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Published on: January 11, 2020
Positron emission tomography agent 2-deoxy-2-[18F]fluoro-D-glucose has a therapeutic potential in breast cancer
Renee M Moadel1, Andrew V Nguyen, Elaine Y Lin
1Department of Nuclear Medicine, Albert Einstein College of Medicine of Yeshiva University, Bronx, New York, USA.
Background:
Novel approaches are needed for breast cancer patients in whom standard therapy is not effective. 2-Deoxy-2-[18F]fluoro-D-glucose (18F-FDG) was evaluated as a potential radiomolecular therapy agent in breast cancer animal models and, retrospectively, in patients with metastatic breast cancer.
Methods:
Polyoma middle T antigen (PyMT) and mouse mammary tumor virus-NeuT transgenic mice with tumors 0.5-1 cm in diameter were imaged with 18F-FDG, and tumor to liver ratios (TLRs) were calculated. The radiotoxicity of 18F-FDG administration was determined in healthy mice. PyMT mice with small (0.15-0.17 cm) and large (more than 1 cm) tumors were treated with 2-4 mCi of 18F-FDG, and control C3H/B6 mice with 3 mCi of 18F-FDG. At 10 days after treatment the tumors and control mammary glands were analyzed for the presence of apoptotic and necrotic cells. Five patients with breast cancer and metastatic disease were evaluated and standardized uptake values (SUVs) in tumors, maximum tolerated dose, and the doses to the tumor were calculated.
Results:
Doses up to 5 mCi proved to be non-radiotoxic to normal organs. The 18F-FDG uptake in mouse tumors showed an average TLR of 1.6. The treatment of mice resulted in apoptotic cell death in the small tumors. Cell death through the necrotic pathway was seen in large tumors, and was accompanied by tumor fragmentation and infiltration with leukocytes. Normal mammary tissues were not damaged. A human 18F-FDG dose delivering 200 rad to the red marrow (less than 5% damage) was calculated to be 4.76 Ci for a 70 kg woman, and the dose to the tumors was calculated to be 220, 1100 and 2200 rad for SUVs of 1, 5 and 10, respectively.
Conclusion:
We have shown that positrons delivered by 18F-FDG to mammary tumors have a tumoricidal effect on cancer cells. The study of breast cancer patients suggests that the tumor and normal organ dosimetry of 18F-FDG makes it suitable for therapy of this malignancy.
Insights
Novel radiomolecular therapy using 2-Deoxy-2-[18F]fluoro-D-glucose (18F-FDG) shows promise for breast cancer. This 18F-FDG therapy demonstrated a tumoricidal effect in animal models and appears suitable for treating metastatic breast cancer in patients.
Area of Science:
- Nuclear medicine
- Radiopharmaceutical therapy
- Oncology
Background:
- Standard breast cancer therapies are often ineffective for some patients.
- Novel therapeutic strategies are urgently needed for advanced breast cancer.
- 18F-FDG has been explored as a potential radiomolecular agent for breast cancer treatment.
Purpose of the Study:
- To evaluate the efficacy and safety of 18F-FDG as a radiomolecular therapy for breast cancer.
- To assess the tumoricidal effects of 18F-FDG in preclinical models and patient cohorts.
- To determine the dosimetry and maximum tolerated dose of 18F-FDG in breast cancer treatment.
Main Methods:
- 18F-FDG imaging and therapeutic administration in PyMT and NeuT transgenic mouse models.
- Radiotoxicity assessment in healthy mice and analysis of tumor cell death (apoptosis, necrosis).
- Evaluation of five metastatic breast cancer patients, including SUV, MTD, and tumor dosimetry calculations.
Main Results:
- 18F-FDG doses up to 5 mCi were non-radiotoxic to normal organs in mice.
- 18F-FDG treatment induced apoptotic cell death in small tumors and necrotic cell death with fragmentation in large tumors.
- Calculated human dose of 4.76 Ci delivers 200 rad to red marrow, with tumor doses ranging from 220 to 2200 rad based on SUVs.
Conclusions:
- Positron delivery by 18F-FDG to mammary tumors exerts a tumoricidal effect on cancer cells.
- Patient dosimetry suggests 18F-FDG is a viable therapeutic option for breast cancer.
- Further investigation into 18F-FDG as a breast cancer therapy is warranted.
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