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Bioluminescence imaging of Arc expression enables detection of activity-dependent and plastic changes in the visual cortex of adult mice

机译:Arc表达的生物发光成像可检测成年小鼠视皮层中的活动依赖性和塑性变化

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Induction of the activity-regulated cytoskeleton-associated protein gene (Arc), one of the immediate early genes, in the brain correlates with various sensory processes, natural behaviors, and pathological conditions. Arc is also involved in synaptic plasticity during development. Thus, in vivo monitoring of Arc expression is useful for the analysis of physiological and pathological conditions in the brain. Recently, in vivo imaging of Arc expression using various green fluorescent protein-based probes has been reported; however, these probes can only be applied for the detection of fluorescence signals from superficial layers of the cortex with some autofluorescence noise. Here, we generated a novel transgenic mouse strain to monitor the neuronal-activity-dependent Arc expression using bioluminescence signals in vivo. Because of the very high sensitivity with a high signal-to-noise ratio, we detected neuronal-activity-dependent plastic changes in the bioluminescence signal intensity in the mouse visual cortex after visual deprivation, suggesting structural plasticity after peripheral lesions in adults. We also detected drastic changes in bioluminescence signals after seizure induction with kainic acid. Our novel mouse strain will be valuable for the continuous monitoring of neuronal-activity-dependent Arc expression in the brain under physiological and pathological conditions.
机译:大脑中最直接的早期基因之一,即活动调节的细胞骨架相关蛋白基因(Arc)的诱导与各种感觉过程,自然行为和病理状况相关。 Arc在开发过程中也参与突触可塑性。因此,体内对Arc表达的监测可用于分析大脑的生理和病理状况。近来,已经报道了使用各种基于绿色荧光蛋白的探针对Arc表达的体内成像;但是,这些探针只能用于检测来自皮质表层的荧光信号,并带有一些自发荧光噪声。在这里,我们生成了一种新型的转基因小鼠品系,以利用体内的生物发光信号来监测依赖神经元活性的Arc表达。由于具有很高的信噪比的极高灵敏度,我们在视觉剥夺后检测到小鼠视皮层中生物发光信号强度的神经活动依赖性塑料变化,提示成年外围病变后结构可塑性。我们还检测到海藻酸诱发癫痫发作后生物发光信号的急剧变化。我们的新型小鼠品系对于在生理和病理条件下连续监测大脑中神经元活性依赖性Arc表达将具有重要价值。

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