Cox Benjamin L, Mackie Thomas R, Eliceiri Kevin W
Department of Medical Physics, University of Madison - Wisconsin 1111 Highland Ave, Madison, WI 53705 ; Medical Engineering Group, Morgridge Institute for Research 330 N Orchard St, Madison, WI 53715 ; Laboratory for Optical and Computational Instrumentation, University of Wisconsin - Madison 1675 Observatory Drive, Madison, WI 53706.
Am J Nucl Med Mol Imaging. 2014 Dec 15;5(1):1-13. eCollection 2015.
Multi-modal imaging approaches of tumor metabolism that provide improved specificity, physiological relevance and spatial resolution would improve diagnosing of tumors and evaluation of tumor progression. Currently, the molecular probe FDG, glucose fluorinated with (18)F at the 2-carbon, is the primary metabolic approach for clinical diagnostics with PET imaging. However, PET lacks the resolution necessary to yield intratumoral distributions of deoxyglucose, on the cellular level. Multi-modal imaging could elucidate this problem, but requires the development of new glucose analogs that are better suited for other imaging modalities. Several such analogs have been created and are reviewed here. Also reviewed are several multi-modal imaging studies that have been performed that attempt to shed light on the cellular distribution of glucose analogs within tumors. Some of these studies are performed in vitro, while others are performed in vivo, in an animal model. The results from these studies introduce a visualization gap between the in vitro and in vivo studies that, if solved, could enable the early detection of tumors, the high resolution monitoring of tumors during treatment, and the greater accuracy in assessment of different imaging agents.
能够提高特异性、生理相关性和空间分辨率的肿瘤代谢多模态成像方法,将改善肿瘤的诊断和肿瘤进展评估。目前,分子探针FDG(2-碳位用(18)F氟化的葡萄糖)是PET成像临床诊断的主要代谢方法。然而,PET缺乏在细胞水平上产生脱氧葡萄糖肿瘤内分布所需的分辨率。多模态成像可以阐明这个问题,但需要开发更适合其他成像模态的新型葡萄糖类似物。已经创建了几种这样的类似物,并在此进行综述。还综述了几项多模态成像研究,这些研究试图揭示葡萄糖类似物在肿瘤内的细胞分布情况。其中一些研究是在体外进行的,而其他研究是在动物模型体内进行的。这些研究结果揭示了体外和体内研究之间的可视化差距,如果能够解决这一差距,将能够实现肿瘤的早期检测、治疗期间肿瘤的高分辨率监测以及不同成像剂评估的更高准确性。