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64Cu Hypoxia Imaging Radiotracer Targeting the Human Copper Transporter

Shelly Meron; Yulia Shenberger; Ravit Madar; Jana Aupic; Nathalie Abudi; Fabio Lapenta; Melanie Hirsch; Odelia Orbaum Harel; Lukas Hofmann; Alessandra Magistrato; Eitan Okun; Rinat Abramovitch; Sharon Ruthstein
NeuroMolecular Medicine · Vol. 28, Issue 1 · 2026

Abstract

The detection and characterization of hypoxia through functional imaging represents a critical frontier in oncology, cardiology, and neurology. Despite extensive efforts, the clinical translation of a robust hypoxia imaging biomarker remains hindered by suboptimal signal limiting diagnostic accuracy. Here, we report the development of a 64 Cu-based radiotracer ( 64 Cu-CysPhe), which exploits the cellular copper uptake pathway involving the human copper transporter 1 (hCtr1). This targeted mechanism facilitates selective tracer accumulation in hypoxic tissues. In-vivo PET-MRI imaging in a murine breast cancer model demonstrated tumor-to-muscle ratios exceeding 3.0 up to 24 h post-injection. Notably, immunohistochemical analyses revealed that 64 Cu-CysPhe preferentially localizes to hypoxic tumor regions while excluding necrotic cores, thereby providing information about a tumor’s immediate microenvironment. Comparative analysis with established radiotracers, including 64 Cu-ATSM and 18 F-FDG, confirmed the sensitivity of 64 Cu-CysPhe in detecting hypoxic tumor regions. These findings establish 64 Cu-CysPhe as a promising candidate for non-invasive imaging of tumors.

Bibliographic Information

JournalNeuroMolecular Medicine
PublisherSpringer
Publication Date2026-06-29
Publication Year2026
Volume28
Issue1
Document TypeJournal Article
eISSN1559-1174
DOI10.1007/s12017-026-08939-4

Access Information

NARA Access Coverage2002-01-01~Current
Journal Homepagehttps://www.springer.com/journal/12017
Publisher PageOpen Publisher Page
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