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Sonogenetics is a non-invasive approach to activating neurons in Caenorhabditis elegans

机译:超声产生是激活秀丽隐杆线虫神经元的非侵入性方法

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摘要

A major challenge in neuroscience is to reliably activate individual neurons, particularly those in deeper brain regions. Current optogenetic approaches require invasive surgical procedures to deliver light of specific wavelengths to target cells to activate or silence them. Here, we demonstrate the use of low-pressure ultrasound as a non-invasive trigger to activate specific ultrasonically sensitized neurons in the nematode, Caenorhabditis elegans. We first show that wild-type animals are insensitive to low-pressure ultrasound and require gas-filled microbubbles to transduce the ultrasound wave. We find that neuron-specific misexpression of TRP-4, the pore-forming subunit of a mechanotransduction channel, sensitizes neurons to ultrasound stimulus, resulting in behavioural outputs. Furthermore, we use this approach to manipulate the function of sensory neurons and interneurons and identify a role for PVD sensory neurons in modifying locomotory behaviours. We suggest that this method can be broadly applied to manipulate cellular functions in vivo.
机译:神经科学的主要挑战是可靠地激活单个神经元,尤其是大脑深部区域的神经元。当前的光遗传学方法需要侵入性外科手术以将特定波长的光传递至靶细胞以激活或沉默它们。在这里,我们演示了使用低压超声作为非侵入性触发来激活线虫秀丽隐杆线虫中特定的超声敏感神经元。我们首先显示野生型动物对低压超声波不敏感,并且需要充气微气泡来转换超声波。我们发现,神经元特异性TRP-4的错误表达是机械传导通道的成孔亚基,它使神经元对超声刺激敏感,从而产生行为输出。此外,我们使用这种方法来操纵感觉神经元和中间神经元的功能,并确定PVD感觉神经元在改变机体行为中的作用。我们建议这种方法可以广泛应用于体内操纵细胞功能。

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