Sugden J K
School of Pharmacy, De Montfort University, The Gateway, Leicester, UK.
Biotech Histochem. 2004 Apr;79(2):71-90. doi: 10.1080/10520290412331292400.
An overview of the basic principles of photochemistry is presented to facilitate discussion of fluorescence, quenching and quantum yields. These topics in turn provide the foundation for an account of fluorescence spectroscopy and its application to microscopy. A brief overview of light microscopy and the application of fluorescence microscopy is given. The influences of molecular features, such as aromatic character and substitution patterns, on color and fluorescence are described. The concept of color fading is considered with particular reference to its effect on microscopic preparations. A survey of representative fluorescent probes is provided, and their sensitivity, application, and limitations are described. The phototoxicity of fluorescent molecules is discussed using biomembranes and DNA as examples of targets of toxicity. Photodynamic therapy, a relatively new clinical application of phototoxicity, is described. Both anticancer and antimicrobial applications are noted, and an assessment is given of the current ideas on the ideal physicochemical properties of the sensitizing agents for such applications.
本文介绍了光化学的基本原理,以促进对荧光、猝灭和量子产率的讨论。这些主题又为荧光光谱及其在显微镜中的应用奠定了基础。简要概述了光学显微镜和荧光显微镜的应用。描述了分子特征(如芳香性和取代模式)对颜色和荧光的影响。特别考虑了褪色概念对显微制剂的影响。提供了代表性荧光探针的综述,并描述了它们的灵敏度、应用和局限性。以生物膜和DNA作为毒性靶点的例子,讨论了荧光分子的光毒性。描述了光动力疗法,这是一种相对较新的光毒性临床应用。同时提到了其抗癌和抗菌应用,并对用于此类应用的敏化剂的理想物理化学性质的当前观点进行了评估。