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Large Scale In Vivo Recording of Sensory Neuron Activity with GCaMP6

机译:使用GCaMP6进行大规模的感觉神经元活动的体内记录

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摘要

Greater emphasis on the study of intact cellular networks in their physiological environment has led to rapid advances in intravital imaging of the central nervous system (CNS), while the peripheral system remains largely unexplored. To assess large networks of sensory neurons, we selectively label primary afferents with GCaMP6s in male and female C57bl/6 mice and visualize their functional responses to peripheral stimulation in vivo. We show that we are able to monitor the activity of hundreds of sensory neurons simultaneously, with sufficient sensitivity to detect, in most cases, single action potentials with a typical rise time of around 200 ms, and an exponential decay with a time constant of approximately 700 ms. With this technique we are able to characterize the responses of large populations of sensory neurons to innocuous and noxious mechanical and thermal stimuli under normal and inflammatory conditions. We demonstrate that the majority of primary afferents are polymodal with between 50–80% of thermally sensitive DRG neurons responding also to noxious mechanical stimulation. We also specifically assess the small population of peripheral cold neurons and demonstrate significant sensitization to cooling after a model of sterile and persistent inflammation, with significantly increased sensitivity already at decreases of 5°C when compared to uninflamed responses. This not only reveals interesting new insights into the (patho)physiology of the peripheral nervous system but also demonstrates the sensitivity of this imaging technique to physiological changes in primary afferents.
机译:在生理环境中对完整细胞网络的研究更加重视,导致中枢神经系统(CNS)的活体内成像迅速发展,而外围系统仍未开发。为了评估感觉神经元的大型网络,我们在雄性和雌性C57bl / 6小鼠中用GCaMP6s选择性标记初级传入,并观察其对体内外周刺激的功能反应。我们证明了我们能够同时监视数百个感觉神经元的活动,并且具有足够的灵敏度来检测大多数情况下的单个动作电位,典型的上升时间约为200毫秒,而指数衰减的时间常数约为700毫秒借助这种技术,我们能够表征正常和炎症条件下,大量感觉神经元对无害和有害的机械和热刺激的反应。我们证明,大多数原发传入是多峰的,其中50-80%的热敏DRG神经元也对有害的机械刺激做出反应。我们还专门评估了少量的周围冷神经元,并证明了无菌和持续性炎症模型后对冷却的显着敏感性,与未炎症反应相比,在降低5°C时敏感性已经显着提高。这不仅揭示了对周围神经系统的(病理)生理学的有趣新见解,而且还证明了这种成像技术对原发传入生理变化的敏感性。

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