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Near-infrared bioluminescent proteins for two-color multimodal imaging

机译:近红外生物发光蛋白用于双色多峰成像

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摘要

Bioluminescence imaging became a widely used technique for noninvasive study of biological processes in small animals. Bioluminescent probes with emission in near-infrared (NIR) spectral region confer the advantage of having deep tissue penetration capacity. However, there are a very limited number of currently available luciferases that exhibit NIR bioluminescence. Here, we engineered two novel chimeric probes based on RLuc8 luciferase fused with iRFP670 and iRFP720 NIR fluorescent proteins. Due to an intramolecular bioluminescence resonance energy transfer (BRET) between RLuc8 and iRFPs, the chimeric luciferases exhibit NIR bioluminescence with maxima at 670 nm and 720 nm, respectively. The 50 nm spectral shift between emissions of the two iRFP chimeras enables combined multicolor bioluminescence imaging (BLI) and the respective multicolor fluorescence imaging (FLI) of the iRFPs. We show that for subcutaneously implanted cells, NIR bioluminescence provided a 10-fold increase in sensitivity compared to NIR FLI. In deep tissues, NIR BLI enabled detection of as low as 104 cells. Both BLI and FLI allowed monitoring of tumor growth and metastasis from early to late stages. Multimodal imaging, which combines concurrent BLI and FLI, provides continuous spatiotemporal analysis of metastatic cells in animals, including their localization and quantification.
机译:生物发光成像已成为非侵入性研究小型动物生物过程的一种广泛使用的技术。具有近红外(NIR)光谱区域发射光的生物发光探针具有组织穿透能力强的优点。但是,目前显示NIR生物发光的荧光素酶数量非常有限。在这里,我们设计了两种基于融合有iRFP670和iRFP720 NIR荧光蛋白的RLuc8荧光素酶的新型嵌合探针。由于RLuc8和iRFP之间的分子内生物发光共振能量转移(BRET),嵌合荧光素酶显示出NIR生物发光,最大值分别在670nm和720nm处。两种iRFP嵌合体发射之间的50 nm光谱位移可实现iRFP的组合多色生物发光成像(BLI)和相应的多色荧光成像(FLI)。我们显示,对于皮下植入的细胞,NIR生物发光与NIR FLI相比提供了10倍的灵敏度提高。在深层组织中,NIR BLI可以检测低至10 4 个细胞。 BLI和FLI都允许从早期到晚期监测肿瘤的生长和转移。多模式成像结合了并发的BLI和FLI,可对动物中的转移细胞进行连续的时空分析,包括其定位和定量。

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