A translational blueprint for developing intraoperative imaging agents via radiopharmaceutical-guided drug design

Teresa E. Sullivan, Servando Hernandez Vargas, Sukhen C. Ghosh, Solmaz AghaAmiri, Naruhiko Ikoma, Ali Azhdarinia

Research output: Contribution to journalReview articlepeer-review

Abstract

Cancer imaging is a rapidly evolving field due to the discovery of novel molecular targets and the availability of corresponding techniques to detect them with high precision, accuracy, and sensitivity. Nuclear medicine is the most widely used molecular imaging modality and has a growing toolkit of clinically used radiopharmaceuticals that enable whole-body tumor visualization, staging, and treatment monitoring for a variety of tumors in a non-invasive manner. The need for similar imaging capabilities in the operating room has led to the emergence of fluorescence-guided surgery (FGS) as a powerful technique that gives surgeons unprecedented ability to distinguish tumors from healthy tissues. While a variety of strategies have been used to develop contrast agents for FGS, the use of radiopharmaceuticals as models brings exceptional translational potential and has increasingly been explored. Here, we review strategies used to convert clinically used radiopharmaceuticals into fluorescent and multimodal counterparts. Unique preclinical and clinical capabilities stemming from radiopharmaceutical-based agent design are also discussed to illustrate the advantages of this approach.

Original languageEnglish (US)
Article number102376
JournalCurrent Opinion in Chemical Biology
Volume76
DOIs
StatePublished - Oct 2023

Keywords

  • Cancer
  • Dual labeling
  • Fluorescence-guided surgery
  • Nuclear imaging
  • Optical imaging
  • Radiopharmaceuticals

ASJC Scopus subject areas

  • Analytical Chemistry
  • Biochemistry

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