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猫大脑皮层初级视区 17 和 18 的早期产后发育:SMI-32 研究。

Early postnatal development of the primary visual areas 17 and 18 of the cat cerebral cortex: An SMI-32 study.

机构信息

Pavlov Institute of Physiology, Russian Academy of Sciences, St. Petersburg, Russia.

出版信息

J Neurosci Res. 2024 Aug;102(8):e25375. doi: 10.1002/jnr.25375.

Abstract

Using anti-neurofilament H non-phosphorylated antibodies (SMI-32) as markers for the neuronal maturation level and Y channel responsible for motion processing, we investigated early postnatal development of the primary visual areas 17 and 18 in cats aged 0, 10, 14, and 34 days and in adults. Two analyzed parameters of SMI-32-immunolabeling were used: the total proportion of SMI-32-labeling and the density of labeled neurons. (i) The developmental time course of the total proportion of SMI-32-labeling shows the general increase in the accumulation of heavy-chain neurofilaments. This parameter showed a different time course for cortical layer development; the maximal increment in the total labeling in layer V occurred between the second and fifth postnatal weeks and in layers II-III and VI after the fifth postnatal week. In addition, the delay in accumulation of SMI-32-labeling was shown in layer V of the area 17 periphery representation during the first two postnatal weeks. (ii) The density of SMI-32-labeled neurons decreased in all layers of area 18, but was increased, decreased, or had a transient peak in layers II-III, V, and VI of area 17, respectively. The transient peak is in good correspondence with some transient neurochemical features previously revealed for different classes of cortical and thalamic neurons and reflects the time course of the early development of the thalamocortical circuitry. Some similarities between the time courses for the development of SMI-32-labeling in areas 17/18 and in A- and C-laminae of the LGNd allow us to propose heterochronous postnatal development of two Y sub-channels.

摘要

使用非磷酸化神经丝重链抗体(SMI-32)作为神经元成熟水平的标志物和负责运动处理的 Y 通道,我们研究了猫在 0、10、14 和 34 天龄以及成年时的第 17 和 18 初级视觉区的早期出生后发育。我们使用了两种分析 SMI-32 免疫标记的参数:SMI-32 标记的总比例和标记神经元的密度。(i)SMI-32 标记总比例的发育时间过程显示出重链神经丝积累的普遍增加。该参数显示了皮层层发育的不同时间过程;在第 2 至第 5 个出生周之间,第 V 层中总标记的最大增加发生在第 5 个出生周之后的第 II-III 和 VI 层中。此外,在出生后前两周,第 17 区周边代表的第 V 层中显示出 SMI-32 标记积累的延迟。(ii)SMI-32 标记神经元的密度在第 18 区的所有层中均降低,但在第 17 区的 II-III、V 和 VI 层中分别增加、减少或出现瞬时峰值。该瞬时峰值与先前为不同类别的皮层和丘脑神经元揭示的一些瞬时神经化学特征非常吻合,反映了丘脑皮质回路的早期发育的时间过程。在第 17/18 区和 LGNd 的 A 和 C 层中 SMI-32 标记发育的时间过程之间的一些相似性允许我们提出两个 Y 亚通道的异时性出生后发育。

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