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自体荧光光谱学与成像:一种用于生物医学研究与诊断的工具。

Autofluorescence spectroscopy and imaging: a tool for biomedical research and diagnosis.

作者信息

Croce A C, Bottiroli G

机构信息

Institute of Molecular Genetics of the National Research Council, University of Pavia.

出版信息

Eur J Histochem. 2014 Dec 12;58(4):2461. doi: 10.4081/ejh.2014.2461.

Abstract

Native fluorescence, or autofluorescence (AF), consists in the emission of light in the UV-visible, near-IR spectral range when biological substrates are excited with light at suitable wavelength. This is a well-known phenomenon, and the strict relationship of many endogenous fluorophores with morphofunctional properties of the living systems, influencing their AF emission features, offers an extremely powerful resource for directly monitoring the biological substrate condition. Starting from the last century, the technological progresses in microscopy and spectrofluorometry were convoying attention of the scientific community to this phenomenon. In the future, the interest in the autofluorescence will certainly continue. Current instrumentation and analytical procedures will likely be overcome by the unceasing progress in new devices for AF detection and data interpretation, while a progress is expected in the search and characterization of endogenous fluorophores and their roles as intrinsic biomarkers.

摘要

天然荧光,即自发荧光(AF),是指当生物底物被合适波长的光激发时,在紫外 - 可见光、近红外光谱范围内发出的光。这是一个众所周知的现象,许多内源性荧光团与生命系统的形态功能特性之间存在着紧密的关系,影响着它们的自发荧光发射特征,这为直接监测生物底物状况提供了极其强大的资源。从上世纪开始,显微镜和荧光分光光度法的技术进步就吸引了科学界对这一现象的关注。未来,对自发荧光的兴趣肯定会持续下去。用于自发荧光检测和数据解读的新设备不断进步,可能会超越当前的仪器和分析程序,同时在内源性荧光团的寻找和表征及其作为内在生物标志物的作用方面有望取得进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dbd9/4289852/76a53351d105/ejh-2014-4-2461-g001.jpg

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