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海马祖细胞的慢性化学遗传激活增强了成年神经发生,并调节了焦虑样行为和恐惧消退学习。

Chronic chemogenetic activation of hippocampal progenitors enhances adult neurogenesis and modulates anxiety-like behavior and fear extinction learning.

作者信息

Maheshwari Megha, Singla Aastha, Rawat Anoop, Banerjee Toshali, Pati Sthitapranjya, Shah Sneha, Maiti Sudipta, Vaidya Vidita A

机构信息

Department of Biological Sciences, Tata Institute of Fundamental Research, Mumbai, Maharashtra 400005, India.

出版信息

IBRO Neurosci Rep. 2024 Jan 22;16:168-181. doi: 10.1016/j.ibneur.2024.01.002. eCollection 2024 Jun.

Abstract

Adult hippocampal neurogenesis is a lifelong process that involves the integration of newborn neurons into the hippocampal network, and plays a role in cognitive function and the modulation of mood-related behavior. Here, we sought to address the impact of chemogenetic activation of adult hippocampal progenitors on distinct stages of progenitor development, including quiescent stem cell activation, progenitor turnover, differentiation and morphological maturation. We find that hM3Dq-DREADD-mediated activation of nestin-positive adult hippocampal progenitors recruits quiescent stem cells, enhances progenitor proliferation, increases doublecortin-positive newborn neuron number, accompanied by an acceleration of differentiation and morphological maturation, associated with increased dendritic complexity. Behavioral analysis indicated anxiolytic behavioral responses in transgenic mice subjected to chemogenetic activation of adult hippocampal progenitors at timepoints when newborn neurons are predicted to integrate into the mature hippocampal network. Furthermore, we noted an enhanced fear memory extinction on a contextual fear memory learning task in transgenic mice subjected to chemogenetic activation of adult hippocampal progenitors. Our findings indicate that hM3Dq-DREAD-mediated chemogenetic activation of adult hippocampal progenitors impacts distinct aspects of hippocampal neurogenesis, associated with the regulation of anxiety-like behavior and fear memory extinction.

摘要

成体海马神经发生是一个终身过程,涉及新生神经元整合到海马网络中,并在认知功能和情绪相关行为的调节中发挥作用。在这里,我们试图探讨化学遗传学激活成体海马祖细胞对祖细胞发育不同阶段的影响,包括静止干细胞激活、祖细胞更新、分化和形态成熟。我们发现,hM3Dq-DREADD介导的巢蛋白阳性成体海马祖细胞激活可招募静止干细胞,增强祖细胞增殖,增加双皮质素阳性新生神经元数量,同时加速分化和形态成熟,并伴有树突复杂性增加。行为分析表明,在预测新生神经元将整合到成熟海马网络的时间点,对成体海马祖细胞进行化学遗传学激活的转基因小鼠出现抗焦虑行为反应。此外,我们注意到在对成体海马祖细胞进行化学遗传学激活的转基因小鼠的情境恐惧记忆学习任务中,恐惧记忆消退增强。我们的研究结果表明,hM3Dq-DREAD介导的成体海马祖细胞化学遗传学激活影响海马神经发生的不同方面,与焦虑样行为和恐惧记忆消退的调节有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b42/11240292/fa32bdc4ae62/gr1.jpg

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