Cheng Bingbing, Bandi Venugopal, Yu Shuai, D'Souza Francis, Nguyen Kytai T, Hong Yi, Tang Liping, Yuan Baohong
Ultrasound and Optical Imaging Laboratory, Department of Bioengineering, The University of Texas at Arlington, Arlington, TX 76019, USA.
Joint Biomedical Engineering Program, The University of Texas at Arlington and The University of Texas Southwestern Medical Center at Dallas, Dallas, TX 75390, USA.
Int J Mol Sci. 2017 Feb 11;18(2):384. doi: 10.3390/ijms18020384.
Highly environment-sensitive fluorophores have been desired for many biomedical applications. Because of the noninvasive operation, high sensitivity, and high specificity to the microenvironment change, they can be used as excellent probes for fluorescence sensing/imaging, cell tracking/imaging, molecular imaging for cancer, and so on (i.e., polarity, viscosity, temperature, or pH measurement). In this work, investigations of the switching mechanism of a recently reported near-infrared environment-sensitive fluorophore, ADP(CA)₂, were conducted. Besides, multiple potential biomedical applications of this switchable fluorescent probe have been demonstrated, including wash-free live-cell fluorescence imaging, in vivo tissue fluorescence imaging, temperature sensing, and ultrasound-switchable fluorescence (USF) imaging. The fluorescence of the ADP(CA)₂ is extremely sensitive to the microenvironment, especially polarity and viscosity. Our investigations showed that the fluorescence of ADP(CA)₂ can be switched on by low polarity, high viscosity, or the presence of protein and surfactants. In wash-free live-cell imaging, the fluorescence of ADP(CA)₂ inside cells was found much brighter than the dye-containing medium and was retained for at least two days. In all of the fluorescence imaging applications conducted in this study, high target-to-noise (>5-fold) was achieved. In addition, a high temperature sensitivity (73-fold per Celsius degree) of ADP(CA)₂-based temperature probes was found in temperature sensing.
许多生物医学应用都需要高度环境敏感的荧光团。由于其无创操作、高灵敏度以及对微环境变化的高特异性,它们可用作荧光传感/成像、细胞追踪/成像、癌症分子成像等方面的优秀探针(即用于测量极性、粘度、温度或pH值)。在这项工作中,我们对最近报道的一种近红外环境敏感荧光团ADP(CA)₂的开关机制进行了研究。此外,还展示了这种可切换荧光探针的多种潜在生物医学应用,包括免洗活细胞荧光成像、体内组织荧光成像、温度传感以及超声可切换荧光(USF)成像。ADP(CA)₂的荧光对微环境极其敏感,尤其是极性和粘度。我们的研究表明,ADP(CA)₂的荧光可以通过低极性、高粘度或蛋白质和表面活性剂的存在而开启。在免洗活细胞成像中,发现细胞内ADP(CA)₂的荧光比含染料的培养基亮得多,并且至少保留了两天。在本研究进行的所有荧光成像应用中,均实现了高信噪比(>5倍)。此外,在温度传感中发现基于ADP(CA)₂的温度探针具有高温度敏感性(每摄氏度73倍)。