Ramanujam N
Department of Biochemistry and Biophysics, University of Pennsylvania, Philadelphia 19104, USA.
Neoplasia. 2000 Jan-Apr;2(1-2):89-117. doi: 10.1038/sj.neo.7900077.
Fast and non-invasive, diagnostic techniques based on fluorescence spectroscopy have the potential to link the biochemical and morphologic properties of tissues to individual patient care. One of the most widely explored applications of fluorescence spectroscopy is the detection of endoscopically invisible, early neoplastic growth in epithelial tissue sites. Currently, there are no effective diagnostic techniques for these early tissue transformations. If fluorescence spectroscopy can be applied successfully as a diagnostic technique in this clinical context, it may increase the potential for curative treatment, and thus, reduce complications and health care costs. Steady-state, fluorescence measurements from small tissue regions as well as relatively large tissue fields have been performed. To a much lesser extent, time-resolved, fluorescence measurements have also been explored for tissue characterization. Furthermore, sources of both intrinsic (endogenous fluorophores) and extrinsic fluorescence (exogenous fluorophores) have been considered. The goal of the current report is to provide a comprehensive review on steady-state and time-resolved, fluorescence measurements of neoplastic and non-neoplastic, biologic systems of varying degrees of complexity. First, the principles and methodology of fluorescence spectroscopy are discussed. Next, the endogenous fluorescence properties of cells, frozen tissue sections and excised and intact bulk tissues are presented; fluorescence measurements from both animal and human tissue models are discussed. This is concluded with future perspectives.
基于荧光光谱的诊断技术快速且无创,有潜力将组织的生化和形态学特性与个体患者护理联系起来。荧光光谱最广泛探索的应用之一是检测上皮组织部位内镜下不可见的早期肿瘤生长。目前,对于这些早期组织转变尚无有效的诊断技术。如果荧光光谱能够在这种临床背景下成功应用于诊断技术,它可能会增加治愈性治疗的可能性,从而减少并发症和医疗保健成本。已经对小组织区域以及相对较大组织区域进行了稳态荧光测量。在小得多的程度上,也探索了时间分辨荧光测量用于组织表征。此外,还考虑了内源性(内源性荧光团)和外源性荧光(外源性荧光团)的来源。本报告的目的是对不同复杂程度的肿瘤和非肿瘤生物系统的稳态和时间分辨荧光测量进行全面综述。首先,讨论荧光光谱的原理和方法。接下来,介绍细胞、冷冻组织切片以及切除的完整大块组织的内源性荧光特性;讨论了来自动物和人体组织模型的荧光测量。最后展望未来。