Dependence of FDG uptake on tumor microenvironment

被引:170
作者
Pugachev, A [1 ]
Ruan, S [1 ]
Carlin, S [1 ]
Larson, SM [1 ]
Campa, J [1 ]
Ling, CC [1 ]
Humm, JL [1 ]
机构
[1] Mem Sloan Kettering Canc Ctr, Dept Med Phys, New York, NY 10021 USA
来源
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS | 2005年 / 62卷 / 02期
关键词
hypoxia; FDG; tumor proliferation; glucose metabolism; PET tumor tracers;
D O I
10.1016/j.ijrobp.2005.02.009
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Purpose: To investigate the factors affecting the F-18-fluorodeoxyglucose (F-18-FDG) uptake in tumors at a microscopic level, by correlating it with tumor hypoxia, cellular proliferation, and blood perfusion. Methods and Materials: Nude mice bearing Dunning prostate tumors (R3327-AT) were injected with F-18-FDG and pimonidazole, bromodeoxyuridine, and, 1 min before sacrifice, with Hoechst 33342. Selected tumor sections were imaged by, phosphor plate autoradiography, while adjacent sections were used to obtain the images of the spatial distribution of Hoechst 33342, pimonidazole, and bromodeoxyuridine. The images were co-registered and analyzed on a pixel-by-pixel basis. Results: Statistical analysis of the data obtained from these tumors demonstrated that F-18-FDG uptake was positively correlated with pimonidazole staining intensity in each data set studied. Correlation of FDG uptake with bromodeoxyuridine staining intensity was always negative. In addition, FDG uptake was always negatively correlated with the staining intensity of Hoechst 33342. Conclusions: For the Dunning prostate tumors studied, FDG uptake was always positively correlated with hypoxia and negatively correlated with both cellular proliferation and blood flow. Therefore, for the tumor model studied, higher FDG uptake is indicative of tumor hypoxia, but neither blood flow nor cellular proliferation. © 2005 Elsevier Inc.
引用
收藏
页码:545 / 553
页数:9
相关论文
共 24 条
[11]   Overexpression of Glut-1 and increased glucose metabolism in tumors are associated with a poor prognosis in patients with oral spuamous cell carcinoma [J].
Kunkel, M ;
Reichert, TE ;
Benz, P ;
Lehr, HA ;
Jeong, JH ;
Wieand, S ;
Bartenstein, P ;
Wagner, W ;
Whiteside, TL .
CANCER, 2003, 97 (04) :1015-1024
[12]   Expression of GLUT-1 glucose transfer, cellular proliferation activity and grade of tumor correlate with [F-18]-fluorodeoxyglucose uptake by positron emission tomography in epithelial tumors of the ovary [J].
Kurokawa, T ;
Yoshida, Y ;
Kawahara, K ;
Tsuchida, T ;
Okazawa, H ;
Fujibayashi, Y ;
Yonekura, Y ;
Kotsuji, F .
INTERNATIONAL JOURNAL OF CANCER, 2004, 109 (06) :926-932
[13]   Vascular architecture, hypoxia, and proliferation in first generation xenografts of human head-and-neck squamous cell carcinomas [J].
Ljungkvist, ASE ;
Bussink, J ;
Rijken, PFJW ;
Kaanders, JHAM ;
van der Kogel, AJ ;
Denekamp, J .
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2002, 54 (01) :215-228
[14]   Correlation of FDG-PET imaging with Glut-1 and Glut-3 expression in early-stage non-small cell lung cancer [J].
Marom, EM ;
Aloia, TA ;
Moore, MB ;
Hara, M ;
Herndon, JE ;
Harpole, DH ;
Goodman, PC ;
Patz, EF .
LUNG CANCER, 2001, 33 (2-3) :99-107
[15]   The interaction among glucose transport, hexokinase, and glucose-6-phosphatase with respect to H-3-2-deoxyglucose retention in murine tumor models [J].
Nelson, CA ;
Wang, JQ ;
Leav, I ;
Crane, PD .
NUCLEAR MEDICINE AND BIOLOGY, 1996, 23 (04) :533-541
[16]   Hypoxia and glucose metabolism in malignant tumors:: Evaluation by [18F]fluoromisonidazole and [18F]fluorodeoxyglucose positron emission tomography imaging [J].
Rajendran, JG ;
Mankoff, DA ;
O'Sullivan, F ;
Peterson, LM ;
Schwartz, DL ;
Conrad, EU ;
Spence, AM ;
Muzi, M ;
Farwell, DG ;
Krohn, KA .
CLINICAL CANCER RESEARCH, 2004, 10 (07) :2245-2252
[17]   Comparisons among pimonidazole binding, oxygen electrode measurements, and radiation response in C3H mouse tumors [J].
Raleigh, JA ;
Chou, SC ;
Arteel, GE ;
Horsman, MR .
RADIATION RESEARCH, 1999, 151 (05) :580-589
[18]   Spatial relationship between hypoxia and the (perfused) vascular network in a human glioma xenograft: A quantitative multi-parameter analysis [J].
Rijken, PFJW ;
Bernsen, HJJA ;
Peters, JPW ;
Hodgkiss, RJ ;
Raleigh, JA ;
van der Kogel, AJ .
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2000, 48 (02) :571-582
[19]   Proliferation-dependent changes in amino acid transport and glucose metabolism in glioma cell lines [J].
Sasajima, T ;
Miyagawa, T ;
Oku, T ;
Gelovani, JG ;
Finn, R ;
Blasberg, R .
EUROPEAN JOURNAL OF NUCLEAR MEDICINE AND MOLECULAR IMAGING, 2004, 31 (09) :1244-1256
[20]   FDG uptake, tumour characteristics and response to therapy: A review [J].
Smith, TAD .
NUCLEAR MEDICINE COMMUNICATIONS, 1998, 19 (02) :97-105