Age-dependent modulation of short-term neuronal dynamics in the dorsal and ventral rat hippocampus.

IF 1 4区 生物学 Q4 DEVELOPMENTAL BIOLOGY
George Trompoukis, Giota Tsotsokou, Andriana Koutsoumpa, Maria Tsolaki, Georgia Vryoni, Costas Papatheodoropoulos
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引用次数: 1

Abstract

Brain aging is associated with alterations in the behavioral capacity to process information, due to mechanisms that are still largely unclear. Short-term neuronal activity dynamics are basic properties of local brain networks profoundly involved in neural information processing. In this study, we investigated the properties of short-term changes in excitatory synaptic transmission and neuronal excitation in the CA1 field of dorsal and ventral hippocampal slices from young adult and old rats. We found that short-term synaptic plasticity (i.e. short-term dynamics of input to CA1 circuit) does not significantly differ between young and old dorsal or ventral hippocampus. However, short-term dynamics of hippocampal output differ markedly between young and old rats. Notably, age-dependent alterations in short-term neuronal dynamics were detected mainly in the dorsal hippocampus. Thus, the dorsal hippocampus of young rats can detect and facilitate transmission of 1-30 Hz input and depress transmission of higher-frequency input. In contrast, the old dorsal hippocampus appears unable to transmit information in a frequency-dependent discriminatory manner. Furthermore, the amplification of steady-state output at frequencies < 40 Hz is considerably lower in the old than the young dorsal hippocampus. The old ventral hippocampus did not show major alterations in short-term processing of neural information, though under conditions of intense afferent activation, neuronal output of the ventral hippocampus is depressed at steady-state more in old than in young rats. These results suggest that aging is accompanied by alterations in neural information processing mainly in the dorsal hippocampus, which displays a narrower dynamic range of frequency-dependent transient changes in neuronal activity in old compared with young adult rats. These alterations in short-term dynamics may relate to deficits in processing ongoing activity seen in old individuals.

大鼠海马背侧和腹侧短期神经元动力学的年龄依赖性调节。
大脑衰老与处理信息的行为能力的改变有关,其机制在很大程度上仍不清楚。神经短期活动动态是深层参与神经信息处理的局部脑网络的基本特性。在本研究中,我们研究了青年和老年大鼠海马背侧和腹侧切片CA1区兴奋性突触传递和神经元兴奋的短期变化特性。我们发现短期突触可塑性(即CA1回路输入的短期动态)在年轻和年老海马背侧或腹侧之间没有显著差异。然而,海马输出的短期动态在年轻和年老的大鼠之间有明显的不同。值得注意的是,短期神经元动力学的年龄依赖性改变主要发生在海马背侧。由此可见,幼鼠海马背侧能够检测并促进1 ~ 30hz输入的传递,抑制高频输入的传递。相反,旧的背侧海马似乎不能以频率依赖的歧视性方式传递信息。此外,老年人海马背侧在频率< 40 Hz时稳态输出的放大明显低于年轻人。老年海马腹侧海马短期神经信息处理未见明显变化,但在强烈的传入激活条件下,老年海马腹侧海马神经元输出在稳态下的抑制程度高于年轻大鼠。这些结果表明,衰老主要伴随着海马背侧神经信息处理的改变,与年轻成年大鼠相比,老年海马背侧神经元活动的频率依赖性瞬时变化的动态范围更窄。这些短期动态的改变可能与老年人处理正在进行的活动的缺陷有关。
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来源期刊
CiteScore
1.90
自引率
0.00%
发文量
16
审稿时长
2 months
期刊介绍: The International Journal of Developmental Biology (ISSN: 0214- 6282) is an independent, not for profit scholarly journal, published by scientists, for scientists. The journal publishes papers which throw light on our understanding of animal and plant developmental mechanisms in health and disease and, in particular, research which elucidates the developmental principles underlying stem cell properties and cancer. Technical, historical or theoretical approaches also fall within the scope of the journal. Criteria for acceptance include scientific excellence, novelty and quality of presentation of data and illustrations. Advantages of publishing in the journal include: rapid publication; free unlimited color reproduction; no page charges; free publication of online supplementary material; free publication of audio files (MP3 type); one-to-one personalized attention at all stages during the editorial process. An easy online submission facility and an open online access option, by means of which papers can be published without any access restrictions. In keeping with its mission, the journal offers free online subscriptions to academic institutions in developing countries.
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