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18F-Labeling of Radiotracers Functionalized with a Silicon Fluoride Acceptor SiFA for Positron Emission Tomography
Published on: January 11, 2020
[(18)F]Fluoroethyl Triazole Substituted PSMA Inhibitor Exhibiting Rapid Normal Organ Clearance
Ying Chen1, Ala Lisok1, Samit Chatterjee1
1The Russell H. Morgan Department of Radiology and Radiological Science, Johns Hopkins Medical Institutions , Baltimore, Maryland 21287, United States.
Abstract:
Prostate-specific membrane antigen (PSMA) is overexpressed in the epithelium of prostate cancer and nonprostate solid tumor neovasculature. PSMA is increasingly utilized as a target for cancer imaging and therapy. Here, we report the synthesis and in vivo biodistribution of a low-molecular-weight PSMA-based imaging agent, 2-[3-(1-carboxy-5-{3-[1-(2-[(18)F]fluoroethyl)-1H-1,2,3-triazol-yl]propanamido}pentyl)ureido]pentanedioic acid ([(18)F]YC-88), containing an [(18)F]fluoroethyl triazole moiety. [(18)F]YC-88 was synthesized from 2-[(18)F]fluoroethyl azide and the corresponding alkyne precursor in two steps using either a one- or two-pot procedure. Biodistribution and positron emission tomography (PET) imaging were performed in immunocompromised mice using isogenic PSMA(+) PC3 PIP and PSMA(-) PC3 flu xenografts. YC-88 exhibited high affinity for PSMA as evidenced by a Ki value of 12.9 nM. The non-decay corrected radiochemical yields of [(18)F]YC-88 averaged 14 ± 1% (n = 5). Specific radioactivities ranged from 320 to 2,460 Ci/mmol (12-91 GBq/μmol) with an average of 940 Ci/mmol (35 GBq/μmol, n = 5). In an immunocompromised mouse model, [(18)F]YC-88 clearly delineated PSMA(+) PC3 PIP prostate tumor xenografts on imaging with PET. At 1 h postinjection, 47.58 ± 5.19% injected dose per gram of tissue (% ID/g) was evident within the PSMA(+) PC3 PIP tumor, with a ratio of 170:1 of uptake within PSMA(+) PC3 PIP to PSMA(-) PC3 flu tumor placed in the opposite flank. The tumor-to-kidney ratio at 2 h postinjection was 4:1. At or after 30 min postinjection, minimal nontarget tissue uptake of [(18)F]YC-88 was observed. Compared to [(18)F]DCFPyL, which is currently in clinical trials, the uptake of [(18)F]YC-88 within the kidney, liver, and spleen was significantly lower at all time-points studied. At 30 min and 1 h postinjection, salivary gland uptake of [(18)F]YC-88 was significantly less than that of [(18)F]DCFPyL. [(18)F]YC-88 is a new PSMA-targeted PET agent synthesized utilizing click chemistry that demonstrates high PSMA(+) tumor uptake in a xenograft model. Because of its low uptake in the kidney, rapid clearance from nontarget organs, and relatively simple one-pot, two-step radiosynthesis, [(18)F]YC-88 is a viable new PET radiotracer for imaging PSMA-expressing lesions.
Insights
A new imaging agent, [(18)F]YC-88, targets prostate-specific membrane antigen (PSMA) for enhanced cancer detection. This agent shows high tumor uptake and low off-target accumulation, making it a promising PET radiotracer.
Area of Science:
- Nuclear Medicine
- Radiochemistry
- Oncology
Background:
- Prostate-specific membrane antigen (PSMA) is a key biomarker overexpressed in prostate cancer.
- PSMA is a validated target for molecular imaging and therapy in oncology.
- Development of novel, high-performance PSMA-targeted imaging agents is crucial.
Purpose of the Study:
- To synthesize and characterize a novel low-molecular-weight PSMA-based imaging agent, [(18)F]YC-88.
- To evaluate the in vivo biodistribution and PET imaging performance of [(18)F]YC-88 in preclinical models.
- To compare the efficacy of [(18)F]YC-88 with existing PSMA-targeted agents.
Main Methods:
- Synthesis of [(18)F]YC-88 using click chemistry with an [(18)F]fluoroethyl triazole moiety.
- In vivo biodistribution studies and Positron Emission Tomography (PET) imaging in immunocompromised mice bearing PSMA(+) and PSMA(-) xenografts.
- Assessment of PSMA binding affinity (Ki value) and comparison of tissue uptake with [(18)F]DCFPyL.
Main Results:
- [(18)F]YC-88 was successfully synthesized with good radiochemical yields and specific radioactivity.
- High PSMA affinity was confirmed (Ki = 12.9 nM).
- PET imaging clearly delineated PSMA(+) xenografts with high tumor uptake (47.58 ± 5.19% ID/g at 1h) and excellent tumor-to-background ratios (170:1).
- [(18)F]YC-88 demonstrated significantly lower uptake in kidneys, liver, and spleen compared to [(18)F]DCFPyL.
- Reduced salivary gland uptake was observed compared to [(18)F]DCFPyL.
Conclusions:
- [(18)F]YC-88 is a novel PSMA-targeted PET imaging agent developed using click chemistry.
- It exhibits excellent tumor targeting, rapid clearance, and favorable biodistribution profiles.
- Its simple radiosynthesis and superior characteristics position [(18)F]YC-88 as a promising new PET radiotracer for PSMA-expressing lesions.
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