首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Imaging Neuronal Responses in Slice Preparations of Vomeronasal Organ Expressing a Genetically Encoded Calcium Sensor
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Imaging Neuronal Responses in Slice Preparations of Vomeronasal Organ Expressing a Genetically Encoded Calcium Sensor

机译:影像表达基因编码的钙传感器的犁鼻器切片准备中的成像神经元反应。

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摘要

The vomeronasal organ (VNO) detects chemosensory signals that carry information about the social, sexual and reproductive status of the individuals within the same species 1,2. These intraspecies signals, the pheromones, as well as signals from some predators 3, activate the vomeronasal sensory neurons (VSNs) with high levels of specificity and sensitivity 4. At least three distinct families of G-protein coupled receptors, V1R, V2R and FPR 5-14, are expressed in VNO neurons to mediate the detection of the chemosensory cues. To understand how pheromone information is encoded by the VNO, it is critical to analyze the response profiles of individual VSNs to various stimuli and identify the specific receptors that mediate these responses.The neuroepithelia of VNO are enclosed in a pair of vomer bones. The semi-blind tubular structure of VNO has one open end (the vomeronasal duct) connecting to the nasal cavity. VSNs extend their dendrites to the lumen part of the VNO, where the pheromone cues are in contact with the receptors expressed at the dendritic knobs. The cell bodies of the VSNs form pseudo-stratified layers with V1R and V2R expressed in the apical and basal layers respectively 6-8. Several techniques have been utilized to monitor responses of VSNs to sensory stimuli 4,12,15-19. Among these techniques, acute slice preparation offers several advantages. First, compared to dissociated VSNs 3,17, slice preparations maintain the neurons in their native morphology and the dendrites of the cells stay relatively intact. Second, the cell bodies of the VSNs are easily accessible in coronal slice of the VNO to allow electrophysiology studies and imaging experiments as compared to whole epithelium and whole-mount preparations 12,20. Third, this method can be combined with molecular cloning techniques to allow receptor identification.Sensory stimulation elicits strong Ca2+ influx in VSNs that is indicative of receptor activation 4,21. We thus develop transgenic mice that express G-CaMP2 in the olfactory sensory neurons, including the VSNs 15,22. The sensitivity and the genetic nature of the probe greatly facilitate Ca2+ imaging experiments. This method has eliminated the dye loading process used in previous studies 4,21. We also employ a ligand delivery system that enables application of various stimuli to the VNO slices. The combination of the two techniques allows us to monitor multiple neurons simultaneously in response to large numbers of stimuli. Finally, we have established a semi-automated analysis pipeline to assist image processing.
机译:犁鼻器(VNO)检测化学感应信号,该信号携带有关同一物种 1,2 内个体的社会,性和生殖状况的信息。这些种内信号,信息素以及来自某些掠食者 3 的信号以高水平的特异性和敏感性 4 激活了犁鼻感觉神经元(VSN)。 VNO神经元中至少表达三个不同的G蛋白偶联受体家族,即V1R,V2R和FPR 5-14 ,以介导化学感觉线索的检测。要了解VNO如何编码信息素,至关重要的是分析单个VSN对各种刺激的反应情况并确定介导这些反应的特定受体.VNO的神经上皮被包裹在一对犁骨中。 VNO的半盲管状结构具有一个连接到鼻腔的开口端(复鼻窦管)。 VSN将其树突延伸到VNO的管腔部分,其中信息素提示与在树突结处表达的受体接触。 VSN的细胞体形成伪分层,其中V1R和V2R分别在顶端和基底层中表达 6-8 。已经利用几种技术来监测VSN对感觉刺激的响应 4,12,15-19 。在这些技术中,急性切片制备具有几个优点。首先,与解离的VSNs 3,17 相比,切片制备物使神经元保持其天然形态,并且细胞的树突保持相对完整。其次,与整个上皮和整装制剂 12,20 相比,VSNs的细胞体很容易在VNO的冠状切片中进入,从而可以进行电生理研究和成像实验。第三,该方法可与分子克隆技术相结合以鉴定受体。感觉刺激在VSNs中引起强烈的Ca 2 + 大量涌入,表明受体激活 4,21 。因此,我们开发了在嗅觉感觉神经元中表达G-CaMP2的转基因小鼠,其中包括VSNs 15,22 。该探针的敏感性和遗传特性极大地促进了Ca 2 + 的成像实验。该方法消除了先前研究 4,21 中使用的染料加载过程。我们还采用了一种配体递送系统,能够对VNO切片施加各种刺激。两种技术的结合使我们能够响应大量刺激同时监视多个神经元。最后,我们建立了一个半自动化的分析管道来协助图像处理。

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