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神经细胞简化和结构可塑性丧失作为与衰老相关的功能衰退的标志物。

Interneuron Simplification and Loss of Structural Plasticity As Markers of Aging-Related Functional Decline.

机构信息

Picower Institute for Learning and Memory.

Departments of Biology, and.

出版信息

J Neurosci. 2018 Sep 26;38(39):8421-8432. doi: 10.1523/JNEUROSCI.0808-18.2018. Epub 2018 Aug 14.

Abstract

Changes in excitatory neuron and synapse structure have been recognized as a potential physical source of age-related cognitive decline. Despite the importance of inhibition to brain plasticity, little is known regarding aging-associated changes to inhibitory neurons. Here we test for age-related cellular and circuit changes to inhibitory neurons of mouse visual cortex. We find no substantial difference in inhibitory neuron number, inhibitory neuronal subtypes, or synapse numbers within the cerebral cortex of aged mice compared with younger adults. However, when comparing cortical interneuron morphological parameters, we find differences in complexity, suggesting that arbors are simplified in aged mice. two-photon microscopy has previously shown that in contrast to pyramidal neurons, inhibitory interneurons retain a capacity for dendritic remodeling in the adult. We find that this capacity diminishes with age and is accompanied by a shift in dynamics from balanced branch additions and retractions to progressive prevalence of retractions, culminating in a dendritic arbor that is both simpler and more stable. Recording of visually evoked potentials shows that aging-related interneuron dendritic arbor simplification and reduced dynamics go hand in hand with loss of induced stimulus-selective response potentiation (SRP), a paradigm for adult visual cortical plasticity. Chronic treatment with the antidepressant fluoxetine reversed deficits in interneuron structural dynamics and restored SRP in aged animals. Our results support a structural basis for age-related impairments in sensory perception, and suggest that declines in inhibitory neuron structural plasticity during aging contribute to reduced functional plasticity. Structural alterations in neuronal morphology and synaptic connections have been proposed as a potential physical basis for age-related decline in cognitive function. Little is known regarding aging-associated changes to inhibitory neurons, despite the importance of inhibitory circuitry to adult cortical plasticity and the reorganization of cortical maps. Here we show that brain aging goes hand in hand with progressive structural simplification and reduced plasticity of inhibitory neurons, and a parallel decline in sensory map plasticity. Fluoxetine treatment can attenuate the concurrent age-related declines in interneuron structural and functional plasticity, suggesting it could provide an important therapeutic approach for mitigating sensory and cognitive deficits associated with aging.

摘要

兴奋性神经元和突触结构的变化已被认为是与年龄相关的认知能力下降的潜在物理来源。尽管抑制作用对大脑可塑性很重要,但对于与年龄相关的抑制性神经元变化知之甚少。在这里,我们测试了小鼠视觉皮层中抑制性神经元的与年龄相关的细胞和回路变化。我们发现,与年轻成年人相比,老年小鼠大脑皮层中的抑制性神经元数量、抑制性神经元亚型或突触数量没有实质性差异。然而,当比较皮质中间神经元形态参数时,我们发现复杂性存在差异,这表明在老年小鼠中树突分支简化。双光子显微镜先前已经表明,与锥体神经元相反,抑制性中间神经元在成年期保留了树突重塑的能力。我们发现,这种能力随着年龄的增长而减弱,并且伴随着从平衡的分支增加和缩回向渐进性缩回为主的动态转变,最终导致树突分支既更简单又更稳定。视觉诱发电位的记录表明,与年龄相关的中间神经元树突分支简化和动态降低与诱导刺激选择性反应增强(SRP)的丧失密切相关,这是成年视觉皮层可塑性的一个范例。用抗抑郁药氟西汀进行慢性治疗可逆转中间神经元结构动态的缺陷,并恢复老年动物的 SRP。我们的结果支持了与年龄相关的感觉感知障碍的结构基础,并表明在衰老过程中抑制性神经元结构可塑性的下降导致功能可塑性降低。神经元形态和突触连接的结构改变被提出作为与年龄相关的认知功能下降的潜在物理基础。尽管抑制性电路对成人皮质可塑性和皮质图谱的重组很重要,但对于与年龄相关的抑制性神经元变化知之甚少。在这里,我们表明大脑衰老与抑制性神经元的渐进结构简化和可塑性降低以及感觉图谱可塑性的平行下降同时发生。氟西汀治疗可以减轻与年龄相关的中间神经元结构和功能可塑性的同时下降,这表明它可能为减轻与衰老相关的感觉和认知缺陷提供一种重要的治疗方法。

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