Related Experiment Video
Updated: Apr 20, 2026

An Immunohistopathologic Study to Profile the Folate Receptor Beta Macrophage and Vascular Immune Microenvironment in Giant Cell Arteritis
Published on: February 8, 2019
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.
Abstract:
Conventional cancer treatment modalities have several limitations including lack of sufficient efficacy, serious untoward toxicity, as well as innate and acquired drug resistance. In contrast, targeted imaging agents can identify patients with receptors overexpressed on the surface of cancer cells, thus allowing appropriate selection of patients for personalized treatment with a desirable targeted therapeutic. The folate receptor (FR) has been identified as a new molecularly targeted entity, which is highly overexpressed on the surface of a spectrum of solid tumor cells, including ovarian, kidney, lung, brain, endometrial, colorectal, pancreatic, gastric, prostate, testicular, bladder, head and neck, breast, and non-small cell lung cancer. Folic acid conjugation is a novel approach for targeting FR-expressing tissues for personalized treatment. With the development of FRα-targeted therapies comes a concomitant prerequisite for reliable methods for the quantification of FRα tissue expression. Therefore, attaching a radioactive probe to folic acid to target diseased tissue has become a novel and powerful imaging technique. Currently available diagnostic tools frequently require invasive surgical biopsy. In contrast, the noninvasive single-photon emission computed tomography-based companion imaging agent, (99m)Tc-etarfolatide ((99m)Tc-EC20), is in development for use as a companion diagnostic with the FRα-targeted folate conjugate, vintafolide (EC145), to identify patients whose tumors express FRα. Vintafolide is a folic acid conjugate of Vinca alkaloid (desacetylvinblastine hydrazide) that targets FRα-expressing tumors, thereby disrupting microtubule polymerization. (99m)Tc-etarfolatide is taken up by FR-positive tumors and allows for noninvasive, whole-body monitoring of FRα expression status throughout treatment. The combination of vintafolide plus etarfolatide has been evaluated in three Phase 2 studies for the treatment of various solid tumors, including ovarian, endometrial, peritoneal, and platinum-resistant ovarian cancer, as well as lung cancer. Patients with FR-positive tumors, as identified by etarfolatide uptake, have had better clinical outcomes than patients with FR-negative tumors, indicating the potential of etarfolatide as a companion biomarker for predicting vintafolide response. Targeted therapies combined with a reliable companion diagnostic test represent a novel approach toward efficient personalized medicine for malignant and nonmalignant disorders. Furthermore, the recent availability of the crystal structures of FRα and FRβ in complex with folates and antifolates forms a realistic basis for the rational design and implementation of novel FR-targeted drugs for the treatment of cancer and inflammatory disorders.
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.
Related Concept Videos
Combination Therapies and Personalized Medicine
The combination of the drug acetazolamide and sulforaphane is a good example of combination therapy to treat cancer. The cells in the interior of a large tumor often die due to the hypoxic and...
Combination Therapies and Personalized Medicine
Pharmacogenetics of Drug Targets: β₂-Adrenergic Receptors, Apo E, Thymidylate Synthase
Targeted Cancer Therapies
There are several types of targeted therapies against...
Targeted Cancer Therapies
Cancer

