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Development of a novel optogenetic indicator based on cellular deformations for mapping optogenetic activities

机译:基于小说optogenetic指标的发展为映射optogenetic细胞变形活动

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Optogenetic techniques have changed the landscape of neuroscience by offering high temporal and spatial mapping of the activities of genetically defined population of cells with optical controlling tools. The mapping of optogenetic activities demands optogenetic indicators whose optical properties change in response to cellular activities, but the existing optogenetic indicators only specifically characterize limited optogenetic activities. Here, we propose a novel optogenetic indicator based on cellular deformation to characterize the activities of optogenetically engineered cells. The cellular activities triggered by light stimulation lead to changes in the cell membrane structure and result in cellular deformation, which is measured by atomic force microscopy. The deformation recordings of the cells expressing channelrhodopsin-2 (ChR2) and the corresponding control experiments together confirm that the deformation is generated generally when the cells are exposed to light, which is also validated indirectly via the change in the Young's modulus of the cells before and after absorption of photons. The activities of cells expressing different subtypes of opsins were also recorded using the optogenetic indicator of cellular deformation. This study provides a novel and general optogenetic indicator based on cellular deformation for monitoring the activities of optogenetically engineered cells. Moreover, this new optogenetic indicator offers ever-better tools for the applications of optogenetic activity mapping and neural and brain imaging.
机译:Optogenetic技术已经改变了格局通过提供高时间和神经科学空间映射的基因的活动定义与光的细胞控制工具。活动要求optogenetic指标的光学性质变化对细胞的反应活动,但现有的optogenetic指标只专门描述有限optogenetic活动。基于细胞optogenetic指示器变形特点的活动optogenetically工程细胞。导致活动引发的光刺激细胞膜结构的变化和结果在细胞变形测量原子力显微镜。细胞表达的录音名为“(ChR2)和相应的控制实验一起确认变形时,通常会生成细胞暴露在光,也验证了吗间接地通过杨氏模量的变化之前和之后的细胞吸收光子。不同亚型的视蛋白也被记录下来手机的使用optogenetic指标变形。基于细胞一般optogenetic指示器变形监测的活动optogenetically工程细胞。新optogenetic指标提供了更好optogenetic的应用工具活动映射和神经和大脑成像。

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