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生物组织的非线性荧光寿命成像。

Non-linear fluorescence lifetime imaging of biological tissues.

机构信息

European Laboratory for Non-linear Spectroscopy, University of Florence, Sesto Fiorentino, Italy.

出版信息

Anal Bioanal Chem. 2011 Jul;400(9):2687-97. doi: 10.1007/s00216-011-4896-4. Epub 2011 Apr 1.

Abstract

In recent years fluorescence microscopy has become a widely used tool for tissue imaging and spectroscopy. Optical techniques, based on both linear and non-linear excitation, have been broadly applied to imaging and characterization of biological tissues. Among fluorescence techniques used in tissue imaging applications, in recent years two and three-photon excited fluorescence have gained increased importance because of their high-resolution deep tissue imaging capability inside optically turbid samples. The main limitation of steady-state fluorescence imaging techniques consists in providing only morphological information; functional information is not detectable without technical improvements. A spectroscopic approach, based on lifetime measurement of tissue fluorescence, can provide functional information about tissue conditions, including its environment, red-ox state, and pH, and hence physiological characterization of the tissue under investigation. Measurement of the fluorescence lifetime is a very important issue for characterizing a biological tissue. Deviation of this property from a control value can be taken as an indicator of disorder and/or malignancy in diseased tissues. Even if much work on this topic has still to be done, including the interpretation of fluorescence lifetime data, we believe that this methodology will gain increasing importance in the field of biophotonics. In this paper, we review methodologies, potentials and results obtained by using fluorescence lifetime imaging microscopy for the investigation of biological tissues.

摘要

近年来,荧光显微镜已成为组织成像和光谱学的常用工具。基于线性和非线性激发的光学技术已广泛应用于生物组织的成像和特性描述。在用于组织成像应用的荧光技术中,双光子和三光子激发荧光近年来因其在光学混浊样本中具有高分辨率的深层组织成像能力而得到了越来越多的重视。稳态荧光成像技术的主要局限性在于仅提供形态信息;如果没有技术改进,则无法检测到功能信息。基于组织荧光寿命测量的光谱方法可以提供有关组织状况的功能信息,包括其环境、氧化还原状态和 pH 值,从而对所研究的组织进行生理特征描述。测量荧光寿命是对生物组织进行特性描述的一个非常重要的问题。该特性与对照值的偏差可作为病变组织中无序和/或恶性的指标。即使在这个主题上还有很多工作要做,包括荧光寿命数据的解释,我们相信这种方法在生物光子学领域将越来越重要。本文综述了使用荧光寿命成像显微镜研究生物组织的方法、潜力和结果。

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