Kurabayashi Tomokazu, Funaki Nayuta, Fukuda Takeshi, Akiyama Shinnosuke, Suzuki Miho
Department of Functional Materials Science, Saitama University.
Anal Sci. 2014;30(5):545-50. doi: 10.2116/analsci.30.545.
Dual pH-dependent fluorescence peaks from a semiconductor quantum dot (QD) and a pH-dependent fluorescent dye can be measured by irradiating with a single wavelength light, and the pH can be estimated from the ratio of the fluorescent intensity of the two peaks. In this work, ratiometric pH sensing was achieved in an aqueous environment by a fluorescent CdSe/ZnS QD appended with a pH-sensitive organic dye, based on fluorescence resonance energy transfer (FRET). By functionalizing the CdSe/ZnS QD with 5-(and 6)-carboxynaphthofluorescein succinimidyl ester as a pH-dependent fluorescent dye, we succeeded in fabricating sensitive nanocomplexes with a linear response to a broad range of physiological pH levels (7.5-9.5) when excited at 450 nm. We found that a purification process is important for increasing the high-fluorescence intensity ratio of a ratiometric fluorescence pH-sensor, and the fluorescence intensity ratio was improved up to 1.0 at pH 8.0 after the purification process to remove unreacted CdSe/ZnS QDs even though the fluorescence of the dye could not be observed without the purification process. The fluorescence intensity ratio corresponds to the fluorescence intensity of the dye, and this fluorescent dye exhibited pH-dependent fluorescence intensity changes. These facts indicate that the fluorescence intensity ratio linearly increased with increasing pH value of the buffer solution containing the QD and the dye. The FRET efficiencies changed from 0.3 (pH 7.5) to 6.2 (pH 9.5).
通过用单一波长的光照射,可以测量半导体量子点(QD)的双pH依赖性荧光峰和pH依赖性荧光染料,并且可以根据两个峰的荧光强度之比估算pH值。在这项工作中,基于荧光共振能量转移(FRET),通过将pH敏感有机染料附加到荧光CdSe/ZnS量子点上,在水性环境中实现了比率型pH传感。通过用5-(和6)-羧基萘荧光素琥珀酰亚胺酯作为pH依赖性荧光染料对CdSe/ZnS量子点进行功能化,我们成功制备了在450nm激发下对广泛的生理pH水平(7.5-9.5)具有线性响应的灵敏纳米复合物。我们发现纯化过程对于提高比率型荧光pH传感器的高荧光强度比很重要,并且在纯化过程以去除未反应的CdSe/ZnS量子点后,在pH 8.0时荧光强度比提高到了1.0,尽管在没有纯化过程的情况下无法观察到染料的荧光。荧光强度比对应于染料的荧光强度,并且这种荧光染料表现出pH依赖性的荧光强度变化。这些事实表明,荧光强度比随着含有量子点和染料的缓冲溶液pH值的增加而线性增加。FRET效率从0.3(pH 7.5)变为6.2(pH 9.5)。