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Updated: Jul 10, 2026

Investigating Long-term Synaptic Plasticity in Interlamellar Hippocampus CA1 by Electrophysiological Field Recording
Published on: August 11, 2019
Serotonin Deficits Modulate Hippocampal Plasticity
Rocío B Foltran1, Mariano Soiza-Reilly1,2
1Instituto de Fisiología, Biología Molecular y Neurociencias (IFIBYNE), Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Ciudad de Buenos Aires1428, Argentina.
Abstract:
Serotonin (5-HT) modulates a wide variety of functions across the central nervous systems. It is a key regulator of neuroplasticity, particularly in the hippocampus, where increased serotonergic signaling generally enhances the plasticity processes. However, the consequences of 5-HT deficiency on brain plasticity remain poorly understood, which is essential for clarifying the role of 5-HT in the etiology and treatment of psychiatric disorders. Here, we survey findings from pharmacological and genetic models of 5-HT depletion, focusing on molecular, cellular, and neural circuit changes in the hippocampus, alongside related phenotypes. Evidence indicates that lowering 5-HT levels differentially impacts the distinct forms of plasticity. While chronic depletion frequently increases molecular plasticity markers, dendritic spines, and neurogenesis, it simultaneously impairs neural circuit plasticity and hippocampus-dependent memory. In contrast, both acute and developmental 5-HT depletion consistently reduce both the structural and functional neuronal plasticity of the hippocampus. These findings highlight that the effects of 5-HT deficiency are highly dependent on the timing, duration, and developmental stages of the manipulation. Deconstructing this complexity is critical to interpreting how reduced 5-HT levels alter hippocampal plasticity and contribute to psychiatric pathophysiology.
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