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Multicolour In Vivo Bioluminescence Imaging Using a NanoLuc‐Based BRET Reporter in Combination with Firefly Luciferase

机译:使用基于NanoLuc的BRET报告基因和萤火虫荧光素酶的多色体内生物发光成像

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The ability to track the biodistribution and fate of multiple cell populations administered to rodents has the potential to facilitate the understanding of biological processes in a range of fields including regenerative medicine, oncology, and host/pathogen interactions. Bioluminescence imaging is an important tool for achieving this goal, but current protocols rely on systems that have poor sensitivity or require spectral decomposition. Here, we show that a bioluminescence resonance energy transfer reporter (BRET) based on NanoLuc and LSSmOrange in combination with firefly luciferase enables the unambiguous discrimination of two cell populations in vivo with high sensitivity. We insert each of these reporter genes into cells using lentiviral vectors and demonstrate the ability to monitor the cells’ biodistribution under a wide range of administration conditions, including the venous or arterial route, and in different tissues including the brain, liver, kidneys, and tumours. Our protocol allows for the imaging of two cell populations in the same imaging session, facilitating the overlay of the signals and the identification of anatomical positions where they colocalise. Finally, we provide a method for postmortem confirmation of the presence of each cell population in excised organs.
机译:跟踪对啮齿动物施用的多个细胞群体的生物分布和命运的能力具有促进人们理解包括再生医学,肿瘤学和宿主/病原体相互作用在内的一系列领域中生物学过程的潜力。生物发光成像是实现该目标的重要工具,但是当前协议依赖于灵敏度低或需要光谱分解的系统。在这里,我们显示基于NanoLuc和LSSmOrange与萤火虫荧光素酶结合的生物发光共振能量转移报道分子(BRET)能够以高灵敏度明确区分体内的两个细胞群。我们使用慢病毒载体将这些报告基因的每一个插入细胞,并展示了在广泛的给药条件下(包括静脉或动脉途径)以及在不同组织(包括脑,肝,肾和脑)中监测细胞生物分布的能力。肿瘤。我们的协议允许在同一成像会话中对两个细胞群体进行成像,从而便于信号叠加和识别它们共处的解剖位置。最后,我们提供了一种用于尸体切除后每个细胞群体存在的事后确认的方法。

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