| Literature DB >> 35099620 |
Volker Morath1, Michael Heider2, Markus Mittelhäuser1, Hannes Rolbieski1, Jacob Stroh2, Jérémie Calais3, Matthias Eiber1, Florian Bassermann2,4, Wolfgang A Weber5.
Abstract
RATIONALE: Multiple myeloma (MM) cells synthesize large amounts of paraproteins, making radiolabeled amino acids promising candidates for PET imaging of MM patients.Entities:
Keywords: FACBC; FET; Fluciclovine; Hematology; Multiple myeloma; PET
Year: 2022 PMID: 35099620 PMCID: PMC8804025 DOI: 10.1186/s13550-022-00876-0
Source DB: PubMed Journal: EJNMMI Res ISSN: 2191-219X Impact factor: 3.138
Fig. 1Preclinical comparison of [18F]-FET versus [18F]-FACBC in MM. A Structure of the radiotracers [18F]-FET and [18F]-FACBC together with a representative axial section and a maximum intensity projection (MIP) of the shoulder region. For both radiotracers, eight animals were injected with MM.1S cells transduced with control (ev/ev, blue arrowheads, left shoulder) and LAT1/CD98hc transduced (MM.1SLAT1/CD98hc, green arrowheads, right shoulder). B From 8 mice injected per cohort, 5–8 xenograft tumors had grown, which were imaged and segmented. Student’s t-test with *p < 0.05; **p < 0.01; ***p < 0.005, error bars indicate SD. C Dynamic [18F]-FACBC PET-scan of a mouse with 10 min frames over 50 min post injection represented as a MIP. D [18F]-FACBC time-activity curve for different tissues measured by a representative sphere with 5 px diameter, error bars indicate SD
Fig. 2[18F]-FACBC PET/CT-scan of a MM patient. A Full body MIP. Axial sections of this patient’s PET (B/E), CT (C/F) and PET/CT fusion (D/G) are depicted. Position of the axial sections is indicated in the MIP (A). Concordant lesion on PET and CT (B–D; SUVmean 8.0; SUVmax 13.1), where the PET-signal corresponds to osteolysis on CT. [18F]-FACBC allowed the localization of discordant lesions in PET that were not distinguishable from bone inhomogeneity in CT (E–F; SUVmean 7.9; SUVmax 9.5)