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Multicontrast photoacoustic in vivo imaging using near-infrared fluorescent proteins

机译:使用近红外荧光蛋白的多对比度光声体内成像

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摘要

Non-invasive imaging of biological processes in vivo is invaluable in advancing biology. Photoacoustic tomography is a scalable imaging technique that provides higher resolution at greater depths in tissue than achievable by purely optical methods. Here we report the application of two spectrally distinct near-infrared fluorescent proteins, iRFP670 and iRFP720, engineered from bacterial phytochromes, as photoacoustic contrast agents. iRFPs provide tissue-specific contrast without the need for delivery of any additional substances. Compared to conventional GFP-like red-shifted fluorescent proteins, iRFP670 and iRFP720 demonstrate stronger photoacoustic signals at longer wavelengths, and can be spectrally resolved from each other and hemoglobin. We simultaneously visualized two differently labeled tumors, one with iRFP670 and the other with iRFP720, as well as blood vessels. We acquired images of a mouse as 2D sections of a whole animal, and as localized 3D volumetric images with high contrast and sub-millimeter resolution at depths up to 8 mm. Our results suggest iRFPs are genetically-encoded probes of choice for simultaneous photoacoustic imaging of several tissues or processes in vivo.
机译:体内生物学过程的非侵入性成像在推进生物学方面是无价的。光声层析成像是一种可扩展的成像技术,与纯光学方法相比,该技术可在更大的组织深度中提供更高的分辨率。在这里,我们报告了从细菌植物色素改造而成的两种光谱不同的近红外荧光蛋白iRFP670和iRFP720作为光声造影剂的应用。 iRFP可提供组织特异性的对比,而无需输送任何其他物质。与传统的类似GFP的红移荧光蛋白相比,iRFP670和iRFP720在更长的波长处显示出更强的光声信号,并且可以彼此和血红蛋白进行光谱分辨。我们同时可视化了两种不同标记的肿瘤,一种是iRFP670,另一种是iRFP720,还有血管。我们获得了作为整个动物的2D切片的鼠标图像,以及在高达8mm的深度处具有高对比度和亚毫米分辨率的局部3D体积图像。我们的结果表明,iRFPs是用于体内多个组织或过程同时进行光声成像的首选基因编码探针。

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