Fear conditioning modulates the intrinsic excitability of ventral hippocampal CA1 neurons in male rats.

IF 2.1 3区 医学 Q3 NEUROSCIENCES
Journal of neurophysiology Pub Date : 2025-03-01 Epub Date: 2025-01-28 DOI:10.1152/jn.00300.2024
Vanessa L Ehlers, Hanna Yousuf, Chad W Smies, Brendan R Natwora, James R Moyer
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引用次数: 0

Abstract

The hippocampus has a known role in learning and memory, with the ventral subregion supporting many learning tasks involving affective responding, including fear conditioning. Altered neuronal intrinsic excitability reflects experience-dependent plasticity that supports learning-related behavioral changes. Such changes have previously been observed in the dorsal hippocampus following fear conditioning, but little work has examined the effect of fear conditioning on ventral hippocampal intrinsic plasticity. The present study tested the hypothesis that acquisition of trace and context fear conditioning alters intrinsic excitability of specific classes of ventral hippocampal CA1 neurons in male rats. We observed distinct changes in excitability that were specific to cell type and learning paradigm. Specifically, regular-spiking ventral hippocampal CA1 neurons demonstrated increased excitability following context fear conditioning, and these changes were correlated with context fear retrieval. In contrast, trace fear conditioning resulted in increased excitability of ventral hippocampal CA1 late-spiking neurons from good learners relative to poor learners. Together, these data demonstrate ventral hippocampal CA1 neuronal excitability is finely tuned to support fear memory in a learning- and firing type-specific manner.NEW & NOTEWORTHY This study is the first to characterize ventral hippocampal CA1 physiological firing types in associative fear learning. Distinct intrinsic excitability changes among these populations suggest they contribute uniquely to trace and context fear memory. These findings have important implications for anxiety disorders that depend on the ventral hippocampus and pave the way for future studies to examine how these populations might coordinate with the larger ventral hippocampal network in forming fear associations.

海马在学习和记忆中的作用众所周知,其腹侧亚区支持许多涉及情感反应的学习任务,包括恐惧条件反射。神经元内在兴奋性的改变反映了依赖经验的可塑性,这种可塑性支持与学习相关的行为变化。以前曾在恐惧条件反射后的海马背侧观察到这种变化,但很少有研究探讨恐惧条件反射对海马腹侧固有可塑性的影响。本研究验证了这样一个假设:雄性大鼠在获得痕迹和情境恐惧条件反射后,特定类别的腹侧海马 CA1 神经元的内在兴奋性会发生改变。我们观察到了细胞类型和学习范式所特有的兴奋性变化。具体来说,在情境恐惧条件反射后,规律性激动的腹侧海马 CA1 神经元的兴奋性增加,这些变化与情境恐惧检索相关。相比之下,痕量恐惧条件反射导致学习能力强的腹侧海马CA1晚期尖峰神经元的兴奋性高于学习能力差的神经元。这些数据共同证明了腹侧海马CA1神经元的兴奋性是经过精细调整的,它以学习和发射类型特异性的方式支持恐惧记忆。
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来源期刊
Journal of neurophysiology
Journal of neurophysiology 医学-神经科学
CiteScore
4.80
自引率
8.00%
发文量
255
审稿时长
2-3 weeks
期刊介绍: The Journal of Neurophysiology publishes original articles on the function of the nervous system. All levels of function are included, from the membrane and cell to systems and behavior. Experimental approaches include molecular neurobiology, cell culture and slice preparations, membrane physiology, developmental neurobiology, functional neuroanatomy, neurochemistry, neuropharmacology, systems electrophysiology, imaging and mapping techniques, and behavioral analysis. Experimental preparations may be invertebrate or vertebrate species, including humans. Theoretical studies are acceptable if they are tied closely to the interpretation of experimental data and elucidate principles of broad interest.
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