成年嗅球多巴胺能神经元的功能成熟和经验依赖可塑性

IF 2.4 4区 医学 Q3 NEUROSCIENCES
Candida Tufo, Menghon Cheah, Marcela Lipovsek, Darren J. Byrne, Krishna Kothandapani, Lorcan P. Browne, Matthew S. Grubb
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引用次数: 0

摘要

新神经元的持续整合只存在于成年小鼠大脑的少数区域。在嗅球(OB)中,与成熟的神经元相比,未成熟的成年神经元对嗅觉刺激的反应不同,并且具有更高水平的活动依赖可塑性。这些独特的功能特征被认为赋予了现有电路独特的特性。OB中间神经元,包括通过成人神经发生产生的中间神经元,由一组高度不同的亚型组成。然而,我们目前还不知道它们的功能发育和可塑性潜力背后的不同细胞类型特异性机制。在这里,我们专门描述了电生理成熟和经验依赖的可塑性在一个单一的,确定的亚型成人OB神经元:多巴胺能细胞。我们选择性地对成年出生的和“常驻”的多巴胺能细胞进行活标记,并针对它们在急性小鼠OB切片中进行全细胞膜片钳记录。令人惊讶的是,我们发现,从大约1个月的细胞年龄开始,活的成年多巴胺能神经元就可以被可靠地识别出来,它们已经具有几乎完全成熟的内在放电特性。我们看到明显的成熟仅在自发活动增加和中超极化振幅下降。成人出生的多巴胺能细胞也不是特别具有可塑性。在通过单侧鼻腔阻断短暂感觉剥夺的反应中,我们观察到内在特性没有成熟特异性的可塑性改变,尽管我们确实看到了剥夺相关的spike速度和振幅在所有成年出生和常驻神经元中增加。我们的研究结果不仅表明成年OB多巴胺能细胞在功能上与先前存在的多巴胺能细胞迅速相似,而且还强调了亚型身份在描述神经元成熟和可塑性时的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Functional Maturation and Experience-Dependent Plasticity in Adult-Born Olfactory Bulb Dopaminergic Neurons

Functional Maturation and Experience-Dependent Plasticity in Adult-Born Olfactory Bulb Dopaminergic Neurons

Continued integration of new neurons persists in only a few areas of the adult mouse brain. In the olfactory bulb (OB), immature adult-born neurons respond differently to olfactory stimuli compared to their more mature counterparts and have heightened levels of activity-dependent plasticity. These distinct functional features are thought to bestow unique properties onto existing circuitry. OB interneurons, including those generated through adult neurogenesis, consist of a set of highly distinct subtypes. However, we do not currently know the different cell-type-specific mechanisms underlying their functional development and plastic potential. Here, we specifically characterised electrophysiological maturation and experience-dependent plasticity in a single, defined subtype of adult-born OB neuron: dopaminergic cells. We selectively live-labelled both adult-born and ‘resident’ dopaminergic cells, and targeted them for whole-cell patch-clamp recordings in acute mouse OB slices. Surprisingly, we found that from the time—at ~1 month of cell age—that live adult-born dopaminergic neurons could first be reliably identified, they already possessed almost fully mature intrinsic firing properties. We saw significant maturation only in increased spontaneous activity and decreased medium afterhyperpolarisation amplitude. Nor were adult-born dopaminergic cells especially plastic. In response to brief sensory deprivation via unilateral naris occlusion we observed no maturation-specific plastic alterations in intrinsic properties, although we did see deprivation-associated increases in spike speed and amplitude across all adult-born and resident neurons. Our results not only show that adult-born OB dopaminergic cells rapidly functionally resemble their pre-existing counterparts, but also underscore the importance of subtype identity when describing neuronal maturation and plasticity.

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来源期刊
European Journal of Neuroscience
European Journal of Neuroscience 医学-神经科学
CiteScore
7.10
自引率
5.90%
发文量
305
审稿时长
3.5 months
期刊介绍: EJN is the journal of FENS and supports the international neuroscientific community by publishing original high quality research articles and reviews in all fields of neuroscience. In addition, to engage with issues that are of interest to the science community, we also publish Editorials, Meetings Reports and Neuro-Opinions on topics that are of current interest in the fields of neuroscience research and training in science. We have recently established a series of ‘Profiles of Women in Neuroscience’. Our goal is to provide a vehicle for publications that further the understanding of the structure and function of the nervous system in both health and disease and to provide a vehicle to engage the neuroscience community. As the official journal of FENS, profits from the journal are re-invested in the neuroscientific community through the activities of FENS.
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