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在自由活动的动物中对深部组织进行单细胞生物发光成像。

Single-cell bioluminescence imaging of deep tissue in freely moving animals.

机构信息

Laboratory for Cell Function and Dynamics, Brain Science Institute, RIKEN, 2-1 Hirosawa, Wako-city, Saitama 351-0198, Japan.

Laboratory for Molecular Analysis of Higher Brain Function, Brain Science Institute, RIKEN, 2-1 Hirosawa, Wako-city, Saitama 351-0198, Japan.

出版信息

Science. 2018 Feb 23;359(6378):935-939. doi: 10.1126/science.aaq1067.

Abstract

Bioluminescence is a natural light source based on luciferase catalysis of its substrate luciferin. We performed directed evolution on firefly luciferase using a red-shifted and highly deliverable luciferin analog to establish AkaBLI, an all-engineered bioluminescence in vivo imaging system. AkaBLI produced emissions in vivo that were brighter by a factor of 100 to 1000 than conventional systems, allowing noninvasive visualization of single cells deep inside freely moving animals. Single tumorigenic cells trapped in the mouse lung vasculature could be visualized. In the mouse brain, genetic labeling with neural activity sensors allowed tracking of small clusters of hippocampal neurons activated by novel environments. In a marmoset, we recorded video-rate bioluminescence from neurons in the striatum, a deep brain area, for more than 1 year. AkaBLI is therefore a bioengineered light source to spur unprecedented scientific, medical, and industrial applications.

摘要

生物发光是一种基于荧光素酶催化其底物荧光素的自然光源。我们使用红移和高递药的荧光素类似物对萤火虫荧光素酶进行定向进化,建立了 AkaBLI,这是一种全工程化的活体生物发光体内成像系统。AkaBLI 在体内产生的发射光比传统系统亮 100 到 1000 倍,允许对自由移动动物体内的单个细胞进行非侵入性可视化。可以可视化被困在小鼠肺部血管中的单个肿瘤细胞。在小鼠大脑中,使用神经活动传感器进行基因标记,可以跟踪由新环境激活的海马神经元的小簇。在狨猴中,我们从深部脑区纹状体中的神经元记录了视频速率的生物发光,持续了 1 年以上。因此,AkaBLI 是一种生物工程化的光源,可以激发前所未有的科学、医学和工业应用。

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