Fluorescence spectroscopy of neoplastic and non-neoplastic tissues

被引:554
作者
Ramanujam, N [1 ]
机构
[1] Univ Penn, Dept Biochem & Biophys, Philadelphia, PA 19104 USA
来源
NEOPLASIA | 2000年 / 2卷 / 1-2期
关键词
fluorescence spectroscopy; cell; tissue; in vivo; neoplasia;
D O I
10.1038/sj.neo.7900077
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
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 ton 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.
引用
收藏
页码:89 / 117
页数:31
相关论文
共 148 条
  • [31] 2-Q
  • [32] Chwirot BW, 1999, PHOTOCHEM PHOTOBIOL, V69, P336, DOI 10.1562/0031-8655(1999)069<0336:DOCMLB>2.3.CO
  • [33] 2
  • [34] Detection of melanomas by digital imaging of spectrally resolved ultraviolet light-induced autofluorescence of human skin
    Chwirot, BW
    Chwirot, S
    Redzinski, J
    Michniewicz, Z
    [J]. EUROPEAN JOURNAL OF CANCER, 1998, 34 (11) : 1730 - 1734
  • [35] Detection of dysplasia at colonoscopy using laser-induced fluorescence: A blinded study
    Cothren, RM
    Sivak, MV
    VanDam, J
    Petras, RE
    Fitzmaurice, M
    Crawford, JM
    Wu, J
    Brennan, JF
    Rava, RP
    Manoharan, R
    Feld, MS
    [J]. GASTROINTESTINAL ENDOSCOPY, 1996, 44 (02) : 168 - 176
  • [36] GASTROINTESTINAL TISSUE DIAGNOSIS BY LASER-INDUCED FLUORESCENCE SPECTROSCOPY AT ENDOSCOPY
    COTHREN, RM
    RICHARDSKORTUM, R
    SIVAK, MV
    FITZMAURICE, M
    RAVA, RP
    BOYCE, GA
    DOXTADER, M
    BLACKMAN, R
    IVANC, TB
    HAYES, GB
    FELD, MS
    PETRAS, RE
    [J]. GASTROINTESTINAL ENDOSCOPY, 1990, 36 (02) : 105 - 111
  • [37] D'Hallewin M A, 1994, Acta Urol Belg, V62, P49
  • [38] DACOSTA RS, 1997, J ANAL MORPHOL, V4, P192
  • [39] Dhingra JK, 1996, ARCH OTOLARYNGOL, V122, P1181
  • [40] Diagnosis of head and neck precancerous lesions in an animal model using fluorescence spectroscopy
    Dhingra, JK
    Zhang, X
    McMillan, K
    Kabani, S
    Manoharan, R
    Itzkan, I
    Feld, MS
    Shapshay, SM
    [J]. LARYNGOSCOPE, 1998, 108 (04) : 471 - 475