Jappy David, Sokolov Rostislav, Dobryakova Yulia, Krut' Viktoriya, Maltseva Ksenia, Fedulina Anastasia, Smirnov Ivan, Rozov Andrei
Federal Center of Brain Research and Neurotechnologies, Moscow, Russia.
Institute of Neuroscience, Lobachevsky State University of Nizhniy Novgorod, Nizhny Novgorod, Russia.
Front Neural Circuits. 2025 Feb 19;19:1533791. doi: 10.3389/fncir.2025.1533791. eCollection 2025.
There is evidence that stress factors and negative experiences in early in life may affect brain development leading to mental disorders in adulthood. At the early stage of postnatal ontogenesis, the central nervous system has high plasticity, which decreases with maturation. Most likely, this high plasticity is necessary for establishing synaptic connections between different types of neurons, regulating the strength of individual synapses, and ultimately forming properly functioning neuronal networks. The vast majority of studies have examined the effects of early-life stress (ELS) on gene expression or behavior and memory. However, the impact of ELS on functional synaptic development and on the plastic properties of excitatory and inhibitory synapses are currently much less understood. Based on data obtained in a few studies it has been suggested that ELS reduces long-term potentiation (LTP) at Schaffer collateral to CA1 pyramidal cell synapses in adulthood. Nevertheless, different groups have reported somewhat contradictory results. In this report we show that ELS differentially affects LTP at CA3 to CA1 pyramidal cell inputs, at synapses on apical dendrites LTP is reduced, while LTP at synapses formed by CA3 pyramidal cells on basal dendrites remains unaffected.
有证据表明,生命早期的应激因素和负面经历可能会影响大脑发育,导致成年后出现精神障碍。在出生后个体发育的早期阶段,中枢神经系统具有高度可塑性,这种可塑性会随着成熟而降低。很可能,这种高度可塑性对于在不同类型神经元之间建立突触连接、调节单个突触的强度以及最终形成正常运作的神经网络是必要的。绝大多数研究都考察了早期生活应激(ELS)对基因表达或行为及记忆的影响。然而,目前人们对ELS对功能性突触发育以及对兴奋性和抑制性突触可塑性特性的影响了解得要少得多。根据少数研究获得的数据,有人提出ELS会降低成年期从海马体的谢弗侧支到CA1锥体细胞突触处的长时程增强(LTP)。然而,不同的研究小组报告的结果有些相互矛盾。在本报告中,我们表明ELS对从CA3到CA1锥体细胞输入处的LTP有不同影响,在顶树突上的突触处LTP降低,而由CA3锥体细胞在基树突上形成的突触处的LTP则不受影响。