Forde Toni S, Hanley Quentin S
Department of Molecular and Cellular Biology, University of Guelph, Guelph, ON, Canada N1G 2W1.
Appl Spectrosc. 2006 Dec;60(12):1442-52. doi: 10.1366/000370206779321544.
Complex systems of fluorophores undergoing energy transfer can exhibit a variety of anomalous lifetime behavior when probed with frequency domain methods. When presented in traditional apparent lifetime format the data from such systems can exhibit "nodal" behavior in which the computed lifetime approaches +/-infinity. The location of the nodes is system and frequency dependent. In addition, simpler systems, not undergoing energy transfer, show ill behavior in the region of zero lifetime (tau(m)) and long lifetime (tau(pi)) due to noise in typical measurements. Here, we systematically investigate systems of multiple fluorophores with and without energy transfer to provide insight into frequency domain investigations of complex systems of fluorophores. The results of simulations are compared to data collected from a multi-fluorophore system designed to exhibit fluorescence resonance energy transfer (FRET) using imaging spectroscopic fluorescence lifetime imaging microscopy (ISFLIM). The results are applicable to both cuvette and imaging arrangements.
当用频域方法探测时,经历能量转移的复杂荧光团系统可能会表现出各种异常的寿命行为。当以传统的表观寿命形式呈现时,来自此类系统的数据可能会表现出“节点”行为,即计算出的寿命接近正无穷或负无穷。节点的位置取决于系统和频率。此外,由于典型测量中的噪声,未经历能量转移的较简单系统在零寿命(τm)和长寿命(τπ)区域会表现出不良行为。在这里,我们系统地研究了有能量转移和无能量转移的多个荧光团系统,以深入了解荧光团复杂系统的频域研究。将模拟结果与使用成像光谱荧光寿命成像显微镜(ISFLIM)设计用于表现荧光共振能量转移(FRET)的多荧光团系统收集的数据进行比较。结果适用于比色皿和成像装置。