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Biological applications of fluorescence lifetime imaging beyond microscopy

机译:显微镜以外的荧光寿命成像的生物学应用

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Fluorescence lifetime is a relatively new contrast mechanism for optical imaging in living subjects that relies on intrinsic properties of fluorophores rather than concentration dependent intensity. Drawing upon the success of fluorescence lifetime imaging microscopy (FLIM) for investigation of protein-protein interactions and intracellular physiology, in vivo fluorescence lifetime imaging (FLI) promises to dramatically increase the utility of fluorescence-based imaging in preclinical and clinical applications. Intrinsic fluorescence lifetime measurements in living tissues can distinguish pathologies such as cancer from healthy tissue. Unfortunately, intrinsic FLT contrast is limited to superficial measurements. Conventional intensity-based agents have been reported for measuring these phenomena in vitro, but translation into living animals is difficult due to optical properties of tissues. For this reason, contrast agents that can be detected in the near infrared (NIR) wavelengths are being developed by our lab and others to enhance the capabilities of this modality. FLT is less affected by concentration and thus is better for detecting small changes in physiology, as long as sufficient fluorescence signal can be measured. FLT can also improve localization of signals for improved deep tissue imaging. Examples of the utility of exogenous contrast agents will be discussed, including applications in monitoring physiologic functions, controlled drug release and cancer biology. Instrumentation for FLI will also be discussed, including planar and diffuse optical imaging in time and frequency domains. Future applications will also be discussed that are being developed in this exciting field that complement other optical modalities.
机译:荧光寿命是一种相对较新的对比机制,适用于活体受试者的光学成像,该机制依赖于荧光团的固有特性,而不是依赖于浓度的强度。利用荧光寿命成像显微镜(FLIM)的成功进行蛋白质-蛋白质相互作用和细胞内生理学的研究,体内荧光寿命成像(FLI)有望大大提高基于荧光的成像在临床前和临床应用中的实用性。活体组织内在荧光寿命的测量可以区分病理学,例如癌症与健康组织。不幸的是,内在的FLT对比仅限于表面测量。已经报道了常规的基于强度的试剂用于在体外测量这些现象,但是由于组织的光学特性,很难翻译成活体动物。因此,我们的实验室和其他实验室正在开发可以在近红外(NIR)波长中检测到的造影剂,以增强这种功能。只要可以测量到足够的荧光信号,FLT受浓度的影响就较小,因此更适合检测生理的微小变化。 FLT还可以改善信号的定位,以改善深部组织成像。将讨论外源性造影剂效用的实例,包括在监测生理功能,控制药物释放和癌症生物学中的应用。还将讨论FLI的仪器,包括时域和频域的平面和漫射光学成像。还将讨论在这个令人兴奋的领域中正在开发的,与其他光学模态互补的未来应用。

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