Novel Peptide-Based PET Probe for Non-invasive Imaging of C-X-C Chemokine Receptor Type 4 (CXCR4) in Tumors
- Anna Maria Trotta1
- Michela Aurilio2
- Crescenzo D'Alterio1
- Caterina Ieranò1
- Daria di Martino2
- Antonio Barbieri3
- Antonio Luciano3
- Paolo Gaballo2
- Sara Santagata1
- Luigi Portella1
- Stefano Tomassi4
- Luciana Marinelli4
- Deborah Sementa4
- Ettore Novellino4
- Secondo Lastoria2
- Stefania Scala2
- Margret Schottelious5
- Salvatore Di Maro6
- 1. Microenvironment Molecular Targets, Istituto Nazionale per Lo Studio e la Cura Dei Tumori, IRCCS "fondazione G. Pascale"
- 2. Nuclear Medicine Unit, Department of Diagnostic Imaging, Radiant and Metabolic Therapy, Istituto Nazionale per Lo Studio e la Cura Dei Tumori, IRCCS "fondazione G. Pascale"
- 3. Animal Facility, Istituto Nazionale per Lo Studio e la Cura Dei Tumori, IRCCS "fondazione G. Pascale"
- 4. Department of Pharmacy, University of Naples "Federico II"
- 5. Translational Radiopharmaceutical Sciences, Department of Nuclear Medicine, Centre Hospitalier Universitaire Vaudois (CHUV), Department of Oncology, University of Lausanne (UNIL)
- 6. DiSTABiF, University of Campania "Luigi Vanvitelli"
Description
These are RAW data datasets of the following final paper
Trotta, A.M., Aurilio, M., D'Alterio, C., Ieranò, C., Di Martino, D., Barbieri, A., Luciano, A., Gaballo, P., Santagata, S., Portella, L., Tomassi, S., Marinelli, L., Sementa, D., Novellino, E., Lastoria, S., Scala, S., Schottelius, M., Di Maro, S.
Novel Peptide-Based PET Probe for Non-invasive Imaging of C-X-C Chemokine Receptor Type 4 (CXCR4) in Tumors, (2021) Journal of Medicinal Chemistry, 64 (6), pp. 3449-3461. ISSN 00222623
https://doi.org/10.1021/acs.jmedchem.1c00066
Abstract
The recently reported CXCR4 antagonist 3 (Ac-Arg-Ala-[DCys-Arg-2Nal-His-Pen]-CO2H) was investigated as a molecular scaffold for a CXCR4-targeted positron emission tomography (PET) tracer. Toward this end, 3 was functionalized with 1,4,7,10-tetraazacyclododecane-1,4,7,10-tetraacetic acid (DOTA) and 1,4,7-triazacyclononanetriacetic acid (NOTA). On the basis of convincing affinity data, both tracers, [68Ga]NOTA analogue ([68Ga]-5) and [68Ga]DOTA analogue ([68Ga]-4), were evaluated for PET imaging in “in vivo” models of CHO-hCXCR4 and Daudi lymphoma cells. PET imaging and biodistribution studies revealed higher CXCR4-specific tumor uptake and high tumor/background ratios for the [68Ga]NOTA analogue ([68Ga]-5) than for the [68Ga]DOTA analogue ([68Ga]-4) in both in vivo models. Moreover, [68Ga]-4 and [68Ga]-5 displayed rapid clearance and very low levels of accumulation in all nontarget tissues but the kidney. Although the high tumor/background ratios observed in the mouse xenograft model could partially derive from the hCXCR4 selectivity of [68Ga]-5, our results encourage its translation into a clinical context as a novel peptide-based tracer for imaging of CXCR4-overexpressing tumors.
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- Journal article: 10.1021/acs.jmedchem.1c00066 (DOI)