Bitton Aric, Sambrano Jesus, Valentino Samantha, Houston Jessica P
Department of Chemical and Materials Engineering, New Mexico State University, Las Cruces, NM, United States.
Front Phys. 2021 Apr;9. doi: 10.3389/fphy.2021.648553. Epub 2021 Apr 26.
Though much of the interest in fluorescence in the past has been on measuring spectral qualities such as wavelength and intensity, there are two other highly useful intrinsic properties of fluorescence: lifetime (or decay) and anisotropy (or polarization). Each has its own set of unique advantages, limitations, and challenges in detection when it comes to use in biological studies. This review will focus on the property of fluorescence lifetime, providing a brief background on instrumentation and theory, and examine the recent advancements and applications of measuring lifetime in the fields of high-throughput fluorescence lifetime imaging microscopy (HT-FLIM) and time-resolved flow cytometry (TRFC). In addition, the crossover of these two methods and their outlooks will be discussed.
尽管过去对荧光的许多研究兴趣都集中在测量诸如波长和强度等光谱特性上,但荧光还有另外两个非常有用的固有特性:寿命(或衰减)和各向异性(或偏振)。在用于生物学研究时,每种特性在检测方面都有其独特的优势、局限性和挑战。本综述将聚焦于荧光寿命特性,简要介绍仪器和理论背景,并探讨在高通量荧光寿命成像显微镜(HT - FLIM)和时间分辨流式细胞术(TRFC)领域测量寿命的最新进展和应用。此外,还将讨论这两种方法的交叉点及其前景。