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Light-addressed single-neuron stimulation in dissociated neuronal cultures with sparse expression of ChR2

机译:ChR2稀疏表达在解离的神经元文化中的光寻址单神经元刺激

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摘要

Individual neurons are heterogeneous and have profound impact on population activity in a complex cortical network. Precise experimental control of the firing of multiple neurons would be therefore beneficial to advance our understanding of cell-network interactions. Except for direct intracellular stimulation, however, it is difficult to gain precise control of targeted neurons without inducing antidromic activation of untargeted neurons. To overcome this problem, we attempt to create a sparse group of photosensitized neurons via transfection of Channelrhodopsin-2 (ChR2) in primary dissociated cultures and then deliver light-addressed stimulation exclusively to these target neurons. We first show that liposome transfection was able to express ChR2 in 0.3-1.9% of cells plated depending on cell density. This spatially sparse but robust expression in our neuronal cultures offered the capability of single cell activation by illuminating a spot of light. We then demonstrated that delivering a pulsed train to photo-activate a single neuron had a substantial effect on the activity level of an entire neuronal culture. Furthermore, the activity level was controllable by altering the frequency of light illumination when 4 neurons were recruited as stimulation targets. These results suggest that organized activation of a very small population of neurons can provide better control over global activity of neuronal circuits than can single-neuron activities by themselves.
机译:单个神经元是异质的,对复杂的皮质网络中的种群活动具有深远的影响。因此,对多个神经元放电的精确实验控制将有利于增进我们对细胞网络相互作用的理解。但是,除了直接的细胞内刺激之外,很难在不诱导未靶向神经元的抗皮肤激活的情况下获得对靶向神经元的精确控制。为了克服这个问题,我们尝试通过在初级解离的培养物中转染Channelrhodopsin-2(ChR2)来创建一组稀疏的光敏神经元,然后将光寻址的刺激专门传递给这些目标神经元。我们首先显示脂质体转染能够根据细胞密度在0.3-1.9%的铺板细胞中表达ChR2。在我们的神经元文化中,这种空间稀疏但稳定的表达通过照射光点提供了单细胞激活的能力。然后,我们证明了提供脉冲火车来光激活单个神经元对整个神经元文化的活动水平具有重大影响。此外,当募集4个神经元作为刺激目标时,可以通过改变光照频率来控制活动水平。这些结果表明,与单个神经元自身活动相比,对非常少量的神经元进行有组织的激活可以更好地控制神经元回路的整体活动。

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