All‐optical functional synaptic connectivity mapping in acute brain slices using the calcium integrator CaMPARI

Timothy A Zolnik, Fern Sha, F. W. Johenning, E. Schreiter, L. Looger, M. Larkum, R. Sachdev
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引用次数: 27

Abstract

The genetically encoded fluorescent calcium integrator calcium‐modulated photoactivatable ratiobetric integrator (CaMPARI) reports calcium influx induced by synaptic and neural activity. Its fluorescence is converted from green to red in the presence of violet light and calcium. The rate of conversion – the sensitivity to activity – is tunable and depends on the intensity of violet light. Synaptic activity and action potentials can independently initiate significant CaMPARI conversion. The level of conversion by subthreshold synaptic inputs is correlated to the strength of input, enabling optical readout of relative synaptic strength. When combined with optogenetic activation of defined presynaptic neurons, CaMPARI provides an all‐optical method to map synaptic connectivity.
利用钙整合子CaMPARI在急性脑切片中绘制全光学功能突触连接图谱
基因编码的荧光钙积分器钙调制光激活比率积分器(CaMPARI)报告了由突触和神经活动诱导的钙内流。它的荧光在紫光和钙的作用下由绿色变为红色。转化率——对活性的敏感度——是可调的,取决于紫光的强度。突触活性和动作电位可以独立启动显著的CaMPARI转换。阈下突触输入的转换水平与输入的强度相关,从而实现相对突触强度的光学读出。当CaMPARI结合光遗传学激活定义的突触前神经元时,CaMPARI提供了一种全光学方法来绘制突触连接。
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