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Please use this identifier to cite or link to this item: http://hdl.handle.net/10564/4475

Title: Effect of Juvenile Social Isolation on Excitability of Prefrontal Pyramidal Cells With Different Subcortical Axonal Projections
Other Titles: 幼少期の社会的隔離が異なる皮質下への軸索投射を持つ前頭前野錐体細胞の興奮性に及ぼす影響
Authors: Nishihata, Yosuke
Yoshino, Hiroki
Ogawa, Yoichi
Sugimura, Taketoshi
Okamura, Kazuya
Kimoto, Sohei
Yamamuro, Kazuhiko
Makinodan, Manabu
Saito, Yasuhiko
Kishimoto, Toshifumi
Keywords: social isolation
prefrontal cortex
pyramidal cells
thalamus
striatum
pontine nuclei
Issue Date: May-2025
Publisher: Frontiers Research Foundation
Citation: Frontiers in cellular neuroscience. 2025 May, vol.19, article no.1549352
Abstract: Background: Social experience during development is crucial for the functional maturation of the prefrontal cortex (PFC). Juvenile social isolation (JSI) causes severe PFC dysfunction. JSI reduces intrinsic excitability and excitatory synaptic inputs for a subtype of layer-5 (L5) pyramidal cells showing prominent h-current (PH cells) in the medial PFC. PH cells do not have commissural or associational cortical output; instead, they project into subcortical areas. However, which subcortical area is the projection target of L5 pyramidal cells affected by JSI remains unascertained. Methods: Using retrograde neuronal tracing, we identified L5 pyramidal cells having three different projection targets: the mediodorsal thalamus, striatum, or pontine nuclei. We elucidated differences in functional properties among the three subclasses of L5 pyramidal cells and examined how JSI affects the intrinsic membrane properties and excitatory inputs for each class of L5 pyramidal cells. Results: Pyramidal cells projecting to the pontine nuclei had more excitatory synaptic inputs and more distinguishing intrinsic properties than pyramidal cells projecting to the mediodorsal thalamus and striatum. JSI increased the firing responsiveness of pyramidal cell projecting to mediodorsal thalamus and reduced excitatory synaptic inputs only onto pyramidal cells projecting to the pontine nuclei. Conclusion: JSI affects the development of L5 pyramidal cells based on their projection target.
Description: © 2025 Nishihata, Yoshino, Ogawa, Sugimura, Okamura, Kimoto, Yamamuro, Makinodan, Saito and Kishimoto. This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
URI: http://hdl.handle.net/10564/4475
ISSN: 1662-5102
DOI: https://doi.org/10.3389/fncel.2025.1549352
Academic Degrees and number: 24601乙第1535号
Degree-granting date: 2025-09-25
Degree name: 博士(医学)
Degree-granting institutions: 奈良県立医科大学
Appears in Collections:2025年度

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