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Article

A Targeted Radiotheranostic Agent for Glioblastoma: [64Cu]Cu-NOTA-TP-c(RGDfK)

by
Alireza Mirzaei
1,
Samia Ait-Mohand
1,
Prenitha Mercy Ignatius Arokia Doss
1,
Étienne Rousseau
1,2,3 and
Brigitte Guérin
1,2,3,*
1
Department of Medical Imaging and Radiation Sciences, Faculty of Medicine and Health Sciences, Université de Sherbrooke, Sherbrooke, QC J1H 5N4, Canada
2
Sherbrooke Molecular Imaging Center (CIMS), Centre de Recherche du Centre Hospitalier Universitaire de Sherbrooke (CRCHUS), 3001, 12e Avenue Nord, Sherbrooke, QC J1H 5N4, Canada
3
Institut de Recherche sur le Cancer de l’Université de Sherbrooke (IRCUS), Université de Sherbrooke, Sherbrooke, QC J1H 5N4, Canada
*
Author to whom correspondence should be addressed.
Brain Sci. 2025, 15(8), 844; https://doi.org/10.3390/brainsci15080844
Submission received: 30 June 2025 / Revised: 31 July 2025 / Accepted: 6 August 2025 / Published: 7 August 2025

Abstract

Glioblastoma multiforme (GBM) remains one of the most aggressive and treatment-resistant brain tumors, with poor prognosis and limited therapeutic options. Background/Objectives: Integrin αvβ3, a cell surface receptor overexpressed in GBM, specifically binds to cyclic arginine-glycine-aspartate-D-phenylalanine-lysine (c(RGDfK)) motif, making it a valuable target for tumor-specific delivery and PET imaging. This study explores a novel radiotheranostic agent, [64Cu]Cu-NOTA-TP-c(RGDfK), which combines the imaging and therapeutic capabilities of copper-64 (64Cu) and the cytotoxic activity of a terpyridine-platinum (TP) complex, conjugated to c(RGDfK). Methods: A robust protocol was developed for the small-scale preparation of NOTA-TP-c(RGDfK). Comparative cellular studies were conducted using U87 MG glioblastoma (GBM) cells and SVG p12 human astrocytes to evaluate the performance of [64Cu]Cu-NOTA-TP-c(RGDfK) relative to [64Cu]Cu-NOTA-c(RGDfK), [64Cu]Cu-NOTA-TP, natCu-NOTA-TP-c(RGDfK), cisplatin, and temozolomide. Results: 64Cu-radiolabeling of NOTA-TP-c(RGDfK) was achieved with >99% radiochemical purity, and competition assays confirmed high binding affinity to integrin αvβ3 (IC50 = 16 ± 8 nM). Cellular uptake, internalization, and retention studies demonstrated significantly higher accumulation of [64Cu]Cu-NOTA-TP-c(RGDfK) in U87 MG cells compared to control compounds, with 38.8 ± 1.8% uptake and 28.0 ± 1.0% internalization at 24 h. Nuclear localization (6.0 ± 0.5%) and stable intracellular retention further support its therapeutic potential for inducing localized DNA damage. Importantly, [64Cu]Cu-NOTA-TP-c(RGDfK) exhibited the highest cytotoxicity in U87 MG cells (IC50 = 10 ± 2 nM at 48 h), while maintaining minimal toxicity in normal SVG p12 astrocytes. Conclusions: These results highlight [64Cu]Cu-NOTA-TP-c(RGDfK) as a promising targeted radiotheranostic agent for GBM, warranting further preclinical development
Keywords: glioblastoma multiforme (GBM); radiotheranostics; integrin αvβ3 targeting; copper-64; terpyridine-platinum complex glioblastoma multiforme (GBM); radiotheranostics; integrin αvβ3 targeting; copper-64; terpyridine-platinum complex

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MDPI and ACS Style

Mirzaei, A.; Ait-Mohand, S.; Ignatius Arokia Doss, P.M.; Rousseau, É.; Guérin, B. A Targeted Radiotheranostic Agent for Glioblastoma: [64Cu]Cu-NOTA-TP-c(RGDfK). Brain Sci. 2025, 15, 844. https://doi.org/10.3390/brainsci15080844

AMA Style

Mirzaei A, Ait-Mohand S, Ignatius Arokia Doss PM, Rousseau É, Guérin B. A Targeted Radiotheranostic Agent for Glioblastoma: [64Cu]Cu-NOTA-TP-c(RGDfK). Brain Sciences. 2025; 15(8):844. https://doi.org/10.3390/brainsci15080844

Chicago/Turabian Style

Mirzaei, Alireza, Samia Ait-Mohand, Prenitha Mercy Ignatius Arokia Doss, Étienne Rousseau, and Brigitte Guérin. 2025. "A Targeted Radiotheranostic Agent for Glioblastoma: [64Cu]Cu-NOTA-TP-c(RGDfK)" Brain Sciences 15, no. 8: 844. https://doi.org/10.3390/brainsci15080844

APA Style

Mirzaei, A., Ait-Mohand, S., Ignatius Arokia Doss, P. M., Rousseau, É., & Guérin, B. (2025). A Targeted Radiotheranostic Agent for Glioblastoma: [64Cu]Cu-NOTA-TP-c(RGDfK). Brain Sciences, 15(8), 844. https://doi.org/10.3390/brainsci15080844

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