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Late origin of glia-restricted progenitors in the developing mouse cerebral cortex.发育中小鼠大脑皮质中神经胶质细胞限制祖细胞的晚期起源。
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Neuroscience: Glia - more than just brain glue.神经科学:神经胶质细胞——不仅仅是大脑的黏合剂。
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Neuron-astrocyte signaling in the development and plasticity of neural circuits.神经回路发育和可塑性中的神经元-星形胶质细胞信号传导。
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Redefining the concept of reactive astrocytes as cells that remain within their unique domains upon reaction to injury.将反应性星形胶质细胞的概念重新定义为在对损伤作出反应时仍保留在其独特区域内的细胞。
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Specification of astrocytes by bHLH protein SCL in a restricted region of the neural tube.在神经管的一个受限区域中,由bHLH蛋白SCL对星形胶质细胞进行特异性调控。
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Signaling between glia and neurons: focus on synaptic plasticity.神经胶质细胞与神经元之间的信号传导:聚焦于突触可塑性。
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Astrocytes, from brain glue to communication elements: the revolution continues.星形胶质细胞:从脑胶水到通信元件,革命仍在继续。
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新皮层柱中锥体神经元和原浆星形细胞的共发生。

Coincident generation of pyramidal neurons and protoplasmic astrocytes in neocortical columns.

机构信息

Department of Neurology, Vertex Pharmaceuticals, Cambridge, Massachusetts 02139, USA.

出版信息

J Neurosci. 2012 Apr 4;32(14):4762-72. doi: 10.1523/JNEUROSCI.3560-11.2012.

DOI:10.1523/JNEUROSCI.3560-11.2012
PMID:22492032
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3643505/
Abstract

Astrocytes, one of the most common cell types in the brain, are essential for processes ranging from neural development through potassium homeostasis to synaptic plasticity. Surprisingly, the developmental origins of astrocytes in the neocortex are still controversial. To investigate the patterns of astrocyte development in the neocortex we examined cortical development in a transgenic mouse in which a random, sparse subset of neural progenitors undergoes CRE/lox recombination, permanently labeling their progeny. We demonstrate that neural progenitors in neocortex generate discrete columnar structures that contain both projection neurons and protoplasmic astrocytes. Ninety-five percent of developmental cortical columns labeled in our system contained both astrocytes and neurons. The astrocyte to neuron ratio of labeled cells in a developmental column was 1:7.4, similar to the overall ratio of 1:8.4 across the entire gray matter of the neocortex, indicating that column-associated astrocytes account for the majority of protoplasmic astrocytes in neocortex. Most of the labeled columns contained multiple clusters of several astrocytes. Dividing cells were found at the base of neuronal columns at the beginning of gliogenesis, and later within the cortical layers, suggesting a mechanism by which astrocytes could be distributed within a column. These data indicate that radial glia are the source of both neurons and astrocytes in the neocortex, and that these two cell types are generated in a spatially restricted manner during cortical development.

摘要

星形胶质细胞是大脑中最常见的细胞类型之一,对于从神经发育到钾离子稳态再到突触可塑性的各种过程都是必不可少的。令人惊讶的是,新皮层中星形胶质细胞的发育起源仍然存在争议。为了研究新皮层中星形胶质细胞的发育模式,我们检查了在一种转基因小鼠中的皮层发育情况,其中随机的、稀疏的神经祖细胞亚群经历了 CRE/lox 重组,永久性地标记了它们的后代。我们证明,新皮层中的神经祖细胞产生了离散的柱状结构,其中包含投射神经元和原浆星形胶质细胞。我们系统中标记的 95%的发育皮层柱都包含星形胶质细胞和神经元。发育柱中标记细胞的星形胶质细胞与神经元的比例为 1:7.4,与整个新皮层灰质的总体比例 1:8.4 相似,表明与柱相关的星形胶质细胞占新皮层原浆星形胶质细胞的大部分。大多数标记的柱包含多个几个星形胶质细胞簇。在神经柱的底部,在神经发生的开始时就发现了分裂细胞,后来在皮质层内也发现了分裂细胞,这表明了一种可以在柱内分布星形胶质细胞的机制。这些数据表明,放射状胶质细胞是新皮层中神经元和星形胶质细胞的来源,并且这两种细胞类型在皮层发育过程中以空间受限的方式产生。