Demchenko Alexander P
Palladin Institute of Biochemistry, Leontovicha st. 9, Kyiv 01030, Ukraine.
Yuriy Fedkovych National University, Chernivtsi, 58012, Ukraine.
Methods Appl Fluoresc. 2023 Apr 21;11(3). doi: 10.1088/2050-6120/acc714.
The wavelength-ratiometric techniques gain increasing popularity in fluorescence probing and sensing for providing inner reference to output signal and removing instrumental artefacts, in this way increasing the sensitivity and reliability of assays. Recent developments demonstrate that such approach can allow achieving much more, with the application of broad range of novel molecular and nanoscale fluorophores (luminophores), exploring the whole power of photophysical and photochemical effects and using extended range of assay formats. Simplicity of detection and potentially rich content of output data allows realizing these techniques in different simplified, miniaturized and multiplexing devices. The latter issues are discussed in Pt. II of these series.
波长比率技术在荧光探测和传感领域越来越受欢迎,因为它能为输出信号提供内部参考并消除仪器伪像,从而提高检测的灵敏度和可靠性。最近的进展表明,通过应用广泛的新型分子和纳米级荧光团(发光体),探索光物理和光化学效应的全部潜力,并使用扩展的检测形式范围,这种方法可以实现更多目标。检测的简单性和输出数据潜在的丰富内容使得这些技术能够在不同的简化、小型化和多路复用设备中实现。这些系列文章的第二部分将讨论后述问题。