The folate receptor as a rational therapeutic target for personalized cancer treatment

Yehuda G Assaraf1, Christopher P Leamon2, Joseph A Reddy2

  • 1The Fred Wyszkowski Cancer Research Laboratory, Faculty of Biology, Technion-Israel Institute of Technology, Haifa, Israel.

Insights

Targeted cancer therapies show promise for personalized medicine. Folate receptor imaging with (99m)Tc-etarfolatide identifies patients likely to respond to FRα-targeted drugs like vintafolide.

Area of Science:

  • Oncology
  • Molecular Imaging
  • Pharmacology

Background:

  • Conventional cancer treatments face limitations like drug resistance and toxicity.
  • The folate receptor (FR) is overexpressed on various solid tumors, making it a target for personalized medicine.
  • Targeted therapies require reliable methods to quantify FR expression for patient selection.

Purpose of the Study:

  • To introduce (99m)Tc-etarfolatide as a noninvasive companion diagnostic for FRα-targeted therapies.
  • To evaluate the role of etarfolatide in identifying patients who will benefit from vintafolide treatment.
  • To highlight the potential of FRα-targeted agents in personalized cancer treatment.

Main Methods:

  • Development of (99m)Tc-etarfolatide, a single-photon emission computed tomography (SPECT) imaging agent.
  • Utilizing folic acid conjugation to target FRα-expressing tumors.
  • Clinical evaluation in Phase 2 studies for various solid tumors, including ovarian and lung cancer.

Main Results:

  • (99m)Tc-etarfolatide enables noninvasive, whole-body monitoring of FRα expression.
  • Patients with FR-positive tumors identified by etarfolatide showed better outcomes with vintafolide.
  • Etarfolatide uptake correlated with improved clinical response to FRα-targeted therapy.

Conclusions:

  • (99m)Tc-etarfolatide serves as a valuable companion biomarker for predicting response to vintafolide.
  • Targeted therapies combined with companion diagnostics offer a novel approach to personalized medicine.
  • Structural insights into FRα and FRβ facilitate the design of new FR-targeted drugs.

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