Synthesis and biologic study of IV-14, a new ribonucleoside radiotracer for tumor visualization

Boris D Zlatopolskiy1, Agnieszka Morgenroth, Falk H-G Kunkel

  • 1Klinik für Nuklearmedizin, Universität Ulm, Ulm, Germany.

Abstract

Insights

This study introduces 3'-(E)-(2-iodovinyl)uridine (IV-14) as a novel radiotracer. IV-14 effectively targets tumors with high RNA synthesis, showing promise for cancer imaging.

Area of Science:

  • Biochemistry
  • Oncology
  • Radiochemistry

Background:

  • Uridine-cytidine kinase (UCK) 2 is overexpressed in many cancers.
  • UCK2 is more efficient than UCK1 in phosphorylating pyrimidine ribonucleosides.
  • 3'-(ethynyl)uridine is a UCK2-selective antitumor agent.

Purpose of the Study:

  • To synthesize and preclinically evaluate 3'-(E)-(2-iodovinyl)uridine (IV-14) as a novel radiotracer.
  • To assess IV-14's potential for in vivo tumor targeting based on UCK2 expression.

Main Methods:

  • Radioiodination of IV-14 and stability testing (serum, enzymes).
  • Cellular uptake assays in various tumor cell lines.
  • Biodistribution studies and scintigraphy in a mouse xenograft model.

Main Results:

  • (131)I-IV-14 showed excellent stability and significant tumor uptake in vivo.
  • Tumor-to-tissue ratios were favorable at 4 hours post-injection.
  • Scintigraphy clearly visualized tumors, with some radioiodide in stomach content.

Conclusions:

  • IV-14 is a UCK2-specific radiotracer.
  • It allows for in vivo targeting of tumors with high RNA synthesis.
  • IV-14 shows potential for cancer imaging, independent of proliferation rate.