Endogenous optical biomarkers of ovarian cancer evaluated with multiphoton microscopy

被引:123
作者
Kirkpatrick, Nathaniel D.
Brewer, Molly A.
Utzinger, Urs
机构
[1] Univ Arizona, Biomed Engn Program, Tucson, AZ 85724 USA
[2] Univ Connecticut, Ctr Hlth, Farmington, CT USA
关键词
D O I
10.1158/1055-9965.EPI-07-0009
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Purpose: Among gynecologic cancers, ovarian cancer is the second most common and has the highest mortality. Currently, there is no accurate early diagnostic technique for ovarian cancer. Furthermore, little is understood regarding the early progression of this disease. We have imaged multiphoton interactions of endogenous tissue constituents from normal and abnormal ovarian biopsies that were kept viable during transport from the operating room and microscopy. Experimental Design: The ovarian surface and underlying stroma were assessed with two-photon excited fluorescence (2PEF) and second harmonic generation (SHG). High-resolution, optically sectioned images were analyzed for epithelial morphology based on 2PEF and collagen density and structural integrity based on SHG. Additionally, multiwavelength 2PEF provided an estimation of the cellular redox ratio of epithelial cells. Results: Normal tissue exhibited a uniform epithelial layer with highly structured collagen in the stroma, whereas abnormal tissue exhibited varied epithelium with large cells and substantial quantitative changes to the collagen structure. Samples from patients at high risk for developing ovarian cancer (based on their personal/family history of cancer) exhibited highly variable cellular redox ratios and changes in collagen structure that trended toward cancer samples. Conclusion: This study highlights differences in endogenous signals in viable ovarian biopsies based on quantitative collagen structural changes and redox ratio estimates that may lead to improved detection and further insights in ovarian cancer, particularly in the early stages of the disease.
引用
收藏
页码:2048 / 2057
页数:10
相关论文
共 33 条
[1]  
BAST RC, 1983, CANCER RES, V43, P1395
[2]   Multispectral digital colposcopy for in vivo detection of cervical cancer [J].
Benavides, JM ;
Chang, S ;
Park, SY ;
Richards-Kortum, R ;
Mackinnon, N ;
MacAulay, C ;
Milbourne, A ;
Malpica, A ;
Follen, M .
OPTICS EXPRESS, 2003, 11 (10) :1223-1236
[3]   Diagnosis and management of epithelial ovarian cancer [J].
Bhoola, Snehal ;
Hoskins, William J. .
OBSTETRICS AND GYNECOLOGY, 2006, 107 (06) :1399-1410
[4]   Imaging of the ovary [J].
Brewer, MA ;
Utzinger, U ;
Barton, JK ;
Hoying, JB ;
Kirkpatrick, ND ;
Brands, WR ;
Davis, JR ;
Hunt, K ;
Stevens, SJ ;
Gmitro, AF .
TECHNOLOGY IN CANCER RESEARCH & TREATMENT, 2004, 3 (06) :617-627
[5]   High-resolution nonlinear optical imaging of live cells by second harmonic generation [J].
Campagnola, PJ ;
Wei, MD ;
Lewis, A ;
Loew, LM .
BIOPHYSICAL JOURNAL, 1999, 77 (06) :3341-3349
[6]   Second-harmonic imaging microscopy for visualizing biomolecular arrays in cells, tissues and organisms [J].
Campagnola, PJ ;
Loew, LM .
NATURE BIOTECHNOLOGY, 2003, 21 (11) :1356-1360
[7]   NICOTINAMIDE ADENINE-DINUCLEOTIDE FLUORESCENCE SPECTROSCOPY AND IMAGING OF ISOLATED CARDIAC MYOCYTES [J].
ENG, J ;
LYNCH, RM ;
BALABAN, RS .
BIOPHYSICAL JOURNAL, 1989, 55 (04) :621-630
[8]   Why do cancers have high aerobic glycolysis? [J].
Gatenby, RA ;
Gillies, RJ .
NATURE REVIEWS CANCER, 2004, 4 (11) :891-899
[9]  
Georgakoudi I, 2002, CANCER RES, V62, P682
[10]   Two-photon fluorescence spectroscopy and microscopy of NAD(P)H and flavoprotein [J].
Huang, SH ;
Heikal, AA ;
Webb, WW .
BIOPHYSICAL JOURNAL, 2002, 82 (05) :2811-2825