Pierce Daniel R, Nichols Zach, Cunningham Clifton, Villaver Sean Avryl, Bajwah Abdullah, Oluwarotimi Samuel, Halaa Herbert, Geddes Chris D
Department of Chemistry and Biochemistry, Institute of Fluorescence, University of Maryland, Baltimore County, 701 E Pratt St, Baltimore, MD 21202, USA.
Sensors (Basel). 2024 Dec 14;24(24):7985. doi: 10.3390/s24247985.
We report on the detection and quantification of aqueous DNA by a fluorophore-induced plasmonic current (FIPC) sensing method. FIPC is a mechanism described by our group in the literature where a fluorophore in close proximity to a plasmonically active metal nanoparticle film (MNF) is able to couple with it, when in an excited state. This coupling produces enhanced fluorescent intensity from the fluorophore-MNF complex, and if conditions are met, a current is generated in the film that is intrinsically linked to the properties of the fluorophore in the complex. The magnitude of this induced current is related to the spectral properties of the film, the overlap between these film properties and those of the fluorophore, the spacing between the nanoparticles in the film, the excitation wavelength, and the polarization of the excitation source. Recent literature has shown that the FIPC system is ideal for aqueous ion sensing using fluorescent probes, and in this paper, we subsequently examine if it is possible to detect aqueous DNA also via a fluorescent probe, as well as other commercially available DNA detection strategies. We report the effects of DNA concentration, probe concentration, and probe characteristics on the development of an FIPC assay for the detection of non-specific DNA in aqueous solutions.
我们报道了一种通过荧光团诱导等离子体电流(FIPC)传感方法对水溶液中的DNA进行检测和定量的研究。FIPC是我们小组在文献中描述的一种机制,即当荧光团处于激发态时,靠近等离子体活性金属纳米颗粒薄膜(MNF)的荧光团能够与其耦合。这种耦合会使荧光团-MNF复合物的荧光强度增强,如果条件满足,薄膜中会产生与复合物中荧光团性质内在相关的电流。这种感应电流的大小与薄膜的光谱性质、这些薄膜性质与荧光团性质的重叠、薄膜中纳米颗粒之间的间距、激发波长以及激发源的偏振有关。最近的文献表明,FIPC系统对于使用荧光探针检测水溶液中的离子非常理想,在本文中,我们随后研究是否也可以通过荧光探针检测水溶液中的DNA,以及其他市售的DNA检测策略。我们报告了DNA浓度、探针浓度和探针特性对用于检测水溶液中非特异性DNA的FIPC分析方法发展的影响。