pone.0140391.g001.jpg

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