Radiosynthesis and Preclinical Evaluation of 18 F-Labeled Estradiol Derivatives with Different Lipophilicity for PET Imaging of Breast Cancer.
Anna FriedelOlaf PranteSimone MaschauerPublished in: Cancers (2024)
About 75% of breast tumors show an overexpression of the estradiol receptor (ER), making it a valuable target for tumor diagnosis and therapy. To date, 16 α -[ 18 F]fluoroestradiol (FES) is the only FDA-approved imaging probe for the positron emission tomography (PET) imaging of ER-positive (ER +) breast cancer. However, FES has the drawback of a high retention in the liver. Therefore, the aim of this study was the development and preclinical evaluation of estradiol (E2) derivatives with different lipophilicity. Three 18 F-labeled prosthetic groups (two glycosyl and one PEG azide) were chosen for conjugation with ethinyl estradiol (EE) by 18 F-CuAAC (Cu-catalyzed azide-alkyne cycloaddition). The cellular uptake in ER + MCF-7 tumor cells was highest for the less hydrophilic derivative ( 18 F-TA-Glyco-EE). In nude mice bearing different breast tumors (ER + MCF-7 and T47D versus ER - MDA-MB-231), 18 F-TA-Glyco-EE revealed a high uptake in the liver (13%ID/g, 30 min p.i.), which decreased over 90 min to 1.2%ID/g, indicating fast hepatobiliary clearance. The statistically significant difference of 18 F-TA-Glyco-EE uptake in T47D compared to MDA-MB-231 tumors at 60-90 min p.i. indicated ER-specific uptake, whereas in vivo PET imaging did not provide evidence for specific uptake of 18 F-TA-Glyco-EE in MCF-7 tumors, probably due to ER occupation by E2 after E2-dependent MCF-7 tumor growth in mice. However, in vitro autoradiography revealed a high specific binding of 18 F-TA-Glyco-EE to ER + tumor slices. We conclude that 18 F-TA-Glyco-EE, with its increased hydrophilicity after deacetylation in the blood and thus rapid washout from non-target tissues, may be a viable alternative to FES for the PET imaging of breast cancer.
Keyphrases
- pet imaging
- breast cancer cells
- estrogen receptor
- positron emission tomography
- endoplasmic reticulum
- computed tomography
- high resolution
- young adults
- gene expression
- stem cells
- single cell
- metabolic syndrome
- adipose tissue
- signaling pathway
- mesenchymal stem cells
- high fat diet induced
- dna binding
- binding protein
- quantum dots
- living cells
- ionic liquid
- pi k akt
- cell cycle arrest