PET of EGFR Expression with an 18F-Labeled Affibody Molecule

被引:65
|
作者
Miao, Zheng [1 ]
Ren, Gang [1 ]
Liu, Hongguang [1 ]
Qi, Shibo [1 ]
Wu, Song [1 ]
Cheng, Zhen [1 ]
机构
[1] Stanford Univ, Mol Imaging Program Stanford, Dept Radiol, BioX Program, Stanford, CA 94305 USA
关键词
Affibody; cancer imaging; F-18; PET; EGFR; GROWTH-FACTOR RECEPTOR; IN-VIVO; BREAST-CANCER; HER2; EXPRESSION; PROTEIN; MICE; SELECTION; AFFINITY; TRACER;
D O I
10.2967/jnumed.111.100842
中图分类号
R8 [特种医学]; R445 [影像诊断学];
学科分类号
1002 ; 100207 ; 1009 ;
摘要
Epidermal growth factor receptor (EGFR) is often over-expressed in a variety of human cancers, and its expression is associated with poor prognosis for many cancer types. However, an accurate technique to noninvasively image EGFR expression in vivo is not available in the clinical setting. In this research, an Affibody analog, anti-EGFR Ac-Cys-Z(EGFR:1907), was successfully site-specifically F-18-labeled for PET of EGFR expression. Methods: The prosthetic group N-[2-(4-F-18-fluorobenzamido) ethyl] maleimide (F-18-FBEM) was conjugated to Ac-Cys-Z(EGFR:1907) under mild conditions (pH 7) to produce the probe F-18-FBEM-Cys-Z(EGFR:1907). The binding affinity and specificity tests of F-18-FBEM-Cys-ZEGFR:1907 to EGFR were conducted using A431 cancer cells. Small-animal PET and biodistribution studies were conducted on various mice tumor xenograft models with EGFR overexpression (6 types) after injection of approximately 2.0 MBq of F-18-FBEM-Cys-Z(EGFR:1907) with or without coinjection of unlabeled Ac-Cys-Z(EGFR:1907) for up to 3 h after injection. A correlation study between F-18-FBEM-Cys-Z(EGFR:1907) small- animal PET quantification and ex vivo Western blot analysis of tumor EGFR expression was conducted in those 6 types of tumor models. Results: F-18-FBEM-Cys-Z(EGFR:1907) binds to EGFR with low nanomolar affinity (37 nM) in A431 cells. F-18-FBEM-Cys-Z(EGFR:1907) rapidly accumulated in the tumor and cleared from most of the normal organs except the liver and kidneys at 3 h after injection, allowing excellent tumor to normal tissue contrast to be obtained. In the A431 tumor xenograft model, coinjection of the PET probe with 45 mu g of Ac-Cys-Z(EGFR:1907) was able to improve the tumor uptake (3.9 vs. 8.1 percentage of the injected radioactive dose per gram of tissue, at 3 h after injection) and tumor imaging contrast, whereas coinjection with 500 mu g of Ac-Cys-Z(EGFR:1907) successfully blocked the tumor uptake significantly (8.1 vs. 1.0 percentage of the injected radioactive dose per gram of tissue, at 3 h after injection, 88% inhibition, P < 0.05). Moderate correlation was found between the tumor tracer uptake at 3 h after injection quantified by PET and EGFR expression levels measured by Western blot assay (P = 0.007, R = 0.59). Conclusion: F-18-FBEM-Cys-Z(EGFR:1907) is a novel protein scaffold based PET probe for imaging EGFR overexpression of tumors, and its ability to differentiate tumors with high and low EGFR expression in vivo holds promise for future clinical translation.
引用
收藏
页码:1110 / 1118
页数:9
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