2-<sup>18</sup>F-Fluoroethanol Is a PET Reporter of Solid Tumor Perfusion.

Wadsworth, Brennan J; Pan, Jinhe; Dude, Iulia; Colpo, Nadine; Bosiljcic, Momir; Lin, Kuo-Shyan; Benard, Francois; Bennewith, Kevin L · J Nucl Med · 2017

basic_science · Level V

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Abstract

Solid tumor perfusion is a proven variable of interest for predicting cancer aggression and response to therapy. Current methods for noninvasively imaging tumor perfusion with PET are limited by restricted accessibility and short half-lives of perfusion radiotracers. This study presents 2-<sup>18</sup>F-fluoroethanol (2-<sup>18</sup>F-FEtOH) as a perfusion reporter that can distinguish between tumors of varying perfusion levels and can be applied to screening drugs that modify tumor perfusion. <b>Methods:</b> Uptake of 2-<sup>18</sup>F-FEtOH in 4T1 and 67NR murine mammary carcinoma tumors grown in mice was measured using ex vivo radiography as well as static and dynamic PET imaging. 2-<sup>18</sup>F-FEtOH uptake was directly compared with the <sup>14</sup>C-iodoantipyrine perfusion reporter, and the perfusion-modifying drugs nicotinamide, pentoxifylline, and hydralazine were used to manipulate tumor perfusion before 2-<sup>18</sup>F-FEtOH quantification. <b>Results:</b> Uptake of 2-<sup>18</sup>F-FEtOH in 4T1 and 67NR tumors was consistent with known perfusion differences within and between these tumors. 2-<sup>18</sup>F-FEtOH uptake corresponded well with <sup>14</sup>C-iodoantipyrine and reflected the tumor perfusion-modifying effects of each drug. <b>Conclusion:</b> 2-<sup>18</sup>F-FEtOH is a novel <sup>18</sup>F-based radiotracer for investigating tumor perfusion with PET imaging. Quantification of 2-<sup>18</sup>F-FEtOH uptake can be used to distinguish between tumors of varying perfusion and to screen the efficacy of blood flow-modifying drugs for use as adjuvants to existing cancer therapies.

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