Zhang Ming, Chakraborty Subhasish K, Sampath Padma, Rojas Juan J, Hou Weizhou, Saurabh Saumya, Thorne Steve H, Bruchez Marcel P, Waggoner Alan S
J Clin Invest. 2015 Oct 1;125(10):3915-27. doi: 10.1172/JCI81086. Epub 2015 Sep 8.
Optical imaging of whole, living animals has proven to be a powerful tool in multiple areas of preclinical research and has allowed noninvasive monitoring of immune responses, tumor and pathogen growth, and treatment responses in longitudinal studies. However, fluorescence-based studies in animals are challenging because tissue absorbs and autofluoresces strongly in the visible light spectrum. These optical properties drive development and use of fluorescent labels that absorb and emit at longer wavelengths. Here, we present a far-red absorbing fluoromodule-based reporter/probe system and show that this system can be used for imaging in living mice. The probe we developed is a fluorogenic dye called SC1 that is dark in solution but highly fluorescent when bound to its cognate reporter, Mars1. The reporter/probe complex, or fluoromodule, produced peak emission near 730 nm. Mars1 was able to bind a variety of structurally similar probes that differ in color and membrane permeability. We demonstrated that a tool kit of multiple probes can be used to label extracellular and intracellular reporter-tagged receptor pools with 2 colors. Imaging studies may benefit from this far-red excited reporter/probe system, which features tight coupling between probe fluorescence and reporter binding and offers the option of using an expandable family of fluorogenic probes with a single reporter gene.
对完整的活体动物进行光学成像已被证明是临床前研究多个领域中的一种强大工具,并且在纵向研究中能够对免疫反应、肿瘤和病原体生长以及治疗反应进行无创监测。然而,在动物中进行基于荧光的研究具有挑战性,因为组织在可见光谱中会强烈吸收并产生自发荧光。这些光学特性推动了在更长波长处吸收和发射的荧光标记物的开发与应用。在此,我们展示了一种基于远红光吸收荧光模块的报告基因/探针系统,并表明该系统可用于活体小鼠成像。我们开发的探针是一种名为SC1的荧光染料,其在溶液中呈暗色,但与同源报告基因Mars1结合时具有高荧光性。报告基因/探针复合物,即荧光模块,在730 nm附近产生峰值发射。Mars1能够结合多种在颜色和膜通透性方面不同的结构相似的探针。我们证明,一套包含多种探针的工具包可用于用两种颜色标记细胞外和细胞内报告基因标记的受体池。成像研究可能会受益于这种远红光激发的报告基因/探针系统,该系统的特点是探针荧光与报告基因结合紧密耦合,并提供了使用具有单个报告基因的可扩展荧光探针家族的选择。