Publication | Open Access
Hybrid Tracers Based on Cyanine Backbones Targeting Prostate-Specific Membrane Antigen: Tuning Pharmacokinetic Properties and Exploring Dye–Protein Interaction
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Citations
43
References
2019
Year
Prostate cancer surgery is currently being revolutionized by the use of prostate-specific membrane antigen (PSMA)-targeted radiotracers, for example, <sup>99m</sup>Tc-labeled PSMA tracer analogs for radioguided surgery. The purpose of this study was to develop a second-generation <sup>99m</sup>Tc-labeled PSMA-targeted tracer incorporating a fluorescent dye. <b>Methods:</b> Several PSMA-targeted hybrid tracers were synthesized: glutamic acid-urea-lysine (EuK)-Cy5-mas<sub>3</sub>, EuK-(SO<sub>3</sub>)Cy5-mas<sub>3</sub>, EuK-Cy5(SO<sub>3</sub>)-mas<sub>3</sub>, EuK-(Ar)Cy5-mas<sub>3</sub>, and EuK-Cy5(Ar)-mas<sub>3</sub>; the Cy5 dye acts as a functional backbone between the EuK targeting vector and the 2-mercaptoacetyl-seryl-seryl-seryl (mas<sub>3</sub>) chelate to study the dye's interaction with PSMA's amphipathic entrance funnel. The compounds were evaluated for their photophysical and chemical properties and PSMA affinity. After radiolabeling with <sup>99m</sup>Tc, we performed in vivo SPECT imaging, biodistribution, and fluorescence imaging on BALB/c nude mice with orthotopically transplanted PC346C tumors. <b>Results:</b> The dye composition influenced the photophysical properties (brightness range 0.3-1.5 × 10<sup>4</sup> M<sup>-1</sup> × cm<sup>-1</sup>), plasma protein interactions (range 85.0% ± 2.3%-90.7% ± 1.3% bound to serum, range 76% ± 0%-89% ± 6% stability in serum), PSMA affinity (half-maximal inhibitory concentration [IC<sub>50</sub>] range 19.2 ± 5.8-175.3 ± 61.1 nM) and in vivo characteristics (tumor-to-prostate and tumor-to-muscle ratios range 0.02 ± 0.00-154.73 ± 28.48 and 0.46 ± 0.28-5,157.50 ± 949.17, respectively; renal, splenic, and salivary retention). Even though all tracer analogs allowed tumor identification with SPECT and fluorescence imaging, <sup>99m</sup>Tc-EuK-(SO<sub>3</sub>)Cy5-mas<sub>3</sub> had the most promising properties (e.g., half-maximal inhibitory concentration, 19.2 ± 5.8, tumor-to-muscle ratio, 5,157.50 ± 949.17). <b>Conclusion:</b> Our findings demonstrate the intrinsic integration of a fluorophore in the pharmacophore in PSMA-targeted small-molecule tracers. In this design, having 1 sulfonate on the indole moiety adjacent to EuK (<sup>99m</sup>Tc-EuK-(SO<sub>3</sub>)Cy5-mas<sub>3</sub>) yielded the most promising tracer candidate for imaging of PSMA.
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